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Review of low-temperature vapour power cycle engines with quasi-isothermal expansion
Opubo N. Igobo, Philip A. Davies
Mechanical, Biomedical & Design Engineering
Sustainable Environment Research Group
Research output
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Article
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peer-review
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Dive into the research topics of 'Review of low-temperature vapour power cycle engines with quasi-isothermal expansion'. Together they form a unique fingerprint.
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Mathematics
Engine
100%
Heat
75%
Review
57%
Cycle
55%
Expander
42%
Heating
27%
Heat Transfer
23%
Liquid
21%
Fluid
17%
Output
16%
Turbine
15%
Energy
15%
Combustion
13%
Expand
11%
Convert
11%
Maximise
10%
Resources
10%
Gas
10%
Standards
6%
Form
4%
Engineering & Materials Science
Vapors
70%
Engines
50%
Heat engines
44%
Temperature
31%
Rankine cycle
26%
Working fluids
23%
Thermal energy
22%
Stirling cycle
17%
Hot Temperature
16%
Heating
16%
Heat transfer
15%
Liquids
15%
Stirling engines
14%
Waste heat
12%
Cryogenics
11%
Energy resources
11%
Turbines
8%
Gases
6%
Earth & Environmental Sciences
engine
72%
heat transfer
34%
gas engine
30%
heating
28%
waste heat
25%
liquid
23%
fluid
22%
bioenergy
22%
energy resource
20%
turbine
18%
combustion
15%
energy
9%
method
8%
temperature
7%
Chemistry
Heat
58%
Heat Transfer
34%
Waste Heat
23%
Turbine
20%
Cryogenics
17%
Liquid
17%
Calorific Value
16%
Energy
14%
Surface
10%
Gas
8%