TianGong PCR产品类别规则

Nuclear reactors

Nuclear reactors: This PCR governs foreground data packages for manufacturing a complete, unloaded nuclear reactor as fabricated equipment. It covers the reactor…

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Status, classification and source details

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  • Warnings methodology_not_reviewed Authored methodology is candidate guidance and still requires methodology review.

Classification mapping

CPC 3.0:42310 · exact

Source

1. Scope and Applicability

This PCR governs foreground data packages for manufacturing a complete, unloaded nuclear reactor as fabricated equipment. It covers the reactor pressure boundary, reactor internals and core-support structures, installed reactivity-control drive equipment, final assembly, cleaning, inspection, factory acceptance testing, and handover at the declared manufacturer gate. The declared product configuration shall state the reactor technology, thermal power/design rating, pressure-boundary extent, included control and instrumentation equipment, nuclear quality class, design life, assembly location, and delivery condition.

The PCR excludes nuclear fuel and fuel elements, separately supplied reactor parts that are not incorporated in the reference product, steam generators and other boiler equipment supplied as separate products, turbines and generators, buildings and civil works, site installation outside the manufacturer's declared gate, commissioning with nuclear fuel, operation and electricity generation, maintenance, spent-fuel management, and decommissioning. It is applicable to water-cooled and other reactor technologies only when the product configuration and route-specific exchanges are declared; a data producer shall not substitute an entire nuclear power plant for the manufactured reactor.

2. Product Category Identity

FieldValue
canonical_pcr_idpcr.metal-products-machinery-and-equipment.fabricated-metal-products-except-machinery-and-equipment.nuclear-reactors
classification_refsCPC 3.0: 42310, Nuclear reactors
covered_productsComplete unloaded nuclear reactors handed over as fabricated equipment, including the declared pressure boundary, reactor internals/core supports, and installed reactivity-control drive equipment
excluded_productsNuclear fuel and fuel elements; separately supplied reactor parts; separately supplied steam generators, boilers, turbines or generators; complete power-plant construction; civil works; operation, maintenance, spent-fuel management and decommissioning
representative_productOne complete unloaded nuclear reactor accepted against its manufacturing configuration and factory-acceptance documentation
production_routeQualified material receipt; pressure-boundary forming, machining, welding and heat treatment; reactor-internals fabrication and cleaning; final assembly, inspection and factory acceptance testing
market_stateAccepted complete equipment at the declared manufacturer gate, unloaded, unirradiated and before site operation

3. Reference Flow

FieldValue
WhatProvide a complete unloaded nuclear reactor that meets the declared design, pressure-boundary, reactivity-control and manufacturing acceptance requirements
How muchOne accepted reactor item
How wellConforming to the declared technology, design rating, nuclear quality class, pressure-boundary extent, product configuration and acceptance-test plan
How long or cycleThe declared design life of the reactor; manufacturing burdens are assigned once at manufacturer-gate handover
reference_flow_linkThe reference flow is the accepted complete reactor output final_nuclear_reactor_output
FieldValue
Reference amount1 Item(s)
Reference product flowNuclear reactor (UUID unresolved)
Reference flow propertyNumber of items 01846770-4cfe-4a25-8ad9-919d8d378345
Reference unit groupUnits of items 5beb6eed-33a9-47b8-9ede-1dfe8f679159
Reference unitItem(s)
Required qualifiersreactor technology; thermal power or design rating; pressure-boundary extent; included reactor internals and control-drive equipment; nuclear quality class and governing manufacturing code; design life; manufacturer and production geography; assembly location; manufacturer-gate definition; delivery condition; gross accepted product mass; fuel-free and unirradiated state

When constructing a foreground data package, the items listed in Required qualifiers must be declared in dataset metadata, process notes, reference flow comment, product description, or an equivalent data package field. Missing required qualifiers make the reference flow definition incomplete for that data package.

4. Measurement and Unit Rules

rule_idApplies toRequired propertyRequired unitRule
mu_reference_itemReference product and accepted outputNumber of items 01846770-4cfe-4a25-8ad9-919d8d378345Item(s)Count only complete unloaded reactors accepted under the declared product configuration. Report gross accepted product mass separately as a required qualifier; do not convert a power plant, reactor part or fuel element into an item of reference product.
mu_massSolid materials, liquid water, liquid wastes, scrap and direct carbon dioxideMass 93a60a56-a3c8-11da-a746-0800200b9a66kgUse calibrated mass records or a documented density conversion. State the density, temperature and composition when converting process water or wastewater volume to mass, and prevent double counting of internal intermediate transfers.
mu_gas_volumeNatural gas and industrial oxygenVolume 93a60a56-a3c8-22da-a746-0800200c9a66m3Record metered volume and declare pressure, temperature and reference conditions. Convert supplier or meter units to the declared m3 basis without combining the two gases.
mu_electricity_energyPurchased electricityNet calorific value 93a60a56-a3c8-11da-a746-0800200b9a66MJPreserve metered electrical energy by process. Convert kWh to MJ using 3.6 MJ per kWh; do not add upstream grid emissions as foreground elementary exchanges.
mu_component_countControl-rod drive mechanismsNumber of items 01846770-4cfe-4a25-8ad9-919d8d378345Item(s)Count accepted installed mechanisms and identify the design-specific mechanism type. If mass is also available, retain it as supporting foreground data rather than replacing the item count.

5. System Boundary

The foreground boundary begins when traceable purchased materials, qualified parts and internal intermediates enter the manufacturing organization and ends when one complete unloaded reactor passes the declared manufacturing acceptance gate. Upstream production of purchased products is linked through background datasets; the foreground contains only exchanges under the manufacturer's operational control.

