Fortum bygger Sveriges största biokraftvärmeverk i Stockholms stad. Daniel Nilsson Värme & Kraftkonferensen, Stockholm 12 november 2014

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1 Fortum bygger Sveriges största biokraftvärmeverk i Stockholms stad Daniel Nilsson Värme & Kraftkonferensen, Stockholm 12 november 2014

2 2 Projekt KVV8

3 3 Project KVV 8 in Värtan

4 KVV8 production capacity CHP plant KVV8 built robust and fuelflexible with CFB technology (biofuels like grot, bark, wood chips, etc. and coal is possible reserve fuel). 330 MW thermal boiler capacity at 140 bar and 560 C. Electric power capacity gross, 130 MW. District Heating capacity, 280 MW including 80 MW of fluegascondensing with humidifier. 4

5 Värmeproduktion [GWh/mån] KVV OP SE Bioolja FV Bioolja (inkl KVV1) SE Pellets Jan Feb Mar Apr Maj Jun Jul Aug Sep Okt Nov Dec SE Torv FV VP SE RT-flis CE KVV6 SE Returbr SE KVV CE KVV8 Hö P1-P4, P6

6 Important steps towards sustainable energy locally and globally Reduces CO2 emissions locally by about tonnes per year Reduces CO2 emissions globally about tonnes per year

7 Fuel supply Stable and competitive fuel prices obtained through access to various fuel markets locally - regional - global. Several independent logistics necessary to secure a safe supply of fuel. 7

8 8 Plant location, logistics and fuel supply

9 URBAN DESIGN + GOTTLIEB PALUDAN 9

10 Fuel conveyor tunnel Tunnel is sectioned for fuels, ash, service trucks and escape route. Location is reserved for a conveyor with pellets as a future possibility 10

11 Fuel crane unloading equipment for chips For KVV8 required approximately m3 of wood per day. 1 trains per day (About 3000 m3) Maximum Capacity Ships> 100% The pier is 200 m long. Maximum shipsize m. 11

12 Ash silos Movable unloading point Unloading to train/truck possible Scale train/truck 12

13 Capacity 1500 m3/h. Train unloading 13

14 KVV8 new tunnels Längd nya tunnlar 1350 m (exkl. schakt) Bortsprängd volym tunnlar m 3 (exkl. schakt) Nya tunnlar Såll och kross Lastbil/Järnvägslossning Asksilos 14

15 Processchema AUTOCAD 14 WIN A Gland steam G Aux Cooling Sea water Cooling system Sea Aux steam KVV 1 District heat system 250 ºC 20 bar(a) Supply 82 ºC Direct Heat condenser Hot return 65 ºC Cold return 44 ºC B Ship & train discharging NH3 Sand SNCR CaCO3 Soot blow Compressed air Bag house filter Flue Gas Fan District heat recovery Flue Gas Condensation Combustion air Fuel feeder Solid separators Convetions superheaters Analysis Oil burners NaHCO3 Alt. CaOH Furnance Economiser Air preheater Demister D Fuel storag e Stack P15 Fly ash Bottom ash Vent fans Primary & secondary air fans Booster air fan Fluegas Recirculation Air preheater Humidifier Deionized Water tank Water treatment Dionization treatment Samples for testing Recipient Fuel oil Rev. Ändring Sign. Datum FORTUM VÄRME VÄRTAN KVV 8, 2012 Konstruktör Datum PW Agreement Appendix 3.11A Projekt KVV 8 Principle diagram Biomass Plant KVV 8 boiler, flue gas & turbine Blad Forts. Rev.

16 Contract breakdown PROCESS - Boiler incl. fluegascleaning - Turbine - Flue gas condensation - External fuelhandling - District Heating Works - Tunnel Ventilation - Electrical contracts etc. BUILDING - Dredging and pier in the harbor - Excavation - Tunnel Interior - Process Buildings incl. finish grading - Elevators and cranes - Ventilation and VVS etc.

17 URBAN DESIGN + GOTTLIEB PALUDAN 17

18 URBAN DESIGN + GOTTLIEB PALUDAN 18

19

20 EK Värtaverket Cooled Primary Loop Boiler 300 MW th 100% Guarantee-Loadcase 562 C/129 bar(a) 330 MW th 110% 345 MW th short time (400h per year) 375 MW th design of pressure part, feedwater pumps, safety valve Cooled Primary Loop 20 Andritz Energy & Environment

21

22 EK Värtaverket Lay Out 22 Andritz Energy & Environment

23 EK Värtaverket Lay Out 23 Andritz Energy & Environment

24 STEAM TURBINE: MTD FAMILY MTD 40 MTD 40 Characteristics Single casing condensing or backpressure turbines directly connected with the generator With or without steam reheating Possibility to apply controlled steam extractions Common or separate foundation frame possibility Possibility of axial or radial outlet to the condenser KVV8 153 MW 3000 rpm 16,0 MPa 560 o C Technical specification Capacity output: Turning speed: Steam pressure: Steam temperature: MW 3000 / 3600 rpm 3 16,5 MPa C EVI Europark Germany Waste to energy 60 MW MTD40CA MTD 40 C Condensing type Radial outlet MTD 40 B Backpressure type MTD 40 CA Condensing type Axial outlet MTD 40 C(B)E Condensing type 1 controlled extraction MTD 40 C(B)R Condensing type with reheating 24

25 Longitudinal section of KVV8 turbine ŠKODA POWER

26 Installation in KVV8 turbine building ŠKODA POWER

27 Installation in KVV8 turbine building ŠKODA POWER

28 PROJECT KVV8 DCS SYSTEM ALSA/Pär Wallin 11/11/

29 KVV8, Power distribution system

30

31 KVV8 Constructionsite

32

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