R O D O S DSSNET. Collection of site specific data of European nuclear power plants as input to RODOS R E P O R T D R A F T FIR1-CT
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1 Collection of site specific data of European nuclear power plants as input to RODOS DSSNET FIR1-CT D R A F T V e r s i o n 2. 0 ( 1 6 / 0 5 / ) R O D O S R E P O R T DECISION SUPPORT FOR NUCLEAR EMERGENCIES DSSNET(WP3)-TN(01)02
2 Draft
3 Summary of site specific data of European nuclear power plants as input to RODOS DSSNET(WP3)-TN(01)02 I. Hasemann, C. Landman, J. Ehrhardt Forschungszentrum Karlsruhe GmbH Institut für Kern- und Energietechnik Postfach 36 D Karlsruhe Draft, 11 June 2007 Draft
4 Management Summary One of the key features of the RODOS system is its applicability in case of nuclear accidents somewhere in Europe. In this context, those site and plant related data which are needed by RODOS for calculations for a given nuclear power plant were collected and implemented into the RODOS system for all nuclear power plants in Europe. Report DSSNET(WP3)-TN(01)02 describes these data. Draft
5 Contents Management Summary 3 Contents 3 1 Introduction 3 2 Site and plant specific data of European nuclear power plants Comments European Country Identification Code Geographical latitude and Abbreviations for reactor types Roughness length Inventory name; default LWR substitute Nominal thermal power; how to interpret negative values Characteristic building dimensions of a NPP Area of stack vent opening; volume flux through stack vent opening; default values Default values for sectors and zones for emergency planning Argentina (ARG) Belgium (BEL) Brazil (BRA) Bulgaria (BUL) Czech Republic (CZE) Finland (FIN) France (FRA) Germany (GER) Hungary (HUN) Lithuania (LTU) Netherlands (NED) Poland (POL) Romania (ROM) Russia (RUS) Slovak Republic (SVK) Slovenia (SLO) Spain (ESP) Sweden (SWE) Switzerland (SUI) Ukraine (UKR) United Kingdom (GBR) 3 3 NPP data in the RODOS FixData base: Type, value range, implementation Data about the site of the NPP Data about the NPP block Notes How to add a new set of power plant data to the RODOS FixData base File input Manual input 3 4 Current European Country Identification Codes (IOC Country Codes) 3 5 References 3 Draft
6 Document History 3 Draft
7 1 Introduction The operational and comprehensive real-time on-line decision support system RODOS [1] is a decision-aiding tool for off-site emergency management after airborne accidental releases from nuclear installations, in particular nuclear power plants (NPPs), within and across Europe. One prerequisite for the general applicability of RODOS for this purpose is the availability - for all European NPPs - of all site and plant related data that are needed by the RODOS system for calculations for a given NPP. In this context, the FZK RODOS team designed a corresponding questionnaire and sent it out to all members of the RODOS project in January The compiled data from that survey were implemented into the FixData base of the RODOS system. Since 2001, the data base was extended by some non-european entries. Also, due to frequent use within the RODOS community, some value errors have been reported and were corrected with the respective follow-up version of the system. Chapter 2 of the report at hand contains the original compilation with all updates until now, together with some comments and clarifications with respect to the aim of some data items in RODOS. Chapter 3 gives a formal description of the data type and value range of the NPP data in the RODOS FixData base, and explains how to add new such data to that data base. Draft
8 2 Site and plant specific data of European nuclear power plants 2.1 Comments European Country Identification Code As European Country Identification Codes the three-letter alphabetic codes from the International Olympic Committee (IOC) are taken, as these codes are much more known than the standard ISO 3166 codes; the IOC codes are listed in Chapter Geographical latitude and Geographical latitude: Decimal degrees; south minus, north plus. Geographical : Decimal degrees; west minus, east plus Abbreviations for reactor types The reactor types are shown in the Tables of this report as they were given in the returned questionnaires. The encountered abbreviations are listed below. AGR BWR Advanced Gas-cooled Reactor Boiling Water Reactor DWR/DWRK German abbreviation for Pressurised Water Reactor FBR GCR LWGR LWR PHWR RBMK SCHW SWR Fast Breeder Reactor Gas Cooled Reactor Light Water-cooled Graphite-moderated Reactor Light Water Reactor Pressurized Heavy Water Reactor Pressurised Water Reactor Russian designation for (in English) Reactor of large power of channel type German abbreviation for Heavy Water German abbreviation for Boiling Water Reactor is the Soviet (now, Russian Federation) designation for Pressurised (light) Water Reactor. In western countries, is used as acronym. Draft