Boundary Abstraction

FieldValue
declared_starting_conditionTraceable purchased steel plate, stainless-steel stock, design-specific alloys, qualified welding consumables, control-drive equipment and utilities received at the first included manufacturing site
starting_condition_roleUpstream-data handoff to reactor manufacturing foreground
product_classification_scopeComplete nuclear reactor equipment; excludes fuel, separately supplied reactor parts, separate steam-generating equipment and complete power-plant construction
recursive_input_ruleWhen a partly assembled reactor crosses between included sites, record one internal intermediate flow with identical identity and amount at both process boundaries; do not apply this PCR recursively or add upstream burdens a second time
upstream_dataset_requirementEach purchased material, component, fuel, chemical, water and electricity input shall link to a geographically and technologically representative upstream dataset, with supplier-specific data preferred where nuclear-grade production materially differs
disclosureDeclare included sites, ownership/control boundary, assembly location, manufacturer-gate handover point, reactor technology and configuration, treatment of separately supplied components, excluded site work, and any data gap or proxy
rule_idApplies toRulesource_ids
sb_manufacturing_gateForeground manufacturingInclude material receipt, forming, machining, welding, heat treatment, cleaning, nondestructive examination, dimensional inspection, assembly, pressure/seal/electrical/functional testing and manufacturer-gate handover when performed for the reference product.iaea-np-t-3-21-2016; us-nrc-ap1000-ser-ch4
sb_product_exclusionsProduct boundaryExclude fuel elements, separately supplied reactor parts, separate boilers or steam generators, complete power-plant construction, civil works, fueled commissioning, operation and end-of-life unless the study explicitly adds them as separate product systems.un-cpc-3-0-2025; iaea-ssg-56-2020
sb_upstream_linkagePurchased inputsInclude purchased-input quantities in the foreground and link their production burdens through upstream datasets; do not reproduce upstream processes as direct foreground elementary emissions.
sb_direct_emissionsForeground elementary flowsReport only emissions released by included manufacturing equipment. Upstream electricity and material-production emissions remain in linked upstream datasets.

6. Process Inventory Structure

Process Map

process_idprocess_nameinclusioninclusion_conditionrolequantitative_reference
pressure_boundary_fabricationReactor pressure-boundary fabricationrequiredAlways included for a complete reactor; adapt the component list to the declared reactor technologyForeground forming, machining, welding, heat treatment, cleaning and inspectionPer accepted pressure-boundary assembly incorporated in one reference reactor
reactor_internals_fabricationReactor internals and core-support fabricationrequiredAlways included; material and cleaning rows apply only where used by the declared design and routeForeground fabrication, welding, cleaning and inspection of reactor internals and core supportsPer accepted internals assembly incorporated in one reference reactor
final_assembly_and_testingFinal reactor assembly and factory acceptance testingrequiredAlways included; test-fuel rows apply only when on-site combustion occursForeground assembly, dimensional verification, cleanliness inspection, pressure/seal/electrical/functional tests and handoverOne accepted unloaded nuclear reactor

Process: Reactor pressure-boundary fabrication (pressure_boundary_fabrication)

Inputs

Product flows
Alloy-steel plate for pressure-boundary components (pressure_steel_plate)

Record accepted steel plate entering shell, head and other pressure-retaining component fabrication. Nuclear grade, heat number, dimensions and supplier route are foreground qualifiers.

  • Selected flow: Steel Plate 421db3a5-394d-410b-8ebf-af23a37fc878
  • Flow property / unit: Mass / kg
  • Amount rule: Net received mass assigned to the reactor manufacturing order, adjusted for documented stock change
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_material_receipts
  • Sources: us-nrc-reactor-vessel-integrity
Flux-cored welding wire (pressure_flux_cored_wire)

Record qualified flux-cored welding wire only when this consumable is used on pressure-boundary fabrication or repair; other welding processes require their own concrete foreground flows.

  • Selected flow: Flux Cored Wire 1b74a576-06e0-4764-97ce-11a73f8a4752
  • Flow property / unit: Mass / kg
  • Amount rule: Issued mass minus documented returned unused wire for the manufacturing order
  • Value mode: Foreground record (foreground_record)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_welding_consumables
  • Sources: iaea-np-t-3-21-2016
Purchased electricity (pressure_electricity)

Record metered electricity consumed by cutting, forming, machining, welding, heat-treatment auxiliaries, inspection and supporting equipment in this process.

  • Selected flow: Electricity 67b723a9-6f63-4802-adca-b52ce7967d47
  • Flow property / unit: Net calorific value / MJ
  • Amount rule: Process-meter reading or allocated facility-meter consumption for the manufacturing order
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_process_energy
Gaseous natural gas for heat treatment (pressure_natural_gas)

Record gaseous natural gas only when directly combusted in included furnaces or thermal equipment for the pressure-boundary route.

  • Selected flow: natural gas in the gaseous state 4f19ca0e-7b3b-11dd-ad8b-0800200c9a66
  • Flow property / unit: Volume / m3
  • Amount rule: Metered natural-gas volume assigned to included pressure-boundary operations
  • Value mode: Foreground record (foreground_record)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_process_energy
Industrial oxygen for oxy-fuel operations (pressure_industrial_oxygen)

Record industrial oxygen only when supplied for oxy-fuel cutting, heating or another included fabrication operation.

  • Selected flow: Industrial oxygen bd4b0f96-2090-4806-a648-335ab20ff401
  • Flow property / unit: Volume / m3
  • Amount rule: Supplier or cylinder inventory records assigned to included pressure-boundary operations
  • Value mode: Foreground record (foreground_record)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_fabrication_gases
Process water for fabrication and cleaning (pressure_process_water)

Record process water crossing the boundary for machining, cleaning, flushing or hydrostatic operations within pressure-boundary fabrication.

