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Parametric Analysis of Different Binary Mixtures in Solution Heat Exchanger of Absorption Refrigeration System

机译:吸收制冷系统溶液热交换器中不同二元混合物的参数分析

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Absorption refrigeration (ABR) systems are receiving increased attention worldwide in research ef forts aiming to enhance their performance. One major area of interest is the search for new combinations of refrigerant/ absorbent pairs, which improve the ABR thermodynamic performance compared to the widely used ammonia-water or water-LiBr. In the present paper, the heat transfer and pressure drop characteristics of three binary mixtures namely water-LJBr, water-LiI and mater-LiCl are investigated. Investigations focuses on the shell and tube type solution heat exchanger of the ABR process, where significant thermodynamic benefits can be obtained through internal heat recovery. Several operating parameters are varied over wide ranges for the three mixtures, including shell side absorbent concentration (0.45 - 0.75), shell side mass flow rate (0.5 (1.1) - 2 (4.4) kg/ s (lb/s)), hot side solution inlet temperature (373 (211.7) - 403 (2657) K (℉)) and cold side solution inlet temperature (273 (31.7) - 293 (67.7) K (℉)). The tube side absorbent concentration (0.5) and mass flow rate (0.5 (1.1) kg/s (lb/s)) are held constant during the entire analysis. It is found that the absorbent concentration in the mixture has significant impact on shell side heat transfer coefficient and pressure drop and both are decreases with increase in the absorbent concentration. The shell side heat transfer coefficient affected slightly by increasing the hot solution inlet temperature, whereas the co ld so lu t ion inlet temperature has negligible ef fect over the tested range. At the same time, pressure drop remains almost constant in cases of both, inlet temperature o f hot and cold side solution. Among the tested mixtures, water-LiI exhibits better heat transfer performance and a lower pressure drop penalty followed by water-UBr and water-LiCl.
机译:吸收制冷(ABR)系统在研究EF Forts旨在提高其性能的研究中受到高度关注。一个主要的兴趣领域是寻找制冷剂/吸收性对的新组合,其与广泛使用的氨水或水溶性相比改善了ABR热力学性能。在本文中,研究了三个二元混合物的传热和压降特性即水LJBR,水 - LII和Mater-LiCL。调查专注于ABR工艺的壳和管式溶液热交换器,可以通过内部热回收来获得显着的热力学益处。几种操作参数在三种混合物的宽范围内变化,包括壳侧吸收浓度(0.45-0.75),壳侧质量流量(0.5(1.1) - 2(4.4)kg / s(Lb / s),热侧溶液入口温度(373(211.7) - 403(2657)k(Ⅵ))和冷侧溶液入口温度(273(31.7) - 293(67.7)K(℉))。管侧吸收浓度(0.5)和质量流速(0.5(1.1)kg / s(LB / s)在整个分析期间保持恒定。发现混合物中的吸收浓度对壳侧传热系数和压降产生显着影响,并且随着吸收性浓度的增加,两者都减少。通过增加热溶液入口温度,壳侧传热系数略微影响,而CO LD所以LU T离子入口温度在测试范围内具有可忽略不计的EF。同时,在含有入口温度O F热和冷侧溶液的情况下,压降几乎保持恒定。在测试的混合物中,水 - LII表现出更好的传热性能和较低的压降损失,然后是水 - UBR和Water-LiCl。

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  • 来源
    《ASHRAE Transactions 》 |2020年第2期| 315-322| 共8页
  • 作者单位

    Mechanical Engineering Department Texas A&M University;

    Mechanical Engineering Department Texas A&M University;

    Engineering Department Texas A&M University;

    Chemical Process and Energy Resources Institute (CPERI) Centre for Research and Technology Hellas (CERTH);

    Department of Mechanical Engineering Aristotle University of Thessaloniki;

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