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Investigation of methods to improve heat pump performance and reliability in a northern climate. Final report. Volume III. Appendices B, C, D. [TRNSYS, GOPUMP, and EPRIPH computer codes]
Mapping Intimacies
◽
10.2172/7108122
◽
1977
◽
Author(s):
H. Kirschbaum
◽
S. Veyo
Keyword(s):
Heat Pump
◽
Final Report
◽
Pump Performance
◽
Computer Codes
◽
Northern Climate
Get full-text (via PubEx)
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Investigation of methods to improve heat pump performance and reliability in a northern climate. Final report. Volume II. Appendix A. [EPRIX-MAIN and REL-PUMP computer codes]
10.2172/7257238
◽
1977
◽
Author(s):
H. Kirschbaum
◽
S. Veyo
Keyword(s):
Heat Pump
◽
Final Report
◽
Pump Performance
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Computer Codes
◽
Northern Climate
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Investigation of methods to improve heat pump performance and reliability in a northern climate. Final report. Volume I
10.2172/7108123
◽
1977
◽
Author(s):
H. Kirschbaum
◽
S. Veyo
Keyword(s):
Heat Pump
◽
Final Report
◽
Pump Performance
◽
Northern Climate
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Solar energy and the heat pump in a northern climate. Final report
10.2172/5177861
◽
1977
◽
Author(s):
R. Stewart
◽
J. Healey
◽
B. Murphy
◽
J. Scott
Keyword(s):
Solar Energy
◽
Heat Pump
◽
Final Report
◽
Northern Climate
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Research and development of an air-cycle heat-pump water heater. Final report
10.2172/5749191
◽
1979
◽
Cited By ~ 7
Author(s):
J.T. Dieckmann
◽
A.J. Erickson
◽
A.C. Harvey
◽
W.M. Toscano
Keyword(s):
Research And Development
◽
Heat Pump
◽
Final Report
◽
Water Heater
◽
Heat Pump Water Heater
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Advanced heat pump for the recovery of volatile organic compounds: Phase 3 -- Testing, data reporting and operational evaluation of the Brayton cycle heat pump for solvent recovery at the 3M Manufacturing Facility at Greenville, SC. Final report
10.2172/638191
◽
1995
◽
Author(s):
Keyword(s):
Volatile Organic Compounds
◽
Organic Compounds
◽
Heat Pump
◽
Final Report
◽
Solvent Recovery
◽
Brayton Cycle
◽
Phase 3
◽
Manufacturing Facility
◽
Volatile Organic
◽
Testing Data
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Multiobjective optimisation of absorption heat pump performance with double internal irreversibility based algorithm NSGAII: case of three-heat-source model
International Journal of Ambient Energy
◽
10.1080/01430750.2019.1670257
◽
2019
◽
pp. 1-11
Author(s):
Paiguy Armand Ngouateu Wouagfack
◽
Germaine Mabou Ninkam
◽
Réné Tchinda
Keyword(s):
Heat Source
◽
Heat Pump
◽
Source Model
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Multiobjective Optimisation
◽
Heat Source Model
◽
Absorption Heat Pump
◽
Pump Performance
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Internal Irreversibility
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Experimental evaluation of heat pump performance in connection with metal hydride properties
Journal of the Less Common Metals
◽
10.1016/0022-5088(84)90406-5
◽
1984
◽
Vol 104
(2)
◽
pp. 211-222
◽
Cited By ~ 23
Author(s):
S. Suda
Keyword(s):
Heat Pump
◽
Metal Hydride
◽
Experimental Evaluation
◽
Pump Performance
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Air Source Heat Pump Performance in Open, Semi-closed, and Closed Greenhouse Systems in Quebec and Labrador
Progress in Clean Energy, Volume 1
◽
10.1007/978-3-319-16709-1_15
◽
2015
◽
pp. 213-223
Author(s):
İlhami Yıldız
◽
Jin Yue
◽
Asena Cansu Yıldız
Keyword(s):
Heat Pump
◽
Pump Performance
◽
Air Source Heat Pump
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Solar-assisted heat pump field performance evaluation. Final report
10.2172/6427681
◽
1980
◽
Author(s):
Not Given Author
Keyword(s):
Performance Evaluation
◽
Heat Pump
◽
Field Performance
◽
Final Report
◽
Pump Field
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Variable speed drive heat pump performance
Energy
◽
10.1016/0360-5442(87)90037-5
◽
1987
◽
Vol 12
(12)
◽
pp. 1289-1298
◽
Cited By ~ 8
Author(s):
S.M. Jeter
◽
W.J. Wepfer
◽
G.M. Fadel
◽
N.E. Cowden
◽
A.A. Dymek
Keyword(s):
Heat Pump
◽
Variable Speed
◽
Variable Speed Drive
◽
Pump Performance
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