Engineering
Ammonia Water
100%
Numerical Study
100%
Heat Pump
100%
Environmental Impact
30%
Vapor Compression
30%
Heat Supply
30%
Supply Temperature
25%
Stage Compression
15%
Exergy Destruction
15%
Exergy Analysis
15%
Temperature Lift
10%
Larger Quantity
10%
Thermodynamic Irreversibility
10%
Mass Fraction
10%
Net Present Value
10%
Discharge Temperature
10%
Life Cycle Assessment
5%
Exergoeconomic Analysis
5%
Energy Source
5%
Primary Energy
5%
Interdependency
5%
Degree of Freedom
5%
Irreversibility
5%
Energy Engineering
5%
Temperature Range
5%
Durables
5%
Isobutane
5%
Temperature Heat
5%
Capital Investment
5%
Temperature Heat Pump
5%
Investment Cost
5%
Energy Systems
5%
Low-Temperature
5%
External Stream
5%
Extra Degree
5%
Low Temperature Waste Heat
5%
Numerical Model
5%
Fossil Fuel
5%
Future Energy
5%
Compressor Discharge
5%
Renewable Energy Source
5%
Transfer Process
5%
Keyphrases
Two-stage Compression
28%
Two-stage Compression Cycle
14%
Avoidable Costs
14%
Two-stage Cycle
14%
Avoidable Exergy Destruction
14%
Limited Demand
14%
Oil Burner
14%