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Modeling and performance comparisons of the grading and single solar collector/ regenerator systems with heat recovery

机译:具有热量回收功能的分级和单个太阳能集热器/蓄热器系统的建模和性能比较

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摘要

A novel solar grading collector/regenerator system with heat recovery is proposed in this paper and a mathematical model of system is established. Numerical simulation shows that heat recovery does increase the performance of system reaching increments of 104% and 320% respectively for grading solar collector/regenerator with all heat recovery (Mode E) and single solar collector/regenerator with heat recovery (Mode C). There occur critical points of performances between the single and grading collector/regenerators. The regeneration efficiencies of Mode E were increased by 12.2%, 10.7% and 75% at ambient temperature of 40 degrees C, relative humidity of 90% and solar radiation intensity of 600 W/m(2) respectively compared with Mode C. The critical flow-rates of air and solution are in the ranges of 220 kg/h to 260 kg/h and 17 kg/h to 42 kg/h respectively corresponding with the plate of 1 similar to 3 m length. The regeneration efficiency of Mode E with a 3-m plate was increased by 24% compared with 1-m plate. The application scopes of environmental parameters and solution concentration are given in this paper and it is concluded that the grading regeneration is beneficial to regenerating the solution of high concentration in the conditions of low solar radiation intensity and high temperature as well as high humidity. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种新型的具有热回收功能的太阳能分级集热器系统,并建立了系统数学模型。数值模拟表明,对于具有全部热量回收的太阳能集热器/蓄能器(E模式)和具有热量回收的单个太阳能集热器/蓄能器(模式C),热量回收确实提高了系统的性能,分别达到104%和320%的增量。在单个和分级收集器/蓄热器之间会出现性能关键点。与模式C相比,模式E在40°C的环境温度,90%的相对湿度和600 W / m(2)的太阳辐射强度下的再生效率分别提高了12.2%,10.7%和75%。空气和溶液的流速分别在220 kg / h至260 kg / h和17 kg / h至42 kg / h的范围内,与1的板相似,长度为3 m。与1-m板相比,使用3-m板的模式E的再生效率提高了24%。给出了环境参数和溶液浓度的应用范围,并得出结论:分级分级再生有利于在低太阳辐射强度,高温和高湿度条件下再生高浓度溶液。 (C)2017 Elsevier Ltd.保留所有权利。

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