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SpringerLink电子期刊(20)
Elsevier电子期刊(106)
ACS电子期刊(1)
在“
Elsevier电子期刊
”中,
命中:
106
条,耗时:0.0210222 秒
在所有数据库中总计命中:
127
条
1.
Second law analysis of novel working fluid pairs for waste heat recovery by the
Kalina
cycle
作者:
Tim Eller
;
tim.eller@uni-bayreuth.de
;
Florian Heberle
;
Dieter Brü
;
ggemann
关键词:
Waste heat recovery
;
Second law analysis
;
Kalina
cycle
;
Efficiency increase
;
Alcohol mixtures
;
Organic Rankine
cycle
刊名:Energy
出版年:2017
2.
Thermodynamic analysis of a
Kalina
-based combined cooling and power
cycle
driven by low-grade heat source
作者:
Liyan Cao
;
Jiangfeng Wang
;
jfwang@mail.xjtu.edu.cn
;
Hongyang Wang
;
Pan Zhao
;
Yiping Dai
关键词:
Low-grade heat source
;
Kalina
cycle
;
Absorption refrigeration
cycle
;
Combined cooling and power
;
Optimization
刊名:Applied Thermal Engineering
出版年:2017
3.
Exergoeconomic evaluation and optimization of a novel combined augmented
Kalina
cycle
/gas turbine-modular helium reactor
作者:
S.M.S. Mahmoudi
;
s_mahmoudi@tabrizu.ac.ir" class="auth_mail" title="E-mail the corresponding author
;
A. Pourreza
;
A.D. Akbari
;
M. Yari
关键词:
Augmented
Kalina
cycle
;
GT-MHR
;
Combined
cycle
;
Exergoeconomic analysis
;
Optimization
刊名:Applied Thermal Engineering
出版年:2016
4.
Thermoeconomic optimization of a
Kalina
cycle
for a central receiver concentrating solar power plant
作者:
Anish Modi
;
anmod@mek.dtu.dk" class="auth_mail" title="E-mail the corresponding author
;
Martin Ryhl Kæ
;
rn
;
Jesper Graa Andreasen
;
Fredrik Haglind
关键词:
Kalina
cycle
;
Ammonia-water mixture
;
Thermoeconomic optimization
;
Concentrating solar power
;
Central receiver
刊名:Energy Conversion and Management
出版年:2016
5.
Thermodynamic analysis and optimization of a geothermal
Kalina
cycle
system using Artificial Bee Colony algorithm
作者:
Hamid Saffari
;
Sadegh Sadeghi
;
sadeghsadeghi@Mecheng.iust.ac.ir" class="auth_mail" title="E-mail the corresponding author
;
Mohsen Khoshzat
;
Pooyan Mehregan
关键词:
Geothermal
Kalina
cycle
;
Artificial Bee Colony algorithm
;
Thermodynamic optimization
;
Thermal efficiency
;
Exergy efficiency
刊名:Renewable Energy
出版年:2016
6.
Advanced exergy analysis of the
Kalina
cycle
applied for low temperature enhanced geothermal system
作者:
M. Fallah
;
S. Mohammad S. Mahmoudi
;
s_mahmoudi@tabrizu.ac.ir" class="auth_mail" title="E-mail the corresponding author
;
M. Yari
;
R. Akbarpour Ghiasi
关键词:
Geothermal system
;
Kalina
cycle
;
Ammonia&ndash
;
water mixture
;
Advanced exergy analysis
刊名:Energy Conversion and Management
出版年:2016
7.
A comparative thermodynamic investigation with environmental analysis of SOFC waste heat to power conversion employing
Kalina
and Organic Rankine
Cycle
s
作者:
E. Gholamian
a
;
V. Zare
b
;
v.zare@uut.ac.ir" class="auth_mail" title="E-mail the corresponding author
关键词:
Exergy
;
Gas re
cycle
;
Hybrid SOFC/GT
;
Kalina
cycle
;
ORC
;
SOFC
刊名:Energy Conversion and Management
出版年:2016
8.
Parameter optimization of dual-pressure vaporization
Kalina
cycle
with second evaporator parallel to economizer
作者:
Zilong Zhu
a
;
Zhi Zhang
a
;
b
;
Yaping Chen
a
;
ypgchen@sina.com" class="auth_mail" title="E-mail the corresponding author
;
Jiafeng Wu
a
关键词:
Kalina
cycle
;
Dual-pressure vaporization
;
Power recovery efficiency
;
Concentration of solution
;
Parameter optimization
刊名:Energy
出版年:2016
9.
A numerical analysis of a composition-adjustable
Kalina
cycle
power plant for power generation from low-temperature geothermal sources
作者:
Enhua Wang
;
Zhibin Yu
;
Zhibin.Yu@glasgow.ac.uk" class="auth_mail" title="E-mail the corresponding author
关键词:
Kalina
cycle
;
Dynamic power
cycle
;
Composition adjustable
;
Ammonia-water mixture
;
Air-cooled condenser
刊名:Applied Energy
出版年:2016
10.
Ammonia-water mixture property code (AWProC) development, verification and
Kalina
cycle
design for nuclear power plant
作者:
Mingjun Wang
a
;
b
;
Annalisa Manera
b
;
manera@umich.edu" class="auth_mail" title="E-mail the corresponding author
;
Suizheng Qiu
a
;
szqiu@mail.xjtu.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
G.H. Su
a
关键词:
Ammonia-water mixture
;
Property code
;
Kalina
cycle
design
;
Efficiency calculation
刊名:Progress in Nuclear Energy
出版年:2016
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