  • Selected flow: Process Water 94a04f7e-2d5c-41f0-b182-d54a3b373a02
  • Flow property / unit: Mass / kg
  • Amount rule: Metered or supplier-recorded water input assigned to this process, net of documented recirculation within the same boundary
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_process_water
Waste flows
Elementary flows

Outputs

Product flows
Accepted reactor pressure-boundary assembly (pressure_boundary_assembly_output)

Record the accepted pressure-boundary assembly as an internal intermediate transferred to final assembly. Its output quantity and the corresponding final-assembly input shall be identical.

  • Selected flow: Reactor pressure-boundary assembly (UUID unresolved)
  • Flow property / unit: Mass / kg
  • Amount rule: Measured accepted assembly mass at internal transfer
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_internal_intermediates
  • Sources: iaea-ssg-56-2020
Waste flows
Post-industrial steel scrap (pressure_steel_scrap)

Record segregated ferrous offcuts, turnings and rejected steel arising from this process. Contaminated or mixed waste requires a separate concrete waste flow.

  • Selected flow: Post-industrial steel scrap c143745d-be4f-4d8f-b403-2dcbfe685349
  • Flow property / unit: Mass / kg
  • Amount rule: Weighed scrap leaving the process boundary, net of documented internal remelting or reuse
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_solid_wastes
Elementary flows
Fossil carbon dioxide from natural-gas combustion (pressure_fossil_co2)

Calculate direct fossil carbon dioxide released by the included natural-gas combustion only. Do not include upstream gas-supply or purchased-electricity emissions.

  • Selected flow: carbon dioxide (fossil) 08a91e70-3ddc-11dd-923d-0050c2490048
  • Flow property / unit: Mass / kg
  • Amount rule: Direct fossil CO2 calculated from the recorded natural-gas quantity and a documented site- or supplier-specific carbon/emission factor
  • Value mode: Calculated value (calculated_value)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Calculated from collection (calculated_from_collection)
  • Collection protocol: cp_process_energy

Process: Reactor internals and core-support fabrication (reactor_internals_fabrication)

Inputs

Product flows
Austenitic stainless-steel stock (internals_austenitic_stainless_steel)

Record the accepted austenitic stainless-steel plate, forging or bar mass incorporated in reactor internals and core supports; declare each grade and product form in the foreground bill of materials.

  • Selected flow: Austenitic stainless steel (UUID unresolved)
  • Flow property / unit: Mass / kg
  • Amount rule: Net received mass assigned to internals fabrication, adjusted for documented stock change
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_material_receipts
  • Sources: us-nrc-ap1000-ser-ch4
Nickel-based alloy stock (internals_nickel_based_alloy)

Record nickel-based alloy stock only when required by the declared reactor-internals design. The foreground record shall identify alloy grade, product form, cobalt restriction and installed component.

  • Selected flow: Nickel-based alloy stock (UUID unresolved)
  • Flow property / unit: Mass / kg
  • Amount rule: Net received alloy mass assigned to internals fabrication, adjusted for documented stock change
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_material_receipts
  • Sources: us-nrc-ap1000-ser-ch4
Flux-cored welding wire (internals_flux_cored_wire)

Record qualified flux-cored welding wire only when used for the declared internals fabrication route.

  • Selected flow: Flux Cored Wire 1b74a576-06e0-4764-97ce-11a73f8a4752
  • Flow property / unit: Mass / kg
  • Amount rule: Issued mass minus documented returned unused wire for the manufacturing order
  • Value mode: Foreground record (foreground_record)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_welding_consumables
  • Sources: iaea-np-t-3-21-2016
Purchased electricity (internals_electricity)

Record metered electricity consumed by internals forming, machining, welding, heat treatment, cleaning, inspection and supporting equipment.

  • Selected flow: Electricity 67b723a9-6f63-4802-adca-b52ce7967d47
  • Flow property / unit: Net calorific value / MJ
  • Amount rule: Process-meter reading or allocated facility-meter consumption for the manufacturing order
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_process_energy
Sodium hydroxide for alkaline cleaning (internals_sodium_hydroxide)

Record sodium hydroxide only when it crosses the foreground boundary as a product input to an alkaline cleaning bath used on reactor internals.

  • Selected flow: Sodium hydroxide e0abcced-0611-4c24-9290-5a2c5a0c4169
  • Flow property / unit: Mass / kg
  • Amount rule: Pure sodium-hydroxide mass in delivered solution charged to included cleaning operations
  • Value mode: Calculated value (calculated_value)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Calculated from collection (calculated_from_collection)
  • Collection protocol: cp_cleaning_chemicals
  • Sources: us-nrc-ap1000-ser-ch4
Process water for internals cleaning (internals_process_water)

Record process water used for included cleaning, rinsing and flushing of reactor internals.

  • Selected flow: Process Water 94a04f7e-2d5c-41f0-b182-d54a3b373a02
  • Flow property / unit: Mass / kg
  • Amount rule: Metered or supplier-recorded water input, net of documented recirculation within the same boundary
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_process_water
  • Sources: us-nrc-ap1000-ser-ch4
Waste flows
Elementary flows

Outputs

Product flows
Accepted reactor-internals assembly (reactor_internals_assembly_output)

Record the accepted reactor-internals and core-support assembly as an internal intermediate transferred to final assembly. The output and linked input amounts shall be identical.

  • Selected flow: Reactor-internals assembly (UUID unresolved)
  • Flow property / unit: Mass / kg
  • Amount rule: Measured accepted assembly mass at internal transfer
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_internal_intermediates
  • Sources: us-nrc-ap1000-ser-ch4
Waste flows
Post-industrial steel scrap (internals_steel_scrap)

Record segregated ferrous offcuts, turnings and rejected steel arising from internals fabrication.

  • Selected flow: Post-industrial steel scrap c143745d-be4f-4d8f-b403-2dcbfe685349
  • Flow property / unit: Mass / kg
  • Amount rule: Weighed scrap leaving this process, net of documented internal reuse
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_solid_wastes
Waste alkaline liquor (internals_waste_alkaline_liquor)

Record spent alkaline cleaning solution only when alkaline cleaning occurs and the liquor leaves this process for treatment. Declare composition, pH, metal contamination and treatment destination.