9 2.1.4 Roughness length The roughness length is currently used by one atmospheric dispersion and deposition model in RODOS (QuickProgno) for the selection of an appropriate Pasquill-Gifford diffusion parameter set. In the Tables of this report and in the RODOS FixData base, the demanded roughness length index shall represent an roughness length z 0 for the surroundings of the site that can be used independent of the wind direction. Index 1 stands for smooth terrain, z0=0.5m, index 2 for forest or urban areas, z 0 =1.5m. Special roughness conditions relevant for certain wind directions only (e.g. a lake at one side of the NPP) can be considered via the RODOS user input interface and should not be given here (!) Inventory name; default LWR substitute A nuclide-specific activity inventory at the end of the chain reaction for the reactor under consideration is required as input for source term calculations for many of the possible source term input types of RODOS. The Tables of this report and in the RODOS FixData base contain for each NPP a reference to an applicable radionuclide inventory file in terms of an inventory name. The files themselves must be provided by the RODOS system administrators for each country and are not kept in the FixData base but elsewhere in the system; the RODOS user has no access to them. Reference [2] contains a catalogue of all inventory files provided with the current standard installation of RODOS. In the case that there exists an inventory file belonging to a given NPP, the inventory name for the NPP is the name of that file. In the case that there is no inventory file belonging to a given NPP, it is possible to use a substitute inventory from a reactor with similar physical characteristics, because a nuclide inventory of a reactor is approximately proportional to the reactor power, and the RODOS source term code will scale at runtime the substitute inventory to the thermal power of the NPP under consideration [3]. The substitutions in the compilation were made by one of the authors (C. Landman): For commercial light water reactors, the default substitute LWR inventory INVE._3733MWth_Leitfaden95 is used for noinventory-file cases. Draft
10 If a substitute inventory was not available or not known, "" (in capital letters) is specified in the name field 1. Suggestions for suitable or better substitute inventories are welcome - please contact C. Landman or I. Hasemann Nominal thermal power; how to interpret negative values Normally, in the Tables of this report and in the RODOS FixData base the nominal thermal power of block [MW therm. ] is to be given. When only the nominal electrical power [MW elec. ] was given, this is indicated by a negative value in the Tables. At runtime of RODOS, the absolute value [MW elec. ] will be multiplied by a conversion factor to obtain the thermal power [MW therm. ]. The conversion factor used is contained in data set <~rodos/roextern/data/sourceterm/setup/in.defaultsettings> Characteristic building dimensions of a NPP The characteristic building dimensions are used by all atmospheric dispersion and deposition models in RODOS for assessing the initial plume width for near ground releases. In the Tables of this report and in the RODOS FixData base, the demanded characteristic building dimensions shall represent an height and width of the reactor and auxiliary buildings that can be used independent of the wind direction. Special building structures relevant for certain wind directions only (e.g. cooling towers) can be considered via the RODOS user input interface and should not be given here (!). If the values are not available or not known, RODOS can be instructed to insert default values at runtime 2. The default values are contained in data set <~rodos/roextern/data/sourceterm/setup/n.defaultsettings> Area of stack vent opening; volume flux through stack vent opening; default values The two items area of stack vent opening [m 2 ] and volume flux through the stack vent opening [m 3 /s] became introduced with RODOS version 6.0. If the values are not available or not known, RODOS can be instructed to insert default values at runtime 3. The default values are contained in data set <~rodos/roextern/data/sourceterm/setup/n.defaultsettings>. 