423 Performance Evaluation of an Advanced Three-Bed Mass Recovery Adsorption Refrigeration Cycle(International Session)
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概要
- 論文の詳細を見る
The silica-water based adsorption refrigeration cycles are systems which can be driven by heat. One of the benefits of refrigeration cycles driven by heat is that the cycle can utilize free sources energy such as solar energy and waste heat. Thus, the systems are energy saving by cutting and utilizing primary energy as the driving source. However, the performances of adsorption cycles are low. To clarify the performance improvement of the cycles, in this paper, the adsorption cycle by employing advanced mass recovery cycle is introduced numerically. The working principle of the cycle will be introduced and compared with the single and mass recovery adsorption cycle. The cycle performance will be investigated in terms of Coefficient of Performance (COP) and Specific Cooling Power (SCP), in interval heat source temperature between 60-80 ℃. The results show that both SCP and COP value of the cycle are better than that of single stage and mass recovery cycle in the interval heat source observed.
- 社団法人日本機械学会の論文
- 2008-07-09
著者
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Uyun Aep
Graduate School Of Bio-applications And Systems Engineering Tokyo University Of Agriculture And Tech
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AKISAWA Atsushi
Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Tec
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MIYAZAKI Takahiko
Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Tec
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KASHIWAGI Takao
Integrated Research Institute, Tokyo Institute of Technology
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Kashiwagi Takao
Integrated Research Institute Tokyo Institute Of Technology
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Akisawa Atsushi
Graduate School Of Bio-applications And Systems Engineering Tokyo University Of Agri. & Tech.
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Akisawa Atsushi
Graduate School Of Bio-applications And Systems Engineering Tokyo University Of Agriculture And Tech
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Miyazaki Takahiko
Graduate School Of Bio-applications And Systems Engineering Tokyo University Of Agriculture And Tech
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AKISAWA Atsushi
Graduate School of Bio-Applications and Systems Engineering (BASE), Tokyo University of Agriculture and Technology
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