  • Selected flow: Waste Alkaline Liquor ce738ef0-a711-4650-a38b-34479efd7559
  • Flow property / unit: Mass / kg
  • Amount rule: Weighed or volume-and-density-converted mass of spent alkaline liquor transferred to treatment
  • Value mode: Foreground record (foreground_record)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_liquid_wastes
  • Sources: us-nrc-ap1000-ser-ch4
Elementary flows

Process: Final reactor assembly and factory acceptance testing (final_assembly_and_testing)

Inputs

Product flows
Reactor pressure-boundary assembly (final_pressure_boundary_assembly_input)

Record the internal pressure-boundary assembly received from pressure_boundary_fabrication; the identity and mass shall match pressure_boundary_assembly_output.

  • Selected flow: Reactor pressure-boundary assembly (UUID unresolved)
  • Flow property / unit: Mass / kg
  • Amount rule: Measured internal-transfer mass matching the upstream output
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_internal_intermediates
  • Sources: iaea-ssg-56-2020
Reactor-internals assembly (final_reactor_internals_assembly_input)

Record the internal reactor-internals assembly received from reactor_internals_fabrication; the identity and mass shall match reactor_internals_assembly_output.

  • Selected flow: Reactor-internals assembly (UUID unresolved)
  • Flow property / unit: Mass / kg
  • Amount rule: Measured internal-transfer mass matching the upstream output
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_internal_intermediates
  • Sources: us-nrc-ap1000-ser-ch4
Control-rod drive mechanism (final_control_rod_drive_mechanism)

Record accepted control-rod drive mechanisms installed in the reference reactor. State the design-specific mechanism type and prevent double counting when supplied within another accepted assembly.

  • Selected flow: Control-rod drive mechanism (UUID unresolved)
  • Flow property / unit: Number of items / Item(s)
  • Amount rule: Accepted installed mechanism count from the as-built product configuration
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_component_acceptance
  • Sources: iaea-ssg-56-2020
Purchased electricity (final_electricity)

Record metered electricity used for final assembly, cleanliness control, pressure/seal/electrical/functional tests and supporting equipment.

  • Selected flow: Electricity 67b723a9-6f63-4802-adca-b52ce7967d47
  • Flow property / unit: Net calorific value / MJ
  • Amount rule: Process-meter reading or allocated facility-meter consumption for the manufacturing order
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_process_energy
  • Sources: iaea-np-t-3-21-2016
Process water for hydrostatic and cleanliness testing (final_process_water)

Record process water introduced for pressure, leak, flushing or cleanliness testing within the manufacturer boundary.

  • Selected flow: Process Water 94a04f7e-2d5c-41f0-b182-d54a3b373a02
  • Flow property / unit: Mass / kg
  • Amount rule: Metered or supplier-recorded test-water input, net of documented recirculation within the same test loop
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_process_water
  • Sources: iaea-np-t-3-21-2016
Diesel fuel for on-site test equipment (final_diesel_fuel)

Record diesel fuel only when directly consumed by included temporary generators, pumps or other factory-test equipment.

  • Selected flow: Diesel fuel 9d258d75-6792-4f1c-9856-81602ed8f816
  • Flow property / unit: Mass / kg
  • Amount rule: Fuel issue, tank-level or purchase records assigned to included factory tests
  • Value mode: Foreground record (foreground_record)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_test_fuel
Waste flows
Elementary flows

Outputs

Product flows
Accepted complete unloaded nuclear reactor (final_nuclear_reactor_output)

Record one complete reactor only after the declared product configuration and manufacturing acceptance plan are satisfied. The product flow UUID remains unresolved; do not substitute a fuel rod or complete power plant.

  • Selected flow: Nuclear reactor (UUID unresolved)
  • Flow property / unit: Number of items / Item(s)
  • Amount rule: 1 accepted complete unloaded reactor
  • Value mode: Fixed value (fixed_value)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: One reference reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Method formula (method_formula)
  • Sources: un-cpc-3-0-2025; iaea-ssg-56-2020
Waste flows
Hydrostatic-test wastewater (final_test_wastewater)

Record water leaving included pressure, flushing or cleanliness tests as wastewater when it is not internally recirculated. Declare composition, treatment destination and discharge route.

  • Selected flow: Wastewater d2d44ce1-c0f4-461d-9413-f4b33e0d200f
  • Flow property / unit: Mass / kg
  • Amount rule: Weighed or volume-and-density-converted wastewater mass transferred out of the test boundary
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_liquid_wastes
  • Sources: iaea-np-t-3-21-2016
Elementary flows
Fossil carbon dioxide from test-diesel combustion (final_fossil_co2)

Calculate direct fossil carbon dioxide released by included test-equipment diesel combustion only. Do not include upstream diesel-supply emissions.

  • Selected flow: carbon dioxide (fossil) 08a91e70-3ddc-11dd-923d-0050c2490048
  • Flow property / unit: Mass / kg
  • Amount rule: Direct fossil CO2 calculated from recorded diesel mass and a documented site- or supplier-specific carbon/emission factor
  • Value mode: Calculated value (calculated_value)
  • Specificity: Route-specific (route_specific)
  • Normalization basis: Per one accepted complete reactor
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Calculated from collection (calculated_from_collection)
  • Collection protocol: cp_test_fuel

7. Allocation and Co-product Handling

rule_idApplies toRulesource_ids
al_subdivisionManufacturing orders and sitesPrefer process subdivision and order-specific measurement so burdens follow the reactor and process that caused them.
al_shared_utilitiesShared electricity, gas, water and facility servicesUse submetered consumption where available. Otherwise allocate by a documented causal driver such as machine-hours, furnace-hours, test-hours or occupied production time; do not allocate by reactor price when a physical driver is available.
al_scrapPost-industrial steel scrap and recoverable alloy scrapRecord scrap mass and destination before applying the study's recycling convention. Do not add an avoided-primary-production credit inside the foreground unless the chosen LCA method requires it; disclose any cut-off, substitution or end-of-life approach.
al_reworkRework, rejects and repairAssign rework energy, consumables and rejected material to the order and process that caused them. Sale proceeds from scrap do not make reactor manufacturing a multifunctional process.