1 For sites with an undefined inventory, source term calculations that require an inventory are not possible. 2 By specifying -1 for the item in the FixData base. Draft
11 The default values supplied with the standard installation of RODOS are: Area of stack vent opening: 8 [m 2 ] (corresponding to a stack opening diameter of 3.19 m). Average volume flux through stack vent opening: [m 3 /s] Default values for sectors and zones for emergency planning If the values are not available or not known, RODOS can be instructed to insert default values at runtime 4. The default values are contained in data set <~rodos/roextern/data/sourceterm/setup/n.defaultsettings>. 3 By specifying -1 for the item in the FixData base. 4 By specifying -1 for the item in the FixData base. The standard RODOS default setting produces a small circle with a cross at the reactor location. Draft
12 2.2 Argentina (ARG) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] R1: sheltering R2: iodine tablets R3: evacuation number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 ATUCHA default default default default default default EMBALSE default default default default default default Plant data for RODOS site site co-ordinates building size acronym inventory name ATUCHA-1 ATUCHA-2 type nominal thermal power [MW] PHWR PHWR latitude height of stack above ground level EMBALSE PHWR default default default default default diameter default default height default default Draft
13 2.3 Belgium (BEL) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] R1: sheltering R2: iodine tablets R3: evacuation number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 MOL (every ) 1 DOEL (every ) 1 TIHANGE (every ) 2 Plant data for RODOS site site co-ordinates building size acronym inventory name type nominal thermal power [MW] latitude height of stack above ground level MOL-BR2 LWR DOEL-1 DOEL-2 DOEL-3 DOEL-4 TIHANGE-1 TIHANGE-2 TIHANGE diameter height Draft
14 2.4 Brazil (BRA) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] R1: sheltering R2: iodine tablets R3: evacuation number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 ANGRA default default default default default default Plant data for RODOS site site co-ordinates building size acronym inventory name ANGRA-1 ANGRA-2 type nominal thermal power [MW] latitude height of stack above ground level default default diameter height default default Draft
15 2.5 Bulgaria (BUL) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 KOZLODUY R1 (3 km): 1 R2 (30km): 2 Plant data for RODOS site site co-ordinates building size acronym inventory name KOZLODUY-1 KOZLODUY-2 KOZLODUY-3 KOZLODUY-4 KOZLODUY-5 KOZLODUY-6 type nominal thermal power [MW] latitude height of stack above ground level (one stack for units 1 & 2) 1 (one stack for units 3 & 4) 1 (one stack for units 5 & 6) diameter height Draft
16 2.6 Czech Republic (CZE) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus R1 R2 R3 DUKOVANY (348.75) Roughness length 1: smooth terrain 2: forests, urban areas TEMELIN Plant data for RODOS site site co-ordinates building size acronym inventory name DUKOVANY-1 (CEZ-EDU 1) DUKOVANY-2 (CEZ-EDU 2) DUKOVANY-3 (CEZ-EDU 3) DUKOVANY-4 (CEZ-EDU 4) TEMELIN-1 (CEZ-ETE 1) TEMELIN-2 (CEZ-ETE 2) type nominal thermal power [MW] v.213 v.213 v.213 v latitude height of stack above ground level (One stack for unit 1 and 2) (One stack for unit 3 and 4) diameter height Draft
17 2.7 Finland (FIN) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 LOVIISA OLKILUOTO Plant data for RODOS site site co-ordinates building size acronym inventory name LOVIISA-1 (FI-1) LOVIISA-2 (FI-2) OLKILUOTO-1 (FI-3) OLKILUOTO-2 (FI-4) type nominal thermal power [MW] BWR BWR latitude height of stack above ground level diameter height Draft
