...
首页> 外文期刊>Journal of Heat Transfer >Steady-State Performance of a Small-Scale Liquid-to-Air Membrane Energy Exchanger for Different Heat and Mass Transfer Directions, and Liquid Desiccant Types and Concentrations:Experimental and Numerical Data
【24h】

Steady-State Performance of a Small-Scale Liquid-to-Air Membrane Energy Exchanger for Different Heat and Mass Transfer Directions, and Liquid Desiccant Types and Concentrations:Experimental and Numerical Data

机译:小型液-气膜换热器在不同传热和传质方向以及干燥剂类型和浓度下的稳态性能:实验和数值数据

获取原文
获取原文并翻译 | 示例
           

摘要

A liquid-to-air membrane energy exchanger (LAMEE) is an energy exchanger that allows heat and moisture transfer between air and salt solution flows through a semipermeable membrane. For the first time, a novel small-scale single-panel LAMEE test facility is used to experimentally investigate the effect of the direction of heat and mass transfers for the air and salt solution flows, and the effect of different salt solution types and concentrations on the LAMEE effectiveness. The data for steady-state effectiveness of the LAMEE are compared to the simulation results of a numerical model. Two studies are conducted; first a study based on different heat and mass transfer directions (four test cases), and second a study focused on the influence of solution types and concentration on LAMEE performance. For the first study, NTU = 3 and four different heat capacity ratios (i.e., Cr* = 1,3,5, 7) are used, with a LiCl salt solution in the exchanger. Mass and energy balances for all the test cases and the repeatability of the experimental data for the air cooling and dehumidifying test case show that the experimental data are repeatable and within an acceptable uncertainty range. The results show increasing effectiveness with increasing Cr*, and good agreement between the numerical and experimental results for both air cooling and dehumidifying and air heating and humidifying test cases. In the second study, two different salt solutions (i.e., LiCl and MgCl_2), and three different concentrations for the LiCl solution (i.e., 25%, 30%, and 35%) are selected to investigate the effect of different salt solution types and concentrations on the performance of the LAMEE. A maximum difference of 10% is obtained for the LAMEE total effectiveness data with the different salt solution types and concentrations. The results show that both the salt solution type and concentration affect the LAMEE effectiveness, and changing the concentration is one way to control the supply air outlet humidity ratio.
机译:液-空气膜换热器(LAMEE)是一种允许空气和盐溶液之间的热量和水分传递通过半透膜的换热器。首次使用新型小型单面板LAMEE测试设备来实验研究空气和盐溶液流的传热和传质方向的影响,以及不同盐溶液类型和浓度对LAMEE的有效性。将LAMEE的稳态有效性数据与数值模型的仿真结果进行比较。进行了两项研究。首先是基于不同传热和传质方向的研究(四个测试用例),其次是研究了溶液类型和浓度对LAMEE性能的影响。对于第一个研究,使用NTU = 3和四个不同的热容比(即Cr * = 1,3,5,7),并在交换器中使用LiCl盐溶液。所有测试案例的质量和能量平衡以及空气冷却和除湿测试案例的实验数据的可重复性表明,该实验数据是可重复的,并且在可接受的不确定性范围内。结果表明,随着Cr *的增加,有效性提高,并且在空气冷却和除湿以及空气加热和加湿测试用例的数值和实验结果之间具有良好的一致性。在第二项研究中,选择两种不同的盐溶液(即LiCl和MgCl_2),以及三种不同浓度的LiCl溶液(即25%,30%和35%)来研究不同盐溶液类型和盐的影响。专注于LAMEE的性能。对于不同盐溶液类型和浓度的LAMEE总有效性数据,最大差异为10%。结果表明,盐溶液的种类和浓度都会影响LAMEE的有效性,改变浓度是控制送风口湿度比的一种方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号