8. Foreground Data Collection, Calculation, and Quality Rules

Data Collection Protocols

protocol_idprocess_idflow_rolerecord_typeraw_fieldscollection_methodunitfrequencytemporal_coveragesite_scopeaggregation_rulequality_evidence
cp_material_receiptspressure_boundary_fabrication; reactor_internals_fabricationSteel plate, stainless-steel stock and design-specific alloy inputsPurchase receipt, bill of materials and material certificatematerial identity; grade; product form; heat or lot; received mass; returns; stock change; order id; supplier; siteReconcile accepted receipts and issued material to the as-built bill of materialskgEach receipt and manufacturing orderComplete production period for the reference reactorEvery included fabrication site and supplier-controlled stock pointSum net mass assigned to the order; preserve grade and form as separate foreground attributesMaterial certificates; calibrated scales; receipt/issue reconciliation; supplier approval records
cp_welding_consumablespressure_boundary_fabrication; reactor_internals_fabricationFlux-cored welding wireConsumable issue and return recordswire identity; batch; qualification; issued mass; returned mass; order id; processSubtract returned unused wire from issued masskgEach issue/returnComplete fabrication periodEvery included welding locationSum net consumed mass by process and orderWelding-material batch record; qualified procedure; issue/return log
cp_process_energyAll processesPurchased electricity and natural gasMeter, fuel invoice and equipment operating logmeter id; opening/closing reading; unit; reference conditions for gas; process; order id; allocation driverRead process meters; where shared, reconcile facility totals and apply the declared causal allocation driverMJ for electricity; m3 for gasContinuous meter with monthly reconciliation or each batchComplete production and test periodEvery included siteSum direct readings; allocate only the residual shared total; document conversion and loss treatmentCalibrated meter record; invoice reconciliation; operating-hour log
cp_fabrication_gasespressure_boundary_fabricationIndustrial oxygenCylinder, bulk-tank or supplier recordgas identity; purity; supplied quantity; returns; pressure; temperature; process; order idReconcile delivered and returned quantity, then normalize to declared reference conditionsm3Each delivery and orderComplete fabrication periodIncluded oxy-fuel operationsSum normalized volume assigned to included operationsSupplier certificate; cylinder/bulk inventory; conversion record
cp_process_waterAll processesProcess-water inputsWater meter, batch sheet or supplier recordsource; quality; meter reading or volume; density; temperature; recirculated quantity; process; order idMeasure input and subtract only documented same-boundary recirculationkgEach batch or continuous meter with monthly reconciliationComplete production and test periodEvery included water use pointSum net boundary-crossing water mass by processCalibrated meter; water-quality record; density conversion; reconciliation
cp_internal_intermediatesAll processesPressure-boundary and reactor-internals assembliesInternal transfer and acceptance recordintermediate identity; configuration revision; acceptance status; mass; sending process; receiving process; order idMatch sending and receiving records one-to-onekgEach transferComplete assembly periodAll included sending and receiving sitesUse identical quantity on linked output and input; exclude transfer transport unless it crosses the declared foreground boundaryAccepted transfer record; calibrated scale; configuration control; discrepancy log
cp_solid_wastespressure_boundary_fabrication; reactor_internals_fabricationPost-industrial steel scrapWaste scale ticket and recycler manifestwaste identity; alloy/contamination class; gross/tare/net mass; internal reuse; destination; order id; processWeigh outbound scrap and reconcile internal return or reusekgEach shipment or collection containerComplete fabrication periodEvery included fabrication siteSum net scrap leaving the process by identity and destinationCalibrated scale; waste manifest; recycler receipt; mass-balance reconciliation
cp_cleaning_chemicalsreactor_internals_fabricationSodium hydroxideBatch sheet and chemical receiptproduct mass; concentration; solution density; bath charge; replenishment; recovery; order idCalculate pure sodium-hydroxide mass from delivered solution mass and verified concentrationkg NaOHEach bath chargeComplete cleaning periodIncluded alkaline-cleaning operationsSum pure NaOH charged minus separately documented recovered productSupplier certificate; concentration analysis; batch sheet; calculation record
cp_liquid_wastesreactor_internals_fabrication; final_assembly_and_testingWaste alkaline liquor and test wastewaterTank meter, transfer note and treatment manifestwaste identity; volume or mass; density; composition; pH; metal content; destination; order id; processMeasure mass directly or convert volume using documented densitykgEach discharge or transferComplete cleaning and test periodEvery included liquid-waste outletSum by concrete waste identity, process and destinationCalibrated tank/scale; sample analysis; manifest; water balance
cp_component_acceptancefinal_assembly_and_testingControl-rod drive mechanismsAs-built configuration and acceptance recordmechanism identity; type; serial number; accepted count; installed location; duplicate-supply check; order idCount accepted installed mechanisms and reconcile to the as-built configurationItem(s)Each installation and final acceptanceComplete assembly periodFinal assembly site and supplier-controlled installation pointsSum accepted installed items; exclude rejected, spare and separately supplied unitsConfiguration record; serial-number list; acceptance certificate; inspection record
cp_test_fuelfinal_assembly_and_testingDiesel fuel and its direct fossil CO2Fuel issue, tank record and equipment test logfuel identity; mass or volume; density; biogenic fraction; issue/return; equipment; test id; emission factor and provenanceReconcile net fuel consumed, convert volume to mass if needed, and calculate direct fossil CO2 from the documented factorkgEach test campaignComplete factory-test periodIncluded test equipment under manufacturer controlSum net fossil diesel mass and associated calculated direct fossil CO2Calibrated tank/scale; purchase/issue record; test log; factor certificate and calculation
cp_product_acceptancefinal_assembly_and_testingComplete unloaded nuclear reactorManufacturing acceptance and handover dossierproduct configuration; reactor technology; design rating; nuclear quality class; pressure-boundary extent; included assemblies; acceptance status; gross mass; serial id; handover date; gateCount only reactors with a complete accepted dossier and declared fuel-free unirradiated stateItem(s)Each final acceptanceEntire manufacturing orderDeclared manufacturer gateOne accepted dossier equals one reference itemApproved configuration; material traceability; NDT, heat-treatment, pressure/seal/electrical/functional-test, cleanliness and final-dimension records

