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内部出版物
SpringerLink电子期刊(24)
Elsevier电子期刊(213)
ACS电子期刊(9)
在“
Elsevier电子期刊
”中,
命中:
213
条,耗时:0.0529364 秒
在所有数据库中总计命中:
246
条
1.
Insights from modeling dynamics of water sorption in spherical particles for
adsorption
heat
pump
s
作者:
A.I. Radu
a
;
b
;
T. Defraeye
a
;
b
;
P. Ruch
c
;
J. Carmeliet
a
;
b
;
D. Derome
b
;
dominique.derome@empa.ch" class="auth_mail" title="E-mail the corresponding author
关键词:
Sorption
;
Heat
and mass transport finite-element modeling
;
Silica gel
;
Heat
pump
;
Spherical particle
;
Temperature swing
刊名:International Journal of
Heat
and Mass Transfer
出版年:2017
2.
Alumina-coated ordered mesoporous silica as an efficient and stable water adsorbent for
adsorption
heat
pump
作者:
Chaehoon Kim
a
;
Kanghee Cho
b
;
Sang Kyum Kim
b
;
c
;
Eun Kyung Lee
b
;
d
;
Jong-Nam Kim
b
;
Minkee Choi
a
;
mkchoi@kaist.ac.kr
关键词:
Mesoporous silica
;
Alumina
;
Hydrothermal stability
;
Water
adsorption
;
Adsorption
heat
pump
刊名:Microporous and Mesoporous Materials
出版年:2017
3.
Influence of new adsorbents with isotherm Type V on performance of an
adsorption
heat
pump
作者:
Gamze Gediz Ilis
gamze.gediz@okan.edu.tr
关键词:
Adsorption
;
Rectangular
;
Silica gel
;
Metal organic framework
;
FAM
刊名:Energy
出版年:2017
4.
Performance of a finned activated carbon cloth-ethanol
adsorption
chiller
作者:
M. Tierney
;
mike.tierney@bristol.ac.uk" class="auth_mail" title="E-mail the corresponding author
;
L. Ketteringham
;
M. Azri Mohd Nor
关键词:
Adsorption
heat
pump
;
Activated carbon cloth
;
Finned-adsorbent
;
Scale-up
;
LTJ
刊名:Applied Thermal Engineering
出版年:2017
5.
Silane functionalized open-celled ceramic foams as support structure in metal organic framework composite materials
作者:
Ulf Betke
a
;
Steven Proemmel
a
;
Stefan Rannabauer
b
;
Alexandra Lieb
a
;
alexandra.lieb@ovgu.de
;
Michael Scheffler
b
;
Franziska Scheffler
a
关键词:
Metal organic framework
;
Ceramic foam
;
Composite material
;
Adsorption
driven
heat
pump
;
Silanization
刊名:Microporous and Mesoporous Materials
出版年:2017
6.
Review article: Numerical simulation of
adsorption
heat
pump
s
作者:
Alireza Pesaran
a
;
Hoseong Lee
a
;
Yunho Hwang
a
;
yhhwang@umd.edu" class="auth_mail" title="E-mail the corresponding author
;
Reinhard Radermacher
a
;
Ho-Hwan Chun
b
关键词:
Numerical simulation
;
Adsorption
heat
pump
;
Distributed-parameter models
;
Coupled
heat
and mass transfer
刊名:Energy
出版年:2016
7.
A novel solar-assisted
heat
pump
driven by photovoltaic/thermal collectors: Dynamic simulation and thermoeconomic optimization
作者:
Francesco Calise
a
;
Massimo Dentice d'Accadia
a
;
Rafal Damian Figaj
b
;
rafal.figaj@uniparthenope.it" class="auth_mail" title="E-mail the corresponding author
;
Laura Vanoli
b
关键词:
Solar energy
;
Solar cooling
;
Heat
pump
;
Adsorption
chiller
;
Heat
ing and cooling system
;
PVT (photovoltaic/thermal)
刊名:Energy
出版年:2016
8.
Aluminium fumarate and CPO-27(Ni) MOFs: Characterization and thermodynamic analysis for
adsorption
heat
pump
applications
作者:
Eman Elsayed
a
;
c
;
EXH496@student.bham.ac.uk" class="auth_mail" title="E-mail the corresponding author
;
Raya AL-Dadah
a
;
Saad Mahmoud
a
;
Ahmed Elsayed
b
;
Paul A. Anderson
c
关键词:
Metal-organic framework
;
Characterization
;
Adsorption
;
Heat
pump
;
Refrigeration
;
Desalination
刊名:Applied Thermal Engineering
出版年:2016
9.
The impact of filling level resolved: Capillary-assisted evaporation of water for
adsorption
heat
pump
s
作者:
Franz Lanzerath
;
Jan Seiler
;
Meltem Erdogan
;
Heike Schreiber
;
Matthias Steinhilber
;
André
;
Bardow
;
andre.bardow@ltt.rwth-aachen.de" class="auth_mail" title="E-mail the corresponding author
关键词:
Film evaporation
;
Filling level
;
Capillary action
;
Water
;
Adsorption
chiller
;
Adsorption
heat
pump
刊名:Applied Thermal Engineering
出版年:2016
10.
Silica gel/polymer composite desiccant wheel combined with
heat
pump
for air-conditioning systems
作者:
Chih-Hao Chen
a
;
Chien-Yeh Hsu
a
;
Chih-Chieh Chen
c
;
Yuan-Ching Chiang
b
;
Sih-Li Chen
a
;
slchen01@ntu.edu.tw" class="auth_mail" title="E-mail the corresponding author
关键词:
Low pressure drop
;
Polymer composite desiccant
;
Dehumidification
;
Heat
pump
刊名:Energy
出版年:2016
1
2
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7
8
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