18 2.8 France (FRA) Site data for RODOS site co-ordinates of the centre of the emergency planning zones* name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 BELLEVILLE BLAYAIS BUGEY CATTENOM CHINON CHOOZ CIVAUX CRUAS DAMPIERRE FESSENHEIM FLAMANVILLE GOLFECH GRAVELINES NOGENT PALUEL PENLY PHENIX ST. ALBAN ST. LAURENT TRICASTIN in case of more than 1 unit, the centre between the units is used Draft
19 Plant data for RODOS site plant co-ordinates* building size acronym inventory name BELLEVILLE-1 BELLEVILLE-2 BLAYAIS-1 BLAYAIS-2 BLAYAIS-3 BLAYAIS-4 BUGEY-2 BUGEY-3 BUGEY-4 BUGEY-5 CATTENOM-1 CATTENOM-2 CATTENOM-3 CATTENOM-4 CHINON-B-1 CHINON-B-2 CHINON-B-3 CHINON-B-4 CHOOZ-B-1 CHOOZ-B-2 CIVAUX-1 CIVAUX-2 CRUAS-1 CRUAS-2 CRUAS-3 CRUAS-4 type nominal thermal power [MW] latitude height of stack above ground level diameter height Draft
20 site plant co-ordinates* building size acronym inventory name DAMPIERRE-1 DAMPIERRE-2 DAMPIERRE-3 DAMPIERRE-4 FESSENHEIM-1 FESSENHEIM-2 FLAMANVILLE-1 FLAMANVILLE-2 GOLFECH-1 GOLFECH-2 GRAVELINES-B1 GRAVELINES-B2 GRAVELINES-B3 GRAVELINES-B4 GRAVELINES-C5 GRAVELINES-C6 NOGENT-1 NOGENT-2 PALUEL-1 PALUEL-2 PALUEL-3 PALUEL-4 PENLY-1 PENLY-2 type nominal thermal power [MW] latitude height of stack above ground level PHENIX FBR ST.ALBAN ST.ALBAN ST.LAURENT-B ST.LAURENT-B diameter height Draft
21 site plant co-ordinates* building size acronym inventory name TRICASTIN-1 TRICASTIN-2 TRICASTIN-3 TRICASTIN-4 type nominal thermal power [MW] Notes: * source: IAEA (except research reactors) latitude height of stack above ground level diameter height Draft
22 2.9 Germany (GER) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 BIBLIS BROKDORF BRUNSBUETTEL EMSLAND FR-BERLIN FR-GEESTHACHT FR-JUELICH FR-MUENCHEN GRAFENRHEINFELD GROHNDE GUNDREMMINGEN KERNKRAFTWERK ISAR KRUEMMEL NECKARWESTHEIM OBRIGHEIM PHILIPPSBURG STADE UNTERWESER Draft
23 Plant data for RODOS site plant co-ordinates building size acronym inventory name KWB-A KWB-B INVE._3733MWth_Leitfaden95 INVE._3733MWth_Leitfaden95 type 5 nominal thermal power [MW] DWR DWR latitude height of stack above ground level diameter KBR DWR KKB SWR KKE DWRK BER-II INVE.RESEARCH_BER-II Pool FRG-1 Pool FRJ-2 SCHW FRM-II INVE.RESEARCH_FRM-II SCHW KKG DWR KWG DWR KRB-II-B SWR KRB-II-C SWR KKI-1 SWR KKI-2 DWRK KKK SWR GKN-1 GKN-2 DWR DWRK KWO DWR KKP-1 KKP-2 SWR DWR KKS DWR KKU DWR height Type names are in German; DWR/DWRK mean ; SWR means BWR, SCHW means Heavy Water Draft
24 2.10 Hungary (HUN) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 PAKS Plant data for RODOS site site co-ordinates building size acronym inventory name type nominal thermal power [MW] latitude height of stack above ground level diameter height PAKS-1 PAKS-2 PAKS-3 PAKS-4 Default LWR Substitute Default LWR Substitute Note: co-ordinates are the centre of 30km radius Draft
25 2.11 Lithuania (LTU) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude IGNALINA radii of the emergency planning zones [km] R1 R2 R3 number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas Plant data for RODOS site site co-ordinates building size acronym inventory name IGNALINA-1 (LT-46) IGNALINA-2 (LT-47) type nominal thermal power [MW] RBMK RBMK latitude height of stack above ground level diameter height Draft
26 2.12 Netherlands (NED) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones* [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 BORSSELE DODEWAARD HIGH FLUX REACTOR PETTEN LOW FLUX REACTOR PETTEN HOGER ONDERWIJS REAKTOR DELFT COVRA URENCO Status and explanation of facilities: Borssele: NPP, Operational Dodewaard: NPP, Shutdown High Flux Reactor (HFR), Petten: Research Reactor, Petten Low Flux Reactor (LFR), Petten: Research Reactor, Petten (EC) Hoger Onderwijs Reaktor (HOR), Delft: Research Reactor, Interfacultary Reactor Institute COVRA: Waste Storage URENCO: Enrichment Facility Emergency planning zones correspond to evacuation, iodine-prophylaxis and sheltering respectively. Draft
27 Plant data for RODOS site site co-ordinates building size acronym inventory name BORSSELE Default LWR Substitute type nominal thermal power [MW] latitude height of stack above ground level diameter DODEWAARD Default LWR BWR Substitute LFR ARGONAUT HFR TANK IN POOL HOR POOL COVRA URENCO height Draft
