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Micro-CHP technologies for distributed generation
Krzysztof Klobut,
Jussi Ikäheimo
,
Jari Ihonen
Research output
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Book/Report
›
Report
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Dive into the research topics of 'Micro-CHP technologies for distributed generation'. Together they form a unique fingerprint.
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Keyphrases
Internal Combustion Engine
100%
Distributed Generation
100%
CHP Technologies
100%
Micro-CHP
100%
Low Emission
66%
Microturbine
66%
Stirling Engine
66%
Part Load
66%
Low Noise
66%
Quality Requirements
33%
Power Plant
33%
Natural Gas
33%
Fuel Cell
33%
Energy Sources
33%
Investment Cost
33%
Wood chips
33%
High Cost
33%
CHP Unit
33%
Electrical Efficiency
33%
Fuel Quality
33%
Gasification
33%
Renewability
33%
Gas Turbine
33%
Maintenance Cost
33%
Solar Radiation
33%
Engine Power
33%
Maintenance Interval
33%
Stable Combustion
33%
Heating Oil
33%
Gas Purification
33%
Wide Power Range
33%
Unit-based
33%
Standardized Unit
33%
Power Ability
33%
Gas Oil
33%
High Efficiency
33%
High Emission
33%
Typical Features
33%
INIS
cost
100%
efficiency
60%
emission
60%
noise
60%
internal combustion engines
60%
ice
40%
biomass
40%
fuels
40%
units
40%
maintenance
40%
stirling engines
40%
wood
20%
output
20%
comparative evaluations
20%
size
20%
investment
20%
purification
20%
combustion
20%
power plants
20%
gases
20%
availability
20%
natural gas
20%
fuel cells
20%
gasification
20%
energy sources
20%
solar radiation
20%
gas turbines
20%
heating oils
20%
power range
20%
gas oils
20%
Engineering
Cogeneration Combined Cooling Heating Power
100%
Distributed Power Generation
100%
Internal Combustion Engine
75%
Microturbines
50%
Part Load
50%
Stirling Engine
50%
Natural Gas
25%
Investment Cost
25%
Electrical Efficiency
25%
Gas Turbine
25%
Gasification
25%
Engine Power
25%
Gas Fuel Purification
25%
Solar Radiation
25%
Energy Source
25%
Electric Power Plant
25%
Fuel Cell
25%