Calculation Rules

rule_idApplies toFormula or ruleInputsOutputsource_ids
calc_order_normalizationAll inventory rowsNormalized amount = net quantity assigned to the manufacturing order divided by the number of accepted complete reactors in that order. For this PCR the denominator is normally one; disclose any multi-unit batch allocation.Net order quantity; accepted reactor count; allocation recordInventory amount per one accepted complete reactor
calc_electricity_conversionElectricity rowsElectricity (MJ) = metered electricity (kWh) × 3.6 MJ/kWh. Preserve the original meter unit and conversion record.Metered kWhElectricity in MJ
calc_solution_active_massinternals_sodium_hydroxidePure NaOH mass = delivered solution mass × verified mass fraction, adjusted for separately documented returned or recovered product.Solution mass; verified concentration; returned/recovered amountkg sodium hydroxide
calc_direct_fossil_co2pressure_fossil_co2; final_fossil_co2Direct fossil CO2 = recorded fossil-fuel quantity × documented site- or supplier-specific emission/carbon factor, with unit and oxidation-basis conversion shown. The factor shall not include upstream supply-chain emissions.Natural-gas or diesel record; factor; fossil fraction; conversion basiskg direct fossil carbon dioxide
calc_internal_transfer_checkInternal intermediate rowsThe amount and identity of each upstream intermediate output shall equal its final-assembly input after unit conversion; investigate every difference rather than allocating it silently.Sending record; receiving record; unit conversionReconciled internal transfer amount
calc_manufacturing_mass_balanceEach fabrication process and final assemblyReconcile traceable material inputs with accepted outputs, measured scrap/waste, direct mass emissions and documented stock change. Report excluded minor materials and unresolved imbalance; do not infer missing emissions from imbalance alone.Material receipts; intermediate and product mass; waste records; stock change; direct emissionsProcess mass-balance reconciliationiaea-np-t-3-21-2016

Data Quality Requirements

requirement_idApplies toRequirementEvidence
dq_product_identityReference productConfiguration, technology, design rating, pressure-boundary extent, included equipment, acceptance gate, gross mass and unloaded/unirradiated state shall be explicit.Approved product configuration and handover dossier
dq_material_traceabilityNuclear-grade materials and welding consumablesPreserve supplier, grade, heat/lot, product form, quantity, certificate, substitution and order linkage.Material certificates, supplier approval and issue records
dq_process_recordsFabrication and assemblyRetain welding procedure and consumable batch, heat-treatment, NDT, repair, pressure/seal/electrical/functional-test, calibration, cleanliness and final-dimension records applicable to the delivered configuration.Manufacturing quality dossier; iaea-np-t-3-21-2016
dq_temporal_coverageAll foreground rowsCover the complete manufacturing order from first included receipt through final acceptance, including rework and rejected batches.Order dates, production logs and completeness reconciliation
dq_site_coverageMulti-site manufactureInclude every site under the declared manufacturer boundary and disclose transfers that cross it.Site list, transfer records and boundary statement
dq_meteringEnergy, gases and waterUse calibrated direct meters where available; disclose allocation drivers, conversion conditions and reconciliation gaps for shared meters.Calibration certificates, invoices and reconciliation
dq_waste_destinationScrap, alkaline liquor and wastewaterRecord concrete waste identity, contamination/composition, mass, destination and treatment route; do not combine distinct waste streams.Scale tickets, analyses and manifests
dq_uuid_resolutionUUID-empty flowsPreserve the concrete flow name and unresolved reason; do not substitute a nearby fuel, plant, raw-material or component UUID.Finalized search receipts and manifest unresolved metadata
dq_uncertaintyAll modelled or allocated valuesDisclose measurement uncertainty, allocation share and data gap; no external empirical amount range is asserted by this candidate PCR.Meter/scale accuracy, calculation record and data-quality statement

9. Validation Rules

rule_idApplies toRulesource_ids
val_reference_identityReference flowConfirm that the output is one complete unloaded nuclear reactor, not a fuel element, separate part, complete power plant or boiler product, and that all required qualifiers are present.un-cpc-3-0-2025; iaea-ssg-56-2020
val_process_coverageForeground boundaryVerify that pressure-boundary fabrication, internals fabrication, final assembly and applicable factory tests are represented, with all included sites and rework covered.iaea-np-t-3-21-2016; us-nrc-ap1000-ser-ch4
val_atomic_flowsInventoryConfirm that every inventory card contains one concrete exchange and that gases, fuels, electricity, water, chemicals, wastes and direct emissions are not combined.
val_internal_transfersInternal intermediatesConfirm one-to-one identity and quantity matching for pressure-boundary and internals assembly outputs and inputs, and no double counting of upstream burdens.
val_energy_and_emissionsEnergy and direct emissionsReconcile purchased energy to meters or allocation records; direct fossil CO2 shall equal foreground natural-gas or diesel use times the documented factor, while upstream electricity and fuel emissions remain in linked datasets.
val_material_and_waste_balanceFabrication processesReconcile material inputs, accepted intermediate/product mass, measured scrap/waste, stock change and reported direct mass emissions; investigate and disclose unresolved imbalance.iaea-np-t-3-21-2016
val_quality_dossierPublished datasetVerify availability of material, welding, heat-treatment, NDT, pressure/seal/electrical/functional-test, calibration, cleanliness and final-dimension evidence applicable to the delivered configuration.iaea-np-t-3-21-2016
val_unresolved_evidenceCandidate limitationsKeep the reference product and other UUID-empty rows unresolved until an exact public state-100 identity is audited; do not treat absent two-source ranges as external benchmarks.