28 2.13 Poland (POL) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude Longitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 SWIERK Plant data for RODOS site site co-ordinates building size acronym inventory name MARIA INVE.RESEARCH_30MW th_swierkmaria type Nominal thermal power [MW] latitude height of stack above ground level diameter Research height Draft
29 2.14 Romania (ROM) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude Longitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 CERNAVODA Plant data for RODOS site site co-ordinates building size acronym inventory name CERNAVODA-1 INVE.PHWR_2200MWth_ CERNAVODA type Nominal thermal power [MW] latitude height of stack above ground level diameter height PHWR Draft
30 2.15 Russia (RUS) Site data for RODOS Site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 1 BALAKOVO BELOYARSKY BILIBINO KALININ KOLA KURSK LENINGRAD NOVOVORONEZH ROSTOV SMOLENSK Draft
31 Plant data for RODOS site site co-ordinates building size acronym inventory name BALAKOVO-1 BALAKOVO-2 BALAKOVO-3 BALAKOVO-4 type nominal thermal power [MW] latitude height of stack above ground level BELOYARSKY-3 FBR BILIBINO UNIT A BILIBINO UNIT B BILIBINO UNIT C BILIBINO UNIT D KALININ-1 KALININ-2 KOLA-1 (Ru-12) KOLA-2 (Ru-13) KOLA-3 (Ru-32) KOLA-4 (Ru-33) KURSK-1 KURSK-2 KURSK-3 KURSK-4 LENINGRAD-1 LENINGRAD-2 LENINGRAD-3 LENINGRAD-4 NOVOVORONEZH-3 NOVOVORONEZH-4 NOVOVORONEZH-5 LWGR LWGR LWGR LWGR LWGR LWGR LWGR LWGR LWGR LWGR LWGR LWGR ROSTOV SMOLENSK-1 SMOLENSK-2 SMOLENSK-3 LWGR LWGR LWGR diameter height Draft
32 2.16 Slovak Republic (SVK) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 BOHUNICE-V BOHUNICE-V MOCHOVCE Plant data for RODOS site site co-ordinates building size acronym inventory name BOHUNICE-V1-B1 (EBO-V1-B1) BOHUNICE-V1-B2 (EBO-V1-B2) BOHUNICE-V2-B3 (EBO-V2-B3) BOHUNICE-V2-B4 (EBO-V2-B4) MOCHOVCE-B1 (EMO-B1) MOCHOVCE-B2 (EMO-B2) INVE.4V230_1375MWth_Slovak INVE.4V230_1375MWth_Slovak INVE.4V213_1375MWth_Slovak INVE.4V213_1375MWth_Slovak INVE.4V213_1375MWth_Slovak INVE.4V213_1375MWth_Slovak type nominal thermal power [MW] ( 4V230) ( 4V230) ( 4V213) ( 4V213) ( 4V213) ( 4V213) latitude height of stack above ground level diameter height Draft
33 2.17 Slovenia (SLO) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 KRŠKO Plant data for RODOS site site co-ordinates building size acronym inventory name KRSKO (NEK) Default LWR Substitute type nominal thermal power [MW] latitude height of stack above ground level (attached to the containment) diameter height 36 Draft
34 2.18 Spain (ESP) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 ALMARAZ ASCÓ COFRENTES JOSÉ CABRERA SANTA MARIA DE GAROÑA TRILLO VANDELLÓS Draft
35 Plant data for RODOS site site co-ordinates building size acronym inventory name ALMARAZ I ALMARAZ II ASCÓ I ASCÓ II INVE._2686MWth_ALMARAZ INVE._2686MWth_ALMARAZ INVE._2900MWth_Spain INVE._2900MWth_Spain type nominal thermal power [MW] latitude height of stack above ground level COFRENTES INVE.BWR_3014MWth_COFRENTES BWR * 53 ** diameter height JOSÉ CABRERA INVE._0480MWth_JOSE_CABRERA SANTA MARÍA INVE.BWR_1381MWth_S_M_DE_GARONA BWR DE GAROÑA TRILLO INVE._3000MWth_TRILLO VANDELLÓS II INVE._2900MWth_Spain * Ventilation stack ** Standby Gas Treatment System stack *** Effective transversal surface of reactor building Draft
36 2.19 Sweden (SWE) Site data for RODOS site co-ordinates of the centre of the emergency planning zones* name latitude FORSMARK OSKARSHAMN BARSEBECK RINGHALS radii of the emergency planning zones [km] R1 R2 R3 number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas Plant data for RODOS site site co-ordinates building size acronym inventory name FORSMARK-1 (SE-9) FORSMARK-2 (SE-11) FORSMARK-3 (SE-14) type nominal thermal power [MW] BWR BWR BWR latitude height of stack above ground level OSKARSHAMN-1 (SE-2) BWR OSKARSHAMN-2 (SE-3) BWR OSKARSHAMN-3 (SE-12) BWR 3300 BARSEBECK-2 (SE-8) BWR RINGHALS-1 (SE-4) RINGHALS-2 (SE-5) RINGHALS-3 (SE-7) RINGHALS-4 (SE-10) BWR diameter height Draft
37 2.20 Switzerland (SUI) Site data for RODOS Site co-ordinates of the centre of the emergency planning zones Name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 BEZNAU GÖSGEN LEIBSTADT MÜHLEBERG Plant data for RODOS Site site co-ordinates building size acronym inventory name BEZNAU-1 BEZNAU-2 type nominal thermal power [MW] latitude height of stack above ground level diameter height GOESGEN LEIBSTADT BWR MUEHLEBERG BWR Draft
