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干燥剂除湿复合空调热力学特性研究

PERFORMANCE ANALYSIS OF A HYBRID DESICCANT AIR CONDITIONING SYSTEM
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摘要 干燥剂除湿复合空调系统与传统的压缩式制冷空调相比,不仅降低了高品位能源消耗,而且可以实现温湿度单独控制,是一项非常有潜力的制冷技术。传统空调系统蒸发器同时承担显热负荷和潜热负荷,而复合空调系统的蒸发器只承担显热负荷。本文主要研究了潜热、显热分级处理对干燥剂除湿复合空调系统热力学特性的影响。 Abstract The hybrid desiccant air conditioning system, which may control temperature and humidity respectively and save high-grade electric energy, is a very potential air conditioning system. Conventional vapor compression air-conditioning system bears both sesible and latent loads. Compared to the conventional V-C system, the evaporator of the hybrid desiccant air-conditioning only bear sensible heat loads. The operating condition of evaporator after combined with solid desiccant dehumidifier was studied.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2005年第6期921-923,共3页 Journal of Engineering Thermophysics
基金 国家973项目资助(No.G2000026309)上海市科委重点基础研究项目资助(No.02DJ14044)
关键词 干燥剂 蒸发器 潜热负荷 显热负荷 Desiccant Evaporator Sensible heat load Latent heat load
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参考文献4

  • 1P L Dhar, S K Singh. Study on Desiccant Based Hybrid Air-Conditioning Systems. Applied Thermal Engineering, 2001, 21(2): 119-134.
  • 2Y J Dai, R Z Wang, J D Yu. Use of Liquid Desiccant Cooling to Improve The Performance of Vapor Compression Air Conditioning. Applied Thermal Engineering,2001, 21(12): 1185-1202.
  • 3P R Burns, J W Mitchell. Hybrid Desiccant Cooling Systems in Supermarket application. ASHRAE Transactions, 1985, 91(part 1B): 457-468.
  • 4X J Zhang, Y J Dai, R Z Wang. A Simulation Study of Heat and Mass Transfer in a Honeycombed Rotary Desiccant Dehumidifier. Applied Thermal Engineering, 2003,23(8): 989-1003.

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