10. Published Dataset Profile

FieldValue
dataset_roleForeground manufacturing dataset suitable for publication as a secondary_dataset or background_dataset after review and resolution/disclosure of identified gaps
downstream_useProduct-system modelling of complete unloaded nuclear-reactor manufacture and handover at the declared manufacturer gate
allowed_useComparison or aggregation only among datasets with compatible reactor configuration, design rating, included equipment, nuclear quality class, manufacturer-gate boundary, geography and allocation/recycling conventions
excluded_useElectricity-generation impacts per kWh; complete nuclear-power-plant construction; fuel-cycle, site installation, operation, maintenance, spent-fuel or decommissioning results; representation of a separate reactor part or fuel element
required_metadataCanonical PCR id; reactor technology; thermal power/design rating; product configuration; pressure-boundary extent; included equipment; governing manufacturing code and nuclear quality class; design life; gross accepted mass; manufacturer geography; included sites; assembly location; handover gate; production period; allocation and recycling methods; upstream dataset choices; unresolved UUIDs and evidence needs
required_quality_disclosureForeground coverage and completeness; material traceability; meter and scale calibration; allocation shares; rework and reject coverage; internal-transfer reconciliation; mass balance; waste destinations; direct-emission factors; data gaps, uncertainty and any proxy
update_triggerChange in reactor technology or configuration, design rating, pressure-boundary extent, material grades, manufacturing route/site, energy source, cleaning/testing route, allocation or recycling method, supplier data, exact Tiangong UUID resolution, or availability of two independent boundary-compatible range sources

11. Data Sources

Source idTypeReferenceUsed for
un-cpc-3-0-2025datasetUnited Nations Statistics Division, CPC Version 3.0 Structure, 30 June 2025, https://unstats.un.org/unsd/classifications/Econ/Download/In%20Text/CPC_Ver_3.0_Structure_30Jun2025.csv (retrieved 2026-09-05)Official CPC 42310 product identity and distinction from separately classified reactor parts and steam-generating boilers
us-nrc-reactor-vessel-integrityofficial_guidanceU.S. Nuclear Regulatory Commission, Reactor Vessel Integrity, https://www.nrc.gov/reactors/operating/ops-experience/reactor-vessel-integrity (retrieved 2026-09-05)Reactor pressure-vessel construction from thick steel plate or ring forgings, welded shell courses and heads
iaea-np-t-3-21-2016official_guidanceInternational Atomic Energy Agency, Procurement Engineering and Supply Chain Guidelines in Support of Operation and Maintenance of Nuclear Facilities, IAEA Nuclear Energy Series No. NP-T-3.21, Vienna, 2016, https://www-pub.iaea.org/MTCD/Publications/PDF/Pub1725_web.pdf (retrieved 2026-09-05)Manufacturing and procurement records for material certificates, welding, heat treatment, NDT, pressure/seal/electrical/functional tests, calibration, cleanliness and final dimensions
us-nrc-ap1000-ser-ch4official_guidanceU.S. Nuclear Regulatory Commission, Safety Evaluation Report Related to Certification of the AP1000 Standard Design, NUREG-1793, Chapter 4, Reactor, https://www.nrc.gov/reading-rm/doc-collections/nuregs/staff/sr1793/initial/chapter4.pdf (retrieved 2026-09-05)Reactor-internals material families and process decomposition for material selection, heat treatment, welding, NDE, fabrication, contamination protection and cleaning
iaea-ssg-56-2020standardInternational Atomic Energy Agency, Design of the Reactor Coolant System and Associated Systems for Nuclear Power Plants, IAEA Safety Standards Series No. SSG-56, Vienna, 2020, https://www-pub.iaea.org/MTCD/Publications/PDF/PUB1878_web.pdf (retrieved 2026-09-05)Reactor coolant system extent, pressure-boundary scope, control functions, component manufacture and test-related boundary qualifiers

