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敞开式太阳能集热/再生器的理论模型及性能分析 被引量:1

Modeling and Performance Analysis of Unglazed Solar Collector/Regenerator
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摘要 对敞开式太阳能集热再生器建立理论解析模型,理论求解发现溶液在常温下再生时存在一个最佳单位面积流量使单位面积蒸发率最大。溶液入口温度和室外风速是决定最佳流量值的2个最重要参数,溶液浓度和太阳辐射强度对最大蒸发率影响最明显。当溶液出口温度低于入口温度时,最佳流量不存在,溶液流量越大再生效果越好。当室外风速为2m/s时,溶液再生蒸发率最大。文章全面揭示了影响敞开式集热/再生器性能的各项因素。 An analytical model of the unglazed solar collector/regenerator (C/R) was presented. There was an optimum flow rate per unit collector area at normal temperature which led to the maximum evaporation rate. The inlet temperature of absorbent solution and the wind velocity are key parameters to determine the optimum flow rate, in addition, the concentration of solution and solar radiation intensity have obvious effects on the maximum evaporation rate. When the outlet temperature of solution is higher than the inlet temperature, there is not an optimum flow rate, which reflects that the more the flow rate of solution is, the better regeneration efficiency is. With the 2m/s of wind speed, the evaporation rate reaches the peak. In this paper, kinds of factors influencing the performance of solar C/R were evaluated as well.
出处 《土木建筑与环境工程》 CSCD 北大核心 2014年第2期68-74,共7页 Journal of Civil,Architectural & Environment Engineering
基金 国家自然科学基金项目(51266010) 江西省科技支撑计划(20123BBG70195)
关键词 集热 再生 最佳单位面积流量 再生蒸发率 collector/regenerator optimum flow rate per unit collector area evaporation rate
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  • 1Lychnos G, Davies P A. Modelling and experimental verification of a solar-powered liquid desiccant cooling system for greenhouse food production in hot climates[J].Energy, 2012, 40(1): 116-130. 被引量:1
  • 2Audah N, Ghaddar N, Ghali K. Optimized sola: powered liquid desiccant system to supply building fresh water and cooling needs [J]. Applied Energy, 2011, 88 (11) : 3726-3736. 被引量:1
  • 3Zeidan E B, Aly A A, Hamed A M. Modeling and simulation of solar-powered liquid desiccant regenerator for open absorption cooling cycle [J]. Solar Energy, 2011, 85(11): 2977-2986. 被引量:1
  • 4Qi R H, Lu L, Yang H X. Investigation on air- conditioning load profile and energy consumption of desiccant cooling system for commercial buildings in Hong Kong [J]. Energy and Buildings, 2012, 49:509 -518. 被引量:1
  • 5Peng D G, Zhang X S. Modeling and simulation of solar collector/regenerator for liquid desiccant cooling systems [J]. Energy, 2011, 36(5): 2543-2550. 被引量:1
  • 6Sultan G I, Hamed A M, Sultan A A. The effect of inlet parameters on the performance of packed tower- regenerator [J]. Renewable Energy, 2002, 26 (2): 271-283. 被引量:1
  • 7Kabeel A E. Augmentation of the performance of solar regenerator of open absorption cooling system [J].Renewable Energy, 2005, 30(3): 327-338. 被引量:1
  • 8Kakabaev A, Khandurdyev A, Klyshchaeva O, et al. A large scale solar air conditioning pilot plant and its test results [J]. International Chemical Engineering, 1976, 16: 60-64. 被引量:1
  • 9Collier R K. The analysis and simulation of an open cycle absorption refrigeration system [J].Solar Energy, 1979, 23:357 -366. 被引量:1
  • 10Nelson D J, Wood B D. Evaporation rate model for a natural convection glazed collector:regenerator [J]. Journal of Solar Energy Engineering, 1990, 112(1): 51-57. 被引量:1

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