38 2.21 Ukraine (UKR) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones 6 [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 KHEMELNITZKI ROVNO SOUTH UKRAINE ZAPOROZHE Plant data for RODOS site site co-ordinates building size acronym inventory name type nominal thermal power [MW] latitude height of stack above ground level KHEMELNITZKI (66) ROVNO-1 ROVNO-2 ROVNO-3 SOUTH UKRAINE-1 SOUTH UKRAINE-2 SOUTH UKRAINE diameter height (66) (76) (76) (66) 6 Ukraine's NPPs have not special emergency planning zones, but emergency plans consider emergency measure on NPP's site, in hygienic protective zone and observation zone accordingly Draft
39 ZAPOROZHE-1 ZAPOROZHE-2 ZAPOROZHE-3 ZAPOROZHE-4 ZAPOROZHE-5 ZAPOROZHE ()66 ()66 ()66 ()66 ()66 ()66 Draft
40 2.22 United Kingdom (GBR) Site data for RODOS site co-ordinates of the centre of the emergency planning zones name latitude radii of the emergency planning zones [km] number of planning sectors start angle of planning sector 1 relative to North (=0) left: minus right: plus Roughness length 1: smooth terrain 2: forests, urban areas R1 R2 R3 BRADWELL CALDER HALL CHAPELCROSS DUNGENESS HARTLEPOOL HEYSHAM HINKLEY POINT HUNTERSTON OLDBURY SIZEWELL (8) a 0 1 TORNESS WYLFA SPRINGFIELDS B SELLAFIELD C CAPENHURST D DOUNREAY E a) Sectors that are completely in the sea are not labelled; the number in brackets is number of labelled sectors b) Fuel manufacture c) Waste management, reprocessing, fuel recycling, reactor operation d) Uranium enrichment, decommissioning and storage of uranic materials e) Waste management and reprocessing Draft
41 Plant data for RODOS site plant co-ordinates* building size f acronym inventory name BRADWELL UNIT A BRADWELL UNIT B CALDER HALL UNIT A CALDER HALL UNIT B CALDER HALL UNIT C CALDER HALL UNIT D CHAPELCROSS UNIT A CHAPELCROSS UNIT B CHAPELCROSS UNIT C CHAPELCROSS UNIT D DUNGENESS-A UNIT A DUNGENESS-A UNIT B DUNGENESS-B1 UNIT A DUNGENESS-B2 UNIT B HARTLEPOOL-A1 UNIT A HARTLEPOOL-A2 UNIT B HEYSHAM-1 UNIT A HEYSHAM-1 UNIT B HEYSHAM-2 UNIT A HEYSHAM-2 UNIT B HINKLEY POINT-B UNIT A HINKLEY POINT-B UNIT B HUNTERSTON-B1 UNIT A HUNTERSTON-B2 UNIT B OLDBURY-A UNIT A OLDBURY-A UNIT B SIZEWELL-A UNIT A SIZEWELL-A UNIT B SIZEWELL-B type nominal thermal power [MW] GCR GCR GCR GCR GCR GCR GCR GCR GCR GCR GCR GCR AGR AGR AGR AGR AGR AGR AGR AGR AGR AGR AGR AGR GCR GCR GCR GCR latitude height of stack above ground level e diameter height Draft
42 site plant co-ordinates* building size f acronym inventory name TORNESS UNIT A TORNESS UNIT B WYLFA UNIT A WYLFA UNIT B type nominal thermal power [MW] AGR AGR GCR GCR latitude height of stack above ground level e diameter height Draft
43 3 NPP data in the RODOS FixData base: Type, value range, implementation This Chapter describes the type, the value range, and the value interpretation, of nuclear power plant data that are contained in the FixData base of RODOS, and provides help for adding new such data to the FixData base. All notes marked by small bold upper characters (for example a) ) in Chapter 3.1 and Chapter 3.2 refer to the value range or to default values; the texts belonging to the notes are displayed in Chapter Data about the site of the NPP 3.2 Data about the NPP block Site name: Maximally 32 alpha-numerical characters; left adjusted; replace eventual blank(s) within the name by minus sign(s); do not use underscores(_) or periods(.) a) Site country: Abbreviation for the county the site lies in. For a list of allowed abbreviations see Chapter 4. Geographical latitude of centre of emergency planning zones (decimal degrees; south minus, north plus) a) Geographical of centre of emergency planning zones (decimal degrees; west minus, east plus) a) Emergency planning: Number of zones b) Emergency planning: Radii of zones [km] Emergency planning: Number of sectors b) Emergency planning: Start angle of sector 1 relative to north = zero (decimal degrees; left minus, right plus) Index for the roughness length z 0 in the vicinity of the site (1: smooth terrain, z 0 =0.5m / 2: forest, urban areas, z 0 =1.5m). In case of "no knowledge" we recommend to use index 2 a) d). Before specifying a value, read Chapter of this report. Block name: Maximally 32 alpha-numerical characters; left adjusted; replace eventual blank(s) within the name by minus sign(s); do not use underscores(_) or periods(.) a) Geographical latitude of block (decimal degrees; south minus, north plus) a) Geographical of block (decimal degrees; west minus, east plus) a) Block type (max. 32characters) a) Draft
