LOS ENERGIDAG 2017 · 9 © 2016- Viking Heat Engines AS Produced to lift heat > 150 °C –...

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-CONFIDENTIAL- (NOT FOR REDISTRIBUTION) 20160405/HNR: V1.0 LOS ENERGIDAG 2017

Transcript of LOS ENERGIDAG 2017 · 9 © 2016- Viking Heat Engines AS Produced to lift heat > 150 °C –...

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LOS ENERGIDAG 2017

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© 2016- Viking Heat Engines AS

VIKING HEAT ENGINES – THE ORGANISATION

VIKING HEAT ENGINES

VHE NORWAY

Kristiansand

VHE GERMANY

Remscheid

VHE CARIBBEAN

Barbados

HEADQUARTER

• ADM• BUSINESS DEV.• SALES/MARKET• PRODUCT• R&D

PRODUCTION

• TEST CENTER• DEVELOPMENT• ASSEMBLY• SERVICE/MAINTENANCE• SALES

• SALES• CARIBBEAN• SOUTH AMERICA

Est. 2009. 20 employees Est. 2015. 25 employees Est. 2015. 5 employees

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© 2016- Viking Heat Engines AS

WASTE HEAT TO USEFUL HEAT

WASTE HEAT TO POWER and THERMAL ENERGY

ELECTRICITYOUT

OUR MAIN PRODUCTS

LOW TEMPERATURE

HEAT IN

HIGH TEMPERATURE

HEAT OUT

LOW TEMPERATURE

HEAT IN

Typ.40 – 100 °C

Typ.100 – 160 °C

Typ.80 – 200 °C Range

40 – 400 kW

HOT WATER OUT

and

Range200kW – 1MW

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© 2016- Viking Heat Engines AS

TRACKING CLEAN ENERGY PROGRESS REPORT 2017

International Energy Agency’s Clean energy progress report about development within 26 tracked technologies

3 TRACKED TECHNOLOGIES ARE GREEN– Electric vehicles– Energy storage– Solar PV & onshore wind

These 3 are on track toward a sustainable energy transition They are rapidly scaling up

15 TRACKED TECHNOLOGIES ARE ORANGE– Among these are several applications within the INDUSTRY SECTOR

These are not showing significant improvements On a positive note, 10 of these showed recent improvement but need more

effort to become GREEN

8 TRACKED TRCHNOLOGIES ARE RED– Among these are BUILDINGS

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© 2016- Viking Heat Engines AS

INDUSTRY

Need to reduce energy use and CO2 emissions to meet target for 2025 Encourage optimal use of by-products as a substitute for fossil fuels Invest in RD to utilize more of the renewable heat

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BUILDINGS

Global average building energy use per person need to decrease. Less than 4.5 MWh per person per year

Increase in floor area grew by 3% due to development in several countries Need more action to put forward commitments for low carbon and energy-efficient

buildings Space heating accounts for 45% of OECD building final energy use

OECD countries in particular need to shift away from historical trends and bring average energy use down

Could solid waste, sludge and other waste heat sources be utilized in another way to meet the targets for 2025?– Distributed small scale waste to energy facilities?

Related sectors are:– Lighting appliances & equipment– Building envelopes

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© 2016- Viking Heat Engines AS

Produced to lift heat > 150 °C

– Typically use coal-, gas-, oil- or electrical boilers

– Costs money and generates greenhouse gas emissions

Industrial heat pumps increase energy efficiency

– Reduce costs and emissions

– Typical payback period 1 – 3 years

HeatBooster is ready for the market

– Commercial HTHPs generally < 90 °C

– COP typ. 3 to 7

– HeatBooster uses vapor compression

Perfect for:

– Breweries

– Dairy

– Pulp & paper

– Chemical

– Etc.

HEATBOOSTER – HIGH TEMPERATURE HEAT PUMP

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© 2016- Viking Heat Engines AS

FACTS 2016

Waste input: 135 346 ton/ y 412 090 MWh

Electricity production: 75 372 MWh

Heat production: 266 691 MWh

Production boiler: 342 063 MWh

Loss in flue gas etc.: 71 012 MWh

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© 2016- Viking Heat Engines AS

Example – Production of electricity and heat

Boiler Production: 342 063 MWh

District heating: 108 410 MWh

El production: 75 372 MWh

Energy to air: 158 281 MWh

Heat production: 266 691 MWh

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© 2016- Viking Heat Engines AS

Example – Increased production of electricity using waste heat from the district heating system

Input to CE: ~60 000 MWh

Cooling to sea: ~ 56 000 MWh

Produksjon kjel: 342 063 MWhStrøm produksjon: 75 372 MWh

Spill varme: 94000 MWh

Fjernvarme: 108000 MWh

Produksjon varme: 266 691 MWh

El. Produksjon: 4000 MWh

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© 2016- Viking Heat Engines AS

Årlig el. Produskjon på 4 000 MWh, tilsvarer strømforbruket til f.eks.:

Strøm til 200 eneboliger

27 mill km med el. Bil ( 2700 biler a 10000 Km årlig)

Dette tilsvarer ca 50% av el. bilene på Agder*

1,35 mill liter i Diesel forbruk hvis samme km lengde kjøres med fossil bil

3,6 mill kg i CO2 utslipp

3700 liter pr. dag

10000 kg CO2 pr. dag

Tilsvarer 16000 biler/dag

Årlig strømproduksjon på 4000 MWh fra spillvarme

* Kilde: Motorvognregisteret Vegdirektoratet

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© 2016- Viking Heat Engines AS

HeatBooster – Økt utnyttelse av turbin, samt levere rett temperatur til forbruker = maks utnyttelse av energi produsert