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Performance of a liquid desiccant air-conditioner driven by evacuated-tube, flat-plate, or hybrid solar thermal arrays

机译:真空管,平板或混合太阳能热阵列驱动的液体干燥空调的性能

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Study was undertaken to determine the effects of location and solar thermal collector design on the performance of a liquid desiccant air conditioner (LDAC). A 95 m(2) evacuated-tube collector (ETC) solar thermal array, coupled to a LDAC located in Kingston, Canada, was monitored to obtain data to verify a simulation of the system. A TRNSYS model was modified to account for variations in LDAC effectiveness with different conditions. The model was used to investigate options for the collector array design including the use of flat-plate collectors (FPC), ETCs and hybrid arrays consisting of both FPC and ETCs. Simulations were conducted for three cities including: Toronto, Canada; Tunis, Tunisia; and Calcutta, India. To achieve comparable solar fractions to ETC arrays it was found that FPC arrays required approximately 15 m2 more area than the ETC arrays in Toronto and Tunis, and 30 m2 more in Calcutta. Tunis showed the best results for a hybrid system. A ratio of 30% FPCs and 70% ETCs achieved the same solar fraction (i.e., 0.56) as the array consisting of only ETCs. The reduction in the use of ETCs could lead to significant cost savings and flexibility in the design of LDAC systems. (C) 2016 Elsevier B.V. All rights reserved.
机译:进行了研究以确定位置和太阳能集热器设计对液体干燥空调(LDAC)性能的影响。监视了一个95 m(2)真空管收集器(ETC)太阳能热阵列,该阵列与位于加拿大金斯敦的LDAC耦合,以获得数据来验证系统的仿真。修改了TRNSYS模型,以解决不同条件下LDAC有效性的变化。该模型用于调查收集器阵列设计的选项,包括使用平板收集器(FPC),ETC以及由FPC和ETC组成的混合阵列。在三个城市进行了仿真,包括:加拿大多伦多;突尼斯突尼斯;和印度加尔各答。为了获得与ETC阵列相当的太阳能比例,发现FPC阵列所需面积比多伦多和突尼斯的ETC阵列多15平方米,而在加尔各答则需要30平方米。突尼斯显示了混合动力系统的最佳结果。 30%FPC和70%ETC的比例与仅由ETC组成的阵列的太阳能分数相同(即0.56)。减少使用ETC可以节省大量成本,并在LDAC系统的设计中具有灵活性。 (C)2016 Elsevier B.V.保留所有权利。

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