44 Name of inventory data set belonging to the block a). Before specifying a name, read Chapter of this report. Nominal power of block [MW] (positive = thermal, negative = electrical, zero = zero). a) Before specifying a value, read Chapter of this report. Burn-up [days] (999<=>equilibrium core, burn-up) Comment: Specify a value that makes sense for the installation, or the value 999 to indicate "equilibrium core". Stack height above ground level Area of stack vent opening [m 2 b) f) ] Average volume flux through stack vent opening [m 3 /s] e) f) Average dimensions of buildings affecting the initial plume width Mean building width Mean building height Before specifying a value, read Chapter of this report. e) f) b) f) b) f) 3.3 Notes a) Default is not provided at runtime of code. That means that a correct value must be set in the FixData base. b) Zero value as given / Positive value as given / Negative value take default at runtime of RODOS. c) Zero value as given / Positive value as given / Negative value ignore value at runtime of RODOS. d) Only specific values are allowed. Else error at runtime! e) Zero value forbidden for NPP items (error stop with message) / Positive value as given / Negative value take default at runtime of RODOS. f) Default value for this item is contained in data set <~rodos/roextern/data/sourceterm/setup/in.defaultsettings>. 3.4 How to add a new set of power plant data to the RODOS FixData base File input Because the amount of input data is small and no large arrays must be filled, one can use the file-input mode, but also the manual input mode, by following the procedures described in Chapters or 3.4.2, respectively. The format of a file suitable for adding a data set to the RODOS FixData base is described elsewhere. However, it is possible to obtain example files that can be used as an input mask for all FixData categories. Draft
45 3.4.2 Manual input For reading data from a file into RODOS FixData base, it should reside in directory <~rodos/rodecfiles/input/>under some name {filename}. Then later one needs only to type in the file name. If it is elsewhere on disk, one must type in the complete path. Then execute the sequence of instructions listed below. Runrodos => tools => FixData => {category name} => attribute list => single table (at bottom of next menue) => new => file input => in next menue on top: give {filename}; bottom line, left side: give identification name for data base => ok. Wait a while. If all was ok, the file contents will soon appear in editor window => back to RODOS by using the respective "cancel/close/exit/file quit/reset/" etc. buttons. The installation is now finished. The new data reside in the FixData base under their identification name can be used. Execute the sequence of instructions listed below. Runrodos => tools => FixData => {category name} => attribute list => single table (at bottom of next menue) => new => manual input. => Import (now values are shown which can be used as an example for the new ones). => In the bottom line at left side, give the identification name for data base. => Type in all required information in the input fields. => Update. Wait until you see "update complete". Then => OK (otherwise you have to repeat all the steps). Close the menu by => previous => close => exit. Check the new entry in the FixData base by selecting the respective {category name}. Click => data set list (instead of attribute list). Select your new entry and click => display: The data are displayed and you can (and should) inspect them thoroughly. If everything is ok, click => exit => file => quit for leaving the FixData editor. Finally, go back to RODOS by using the respective "cancel/close/exit/file quit/reset/" etc. buttons. The installation is now finished. The new data reside in the FixData base under their identification name can be used. Draft
