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Elsevier电子期刊(106)
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在“
Elsevier电子期刊
”中,
命中:
106
条,耗时:0.0879574 秒
在所有数据库中总计命中:
114
条
1.
Thermo
-
economic
evaluation of water-injected air bottoming cycles hybridization using heliostat field collector: Comparative analyses
作者:
Mohammad Saghafifar
;
Mohamed Gadalla
;
mgadalla@aus.edu
关键词:
Water injection in gas turbine
;
Humid air bottoming cycle
;
Thermo
-
economic
optimization
;
Heliostat field collector
;
Hybrid power plants
;
Heliostat field collector
optimization
刊名:Energy
出版年:2017
2.
Thermo
-
economic
analysis of recuperated Maisotsenko bottoming cycle using triplex air saturator: Comparative analyses
作者:
Mohammad Saghafifar
a
;
Amr Omar
b
;
Sepehr Erfanmoghaddam
a
;
Mohamed Gadalla
a
;
mgadalla@aus.edu
关键词:
Maisotsenko gas turbine cycle
;
Recuperated Maisotsenko bottoming cycle
;
Thermo
-
economic
optimization
;
Triplex air saturator
刊名:Applied Thermal Engineering
出版年:2017
3.
Thermo
-
economic
comparison of three configurations of combined supercritical CO
2
refrigeration and multi-effect desalination systems
作者:
Aida Farsi
a
;
S.M. Hojjat Mohammadi
a
;
smh.mohammadi@kgut.ac.ir
;
Mehran Ameri
b
关键词:
Boosted-multi-effect-desalination
;
Supercritical CO2 refrigeration
;
Thermo
-
economic
analysis
;
Optimization
;
Recovery ratio
;
Expander
刊名:Applied Thermal Engineering
出版年:2017
4.
Thermo
-
economic
analysis of combined different ORCs geothermal power plants and LNG cold energy
作者:
A.H. Mosaffa
a
;
mosaffa@azaruniv.ac.ir
;
N. Hasani Mokarram
a
;
L. Garousi Farshi
b
关键词:
Thermo
dynamic analysis
;
Economic
analysis
;
Geothermal
;
ORC
;
LNG cold energy
刊名:Geothermics
出版年:2017
5.
Optimal integration of solar energy with fossil fuel gas turbine cogeneration plants using three different CSP technologies in Saudi Arabia
作者:
Esmail M.A. Mokheimer
a
;
b
;
esmailm@kfupm.edu.sa
;
Yousef N. Dabwan
a
;
Mohamed A. Habib
a
关键词:
Gas turbine cogeneration plant
;
Integrating solar thermal technology
;
Parabolic trough collector
;
Fresnel reflector
;
Solar tower
;
Thermo
-
economic
analysis
刊名:Applied Energy
出版年:2017
6.
Multi-objective based configuration
optimization
of SOFC-GT cogeneration plant
作者:
Zahra Hajabdollahi
I201322168@hust.edu.cn
;
Pei-Fang Fu
关键词:
Cogeneration plant
;
Solid oxide fuel cell
;
Exergy efficiency
;
Total cost rate
;
Rate of exergy destruction
刊名:Applied Thermal Engineering
出版年:2017
7.
Thermo
-
economic
optimization
of heat recovery steam generator for a range of gas turbine exhaust temperatures
作者:
Mahmoud Nadir
a
;
mahmoudnadir82@hotmail.com" class="auth_mail" title="E-mail the corresponding author
;
Adel Ghenaiet
b
;
ag1964@yahoo.com" class="auth_mail" title="E-mail the corresponding author
;
Carlo Carcasci
c
;
carlo.carcasci@unifi.it" class="auth_mail" title="E-mail the corresponding author
关键词:
Combined cycle
;
HRSG
;
Exhaust gas temperature
;
Net present value
;
Thermo
-
economic
optimization
刊名:Applied Thermal Engineering
出版年:2016
8.
Thermo
-
economic
and comparative analyses of two recently proposed
optimization
approaches for circular heliostat fields: Campo radial-staggered and biomimetic spiral
作者:
Mohamed Gadalla
;
mgadalla@aus.edu" class="auth_mail" title="E-mail the corresponding author
;
Mohammad Saghafifar
关键词:
Concentrated solar power
;
Heliostat field collector
;
Thermo
-
economic
optimization
;
Campo radial-staggered layout
;
Biomimetic spiral layout
刊名:Solar Energy
出版年:2016
9.
Thermo
-
economic
analysis of conventional combined cycle hybridization: United Arab Emirates case study
作者:
Mohammad Saghafifar
;
Mohamed Gadalla
;
mgadalla@aus.edu" class="auth_mail" title="E-mail the corresponding author
关键词:
Thermo
-
economic
optimization
;
Heliostat field collector
;
Hybrid power plants
;
Heliostat field collector
optimization
;
Combined cycle configuration
刊名:Energy Conversion and Management
出版年:2016
10.
Thermo
-
economic
analysis of air bottoming cycle hybridization using heliostat field collector: A comparative analysis
作者:
Mohammad Saghafifar
;
msaghafifar@alumni.aus.edu" class="auth_mail" title="E-mail the corresponding author
;
Mohamed Gadalla
关键词:
Air bottoming cycle
;
Thermo
-
economic
optimization
;
Heliostat field collector
;
Hybrid power plants
;
Heliostat field collector
optimization
;
Concentrated solar power
;
Solar energy
刊名:Energy
出版年:2016
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