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System boundary rules · 5
Rule IDApplies toRuleSource IDs
system_boundary_rule_1foreground_system_boundaryThe foreground boundary begins when traceable purchased materials, qualified parts and internal intermediates enter the manufacturing organization and ends when one complete unloaded reactor passes the declared manufacturing acceptance gate. Upstream production of purchased products is linked through background datasets; the foreground contains only exchanges under the manufacturer's operational control.
sb_manufacturing_gateForeground manufacturingInclude material receipt, forming, machining, welding, heat treatment, cleaning, nondestructive examination, dimensional inspection, assembly, pressure/seal/electrical/functional testing and manufacturer-gate handover when performed for the reference product.iaea-np-t-3-21-2016, us-nrc-ap1000-ser-ch4
sb_product_exclusionsProduct boundaryExclude fuel elements, separately supplied reactor parts, separate boilers or steam generators, complete power-plant construction, civil works, fueled commissioning, operation and end-of-life unless the study explicitly adds them as separate product systems.un-cpc-3-0-2025, iaea-ssg-56-2020
sb_upstream_linkagePurchased inputsInclude purchased-input quantities in the foreground and link their production burdens through upstream datasets; do not reproduce upstream processes as direct foreground elementary emissions.
sb_direct_emissionsForeground elementary flowsReport only emissions released by included manufacturing equipment. Upstream electricity and material-production emissions remain in linked upstream datasets.
Allocation rules · 4
Rule IDApplies toRuleSource IDs
al_subdivisionManufacturing orders and sitesPrefer process subdivision and order-specific measurement so burdens follow the reactor and process that caused them.
al_shared_utilitiesShared electricity, gas, water and facility servicesUse submetered consumption where available. Otherwise allocate by a documented causal driver such as machine-hours, furnace-hours, test-hours or occupied production time; do not allocate by reactor price when a physical driver is available.
al_scrapPost-industrial steel scrap and recoverable alloy scrapRecord scrap mass and destination before applying the study's recycling convention. Do not add an avoided-primary-production credit inside the foreground unless the chosen LCA method requires it; disclose any cut-off, substitution or end-of-life approach.
al_reworkRework, rejects and repairAssign rework energy, consumables and rejected material to the order and process that caused them. Sale proceeds from scrap do not make reactor manufacturing a multifunctional process.
Validation rules · 8
Rule IDApplies toRuleSource IDs
val_reference_identityReference flowConfirm that the output is one complete unloaded nuclear reactor, not a fuel element, separate part, complete power plant or boiler product, and that all required qualifiers are present.un-cpc-3-0-2025, iaea-ssg-56-2020
val_process_coverageForeground boundaryVerify that pressure-boundary fabrication, internals fabrication, final assembly and applicable factory tests are represented, with all included sites and rework covered.iaea-np-t-3-21-2016, us-nrc-ap1000-ser-ch4
val_atomic_flowsInventoryConfirm that every inventory card contains one concrete exchange and that gases, fuels, electricity, water, chemicals, wastes and direct emissions are not combined.
val_internal_transfersInternal intermediatesConfirm one-to-one identity and quantity matching for pressure-boundary and internals assembly outputs and inputs, and no double counting of upstream burdens.
val_energy_and_emissionsEnergy and direct emissionsReconcile purchased energy to meters or allocation records; direct fossil CO2 shall equal foreground natural-gas or diesel use times the documented factor, while upstream electricity and fuel emissions remain in linked datasets.
val_material_and_waste_balanceFabrication processesReconcile material inputs, accepted intermediate/product mass, measured scrap/waste, stock change and reported direct mass emissions; investigate and disclose unresolved imbalance.iaea-np-t-3-21-2016
val_quality_dossierPublished datasetVerify availability of material, welding, heat-treatment, NDT, pressure/seal/electrical/functional-test, calibration, cleanliness and final-dimension evidence applicable to the delivered configuration.iaea-np-t-3-21-2016
val_unresolved_evidenceCandidate limitationsKeep the reference product and other UUID-empty rows unresolved until an exact public state-100 identity is audited; do not treat absent two-source ranges as external benchmarks.
Processes and inputs/outputs · 3
Process IDProcess nameInput flowsOutput flows
pressure_boundary_fabricationReactor pressure-boundary fabrication63
reactor_internals_fabricationReactor internals and core-support fabrication63
final_assembly_and_testingFinal reactor assembly and factory acceptance testing63

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1. Scope and Applicability2. Product Category Identity3. Reference Flow4. Measurement and Unit Rules5. System BoundaryBoundary Abstraction6. Process Inventory StructureProcess MapProcess: Reactor pressure-boundary fabrication (pressure_boundary_fabrication)InputsProduct flowsAlloy-steel plate for pressure-boundary components (pressure_steel_plate)Flux-cored welding wire (pressure_flux_cored_wire)Purchased electricity (pressure_electricity)Gaseous natural gas for heat treatment (pressure_natural_gas)Industrial oxygen for oxy-fuel operations (pressure_industrial_oxygen)Process water for fabrication and cleaning (pressure_process_water)Waste flowsElementary flowsOutputsProduct flowsAccepted reactor pressure-boundary assembly (pressure_boundary_assembly_output)Waste flowsPost-industrial steel scrap (pressure_steel_scrap)Elementary flowsFossil carbon dioxide from natural-gas combustion (pressure_fossil_co2)Process: Reactor internals and core-support fabrication (reactor_internals_fabrication)InputsProduct flowsAustenitic stainless-steel stock (internals_austenitic_stainless_steel)Nickel-based alloy stock (internals_nickel_based_alloy)Flux-cored welding wire (internals_flux_cored_wire)Purchased electricity (internals_electricity)Sodium hydroxide for alkaline cleaning (internals_sodium_hydroxide)Process water for internals cleaning (internals_process_water)Waste flowsElementary flowsOutputsProduct flowsAccepted reactor-internals assembly (reactor_internals_assembly_output)Waste flowsPost-industrial steel scrap (internals_steel_scrap)Waste alkaline liquor (internals_waste_alkaline_liquor)Elementary flowsProcess: Final reactor assembly and factory acceptance testing (final_assembly_and_testing)InputsProduct flowsReactor pressure-boundary assembly (final_pressure_boundary_assembly_input)Reactor-internals assembly (final_reactor_internals_assembly_input)Control-rod drive mechanism (final_control_rod_drive_mechanism)Purchased electricity (final_electricity)Process water for hydrostatic and cleanliness testing (final_process_water)Diesel fuel for on-site test equipment (final_diesel_fuel)Waste flowsElementary flowsOutputsProduct flowsAccepted complete unloaded nuclear reactor (final_nuclear_reactor_output)Waste flowsHydrostatic-test wastewater (final_test_wastewater)Elementary flowsFossil carbon dioxide from test-diesel combustion (final_fossil_co2)7. Allocation and Co-product Handling8. Foreground Data Collection, Calculation, and Quality RulesData Collection ProtocolsCalculation RulesData Quality Requirements9. Validation Rules10. Published Dataset Profile11. Data Sources