46 4 Current European Country Identification Codes (IOC Country Codes) Code Definition and Explanation AFG Afghanistan AHO Netherlands Antilles ALB Albania ALG Algeria AND Andorra ANG Angola ANT Antigua and Barbuda ASA American Samoa ARG Argentina ARM Armenia ARU Aruba AUS Australia AUT Austria AZE Azerbaijan BAH The Bahamas BAN Bangladesh BAR Barbados BDI Burundi BEL Belgium BEN Benin BER Bermuda BHU Bhutan BIH Bosnia Herzegovina BIZ Belize BLR Belarus BOL Bolivia BOT Botswana BRA Brazil BRN Bahrain BRU Brunei Darussalam BUL Bulgaria BUR Burkina Faso CAF Central African Republic CAM Cambodia CAN CAY CGO CHA CHI CHN CIV CMR COD COK COL Canada Cayman Islands Republic of the Congo Chad Chile People's Republic of China Côte d'ivoire(also known commonly as the Ivory Coast Cameroon Democratic Republic of the Congo (formerly known as Zaire) Cook Islands Colombia COM Comoros CPV CRC CRO CUB CYP CZE DEN DJI Cape Verde Costa Rica Croatia Cuba Cyprus Czech Republic Denmark Djibouti DMA Dominica DOM Dominican Republic ECU EGY ERI ESA ESP EST ETH FIJ FIN FRA Ecuador Egypt Eritrea El Salvador Spain Estonia Ethiopia Fiji Finland France Draft
47 FSM GAB Federated States of Micronesia Gabon GAM The Gambia GBR GBS GEO GEQ GER GHA GRE GRN GUA GUI Great Britain and Northern Ireland (United Kingdom) Guinea-Bissau Georgia Equatorial Guinea Germany Ghana Greece Grenada Guatemala Guinea GUM Guam GUY HAI HKG HON HUN INA IND IRI IRL IRQ ISL ISR ISV ITA IVB JAM JOR KGZ KOR KSA Guyana Haiti Hongkong China Honduras Hungary Indonesia India Islamic Republic of Iran Ireland Iraq Iceland Israel U.S. Virgin Islands Italy British Virgin Islands Jamaica Jordan Kyrgyzstan South Korea Saudi Arabia KUW Kuwait LAO Laos LAT Latvia LBA Libya LBR Liberia LCA Saint Lucia LES Lesotho LIB Lebanon LIE Liechtenstein LTU Lithuania LUX Luxembourg MAD Madagascar MAR Morocco MAS Malaysia MAW Malawi MDA Moldova MDV Maldives MEX Mexico MGL Mongolia MKD Former Yugoslav Republic of Macedonia MLI Mali MLT Malta MON Monaco MOZ Mozambique MRI Mauritius MTN Mauritania MYA Myanmar(formerly Burma) NAM Namibia NCA Nicaragua NED Netherlands NEP Nepal NGR Nigeria NIG Niger NOR Norway NRU Nauru NZL New Zealand OMA Oman PAK Pakistan PAN Panama Draft
48 PAR PER PHI PLE PLW PNG New POL POR PRK PUR QAT Paraguay Peru Philippines Palestine Palau Papua Guinea Poland Portugal North Korea Puerto Rico Qatar ROM Romania RSA RUS South Africa Russia RWA Rwanda SAM SCG SEN SEY SIN SKN SLE SLO SMR SOL SOM SRI STP SUD SUI SUR SVK Samoa Serbia and Monte negro(from the Serbian 'Crna Gora' for Montenegro) Senegal Seychelles Singapore Saint Kitts and Nevis Sierra Leone Slovenia San Marino Solomon Islands Somalia Sri Lanka São Tomé and Príncipe Sudan Switzerland Suriname Slovakia SWE SWZ SYR TAN TGA THA TJK Sweden Swaziland Syria Tanzania Tonga Thailand Tajikistan TKM Turkmenistan TLS TOG TPE TRI TUN TUR UAE Arab UGA UKR URU USA UZB VAN VEN VIE VIN YEM ZAM ZIM XXX Timor-Leste(also known commonly as East Timor) Togo Chinese Taipei (Republic of China, also known commonly as Taiwan) Trinidad and Tobago Tunisia Turkey United Emirates Uganda Ukraine Uruguay United States Uzbekistan Vanuatu Venezuela Vietnam Saint Vincent and the Grenadines Yemen Zambia Zimbabwe unspecified country code referring to sites named "MOBILE" release location; there are several types of mobile release locations (e.g. NPP or "RDD-Explosion") Draft
49 5 References [1] European Commission, J. Ehrhardt and A. Weis (ed.): RODOS: Decision support system for off-site nuclear emergency management in Europe. Final project report. Report EUR EN (2000), ISBN [2] C. Landman: Scenario Data Sets and Scenarios for RODOS PV6.0. Internal report RODOS(RA7)-TN(04)-02 (2004). [3] C. Landman: Source Term Treatment in RODOS PV6.0. Internal report RODOS(RA2)-TN(04)-04 (2004). Draft
50 Document History Document Title: Summary of site specific data of European nuclear power plants as input to RODOS RODOS number: DSSNET(WP3)-TN(01)02 Version and status: Version 2.0 (draft) Authors/Editors: Irmgard Hasemann, ( Claudia Landman ( Joachim Ehrhardt Address: Forschungszentrum Karlsruhe GmbH Institut für Kern- und Energietechnik Postfach 36 D Karlsruhe, Germany Issued by: Irmgard Hasemann History: Date of Issue: April 2006 Circulation: File Name: nppdata20.doc Date of print: August 23, 2007 Draft
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