Conceptualization and analysis of a novel combined sorption and phase-change material thermal storage system
被引:4
作者:
Garimella, Srinivas
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机构:
Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USAGeorgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USA
Garimella, Srinivas
[1
]
Keniar, Khoudor
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h-index: 0
机构:
Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USAGeorgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USA
Keniar, Khoudor
[1
]
Rattner, Alexander S.
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机构:
Penn State Univ, Dept Mech & Nucl Engn, University Pk, PA 16802 USAGeorgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USA
Rattner, Alexander S.
[2
]
Kini, Girish
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机构:
Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USAGeorgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USA
Kini, Girish
[1
]
机构:
[1] Georgia Inst Technol, George W Woodruff Sch Mech Engn, Atlanta, GA 30318 USA
[2] Penn State Univ, Dept Mech & Nucl Engn, University Pk, PA 16802 USA
Thermal storage;
Absorption;
Waste heat recovery;
Working pair;
Heat of mixing;
LATENT-HEAT STORAGE;
ENERGY-STORAGE;
SEASONAL STORAGE;
TECHNOLOGIES;
PERFORMANCE;
SIMULATION;
PARAFFIN;
D O I:
10.1016/j.est.2020.101745
中图分类号:
TE [石油、天然气工业];
TK [能源与动力工程];
学科分类号:
0807 ;
0820 ;
摘要:
A new sorption-based thermal storage cycle is proposed. Energy is stored chemically by separating the constituents of highly non-ideal solutions, yielding much lower stand-by losses than in conventional approaches. The cycle avoids limitations of previously proposed sorption-based storage cycles by using a liquid-liquid mixer, and does not require a thermal source during discharge. A criterion based on a second law analysis is developed to evaluate potential working fluids for the cycle. Different cycle configurations are analyzed. An enhanced combined sorption and phase-change material (PCM) cycle is also investigated and compared with conventional thermal storage systems. For delivering 100 GJ of energy after 8 months, the combined cycle has an efficiency of 11% and lower storage volumes (down to 0.1 x) than conventional thermal storage technologies. The energy density of the combined sorption-PCM system is 30 kWh m (- 3).