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[1] Zhang Haiqiang, Liu Xiaohua, Jiang Yi,. Performance analysis of three-stage liquid desiccantdeep dehumidification processor driven by heat pump [J]. Journal of Southeast University (English Edition), 2010, 26 (2): 217-221. [doi:10.3969/j.issn.1003-7985.2010.02.016]
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Performance analysis of three-stage liquid desiccantdeep dehumidification processor driven by heat pump()
热泵驱动的三级溶液深度除湿机组的性能分析
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Journal of Southeast University (English Edition)[ISSN:1003-7985/CN:32-1325/N]

Volumn:
26
Issue:
2010 2
Page:
217-221
Research Field:
Energy and Power Engineering
Publishing date:
2010-06-30

Info

Title:
Performance analysis of three-stage liquid desiccantdeep dehumidification processor driven by heat pump
热泵驱动的三级溶液深度除湿机组的性能分析
Author(s):
Zhang Haiqiang Liu Xiaohua Jiang Yi
School of Architecture, Tsinghua University, Beijing 100084, China
张海强 刘晓华 江亿
清华大学建筑学院, 北京 100084
Keywords:
deep dehumidification liquid desiccant performance test air-conditioning
深度除湿 溶液除湿剂 性能测试 空调
PACS:
TU831
DOI:
10.3969/j.issn.1003-7985.2010.02.016
Abstract:
A new type of a heat pump driven three-stage lithium bromide liquid desiccant deep dehumidification processor is presented, which can dehumidify the outdoor humid air to a rather dry state, even when there is no available indoor exhaust air.The test results show that with an outdoor air temperature of 28 to 31 ℃ and an outdoor air humidity ratio of 11 to 14 g/kg, the supply air temperature and the supply air humidity ratio are 1.6 to 2.6 ℃ and 2.6 to 3.0 g/kg, respectively, and the coefficient of performance(COP)of the processor is 1.8.During the test, a liquid pipeline link problem leading to mixture losses of hot and cold liquid desiccants is found.These pipelines are modified.Then, the performance of the modified processor is investigated.And the experimental results show that with an outdoor air temperature of 25 to 32 ℃ and an outdoor air humidity ratio of 18 to 21 g/kg, the supply air temperature and the supply air humidity ratio are 3.2 to 4.0 ℃ and 3.4 to 3.6 g/kg, respectively, and the COP is 2.8.Finally, a mathematical model of the processor is established.The comparison of the simulation results and the test results of the processor exhibits that the pipeline modification improves the performance by about 20%.
设计了一种热泵驱动的溴化锂溶液深度除湿机组, 该机组适用于无回风可利用、低湿度需求的场合.机组的性能测试结果显示, 当室外温度为28~31 ℃, 含湿量为11~14 g/kg时, 机组的送风温度为1.6~2.6 ℃, 含湿量为2.6~3.0 g/kg, 系统COP为1.8.测试时发现了一个造成冷热溶液混合损失的管路链接问题, 并对其进行修改.然后, 对修改后的新机组进行了性能测试, 结果显示, 在室外温度为25~32℃, 含湿量为18~21 g/kg时, 机组的送风温度为3.2~4.0 ℃, 含湿量为3.4~3.6 g/kg, 系统COP为2.8.最后, 对机组建立数学模型, 并将模拟结果与实测数据进行比较, 结果表明管路改动使机组性能提升约20%.

References:

[1] Jiang Y, Li Z, Chen X Y, et al.Liquid desiccant air-conditioning system and its applications[J].Heating Ventilation & Air Conditioning, 2004, 34(11):88-97.(in Chinese)
[2] Zhang X S, Yin Y G, Cao Y R.Experimental study on the performance of liquid desiccant cooling air conditioning with energy storage[J].Journal of Engineering Thermophysics, 2004, 25(4):546-549.(in Chinese)
[3] Lazzarin R M, Castellotti F.A new heat pump desiccant dehumidifier for supermarket application[J].Energy and Buildings, 2007, 39(1):59-65.
[4] Liu X H, Li Z, Jiang Y.Liquid desiccant total heat exchanger and heat pump combined fresh air handling units[J].Heating Ventilation & Air Conditioning, 2004, 34(11):98-102.(in Chinese)
[5] Liu S Q, Liu X H, Jiang Y.System principle and performance tests of heat pump two-stage liquid desiccant outdoor air handler[J].Heating Ventilation & Air Conditioning, 2008, 38(1):54-63.(in Chinese)
[6] Beijing Sinorefine Ltd.Handbook of heat pump driven liquid desiccant deep dehumidification processor[EB/OL].[2009-04-15].http://www.sinorefine.com.cn.
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Memo

Memo:
Biographies: Zhang Haiqiang(1987—), male, graduate;Liu Xiaohua(corresponding author), female, doctor, associate professor, lxh@mail.tsinghua.edu.cn
Foundation item: The National Natural Science Foundation of China(No.50778094).
Citation: Zhang Haiqiang, Liu Xiaohua, Jiang Yi.Performance analysis of three-stage liquid desiccant deep dehumidification processor driven by heat pump[J].Journal of Southeast University(English Edition), 2010, 26(2):217-221.
Last Update: 2010-06-20