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PLATE HEAT EXCHANGER ADSORBER FOR A REGENERATIVE ADSORPTION HEAT PUMP

机译:用于再生吸附式热泵的板式换热器

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摘要

The state of the art in regenerative adsorption (solid-vapor) heat pumps achieved to date is a maximum Coefficient of Performance for Cooling (COP_C) of 1.1 with 70% regeneration of waste heat. A number of configurations for the heat exchanger within the adsorbent bed have been investigated, including concentric tube, shell and tube, serpentine flat pipe, spiral flat pipe, and single-pass plate type. However, to date, compact (or multiple pass plate) heat exchangers for use with adsorbent beds have not been studied. This investigation explains the challenges involved in this application, and describes the design and analysis of three configurations of a compact heat exchanger for use with solid adsorbent. The prinicipal figure of merit affecting both coefficient of performance, COP_C, and specific cooling power, SCP (W cooling per kg adsorbent), is defined as NTU divided by the ratio of non-adsorbent ("dead") to adsorbent ("live") thermal masses. The best of the three configurations consists of thin adsorbent (zeolite) tiles epoxied to the heat exchanger plates (sheets) with screen wire pin fins in the oil passages to enhance heat transfer.
机译:迄今为止,在再生吸附式(固体蒸汽)热泵中的最新技术是最大冷却性能系数(COP_C)为1.1,废热再生率为70%。已经研究了吸附床内热交换器的许多配置,包括同心管,管壳,蛇形扁平管,螺旋扁平管和单程板式。但是,迄今为止,尚未研究与吸附床一起使用的紧凑型(或多通道板)热交换器。这项研究解释了此应用程序所面临的挑战,并描述了用于固体吸附剂的紧凑型热交换器的三种配置的设计和分析。影响性能系数COP_C和比冷却功率SCP(每千克吸附剂的W冷却)的主要优点定义为NTU除以非吸附剂(“死”)与吸附剂(“活性”)的比率)热质量。三种配置中最好的一种是由吸附在热交换器板(片)上的薄吸附剂(沸石)砖组成,并在油道中设有筛网针状翅片以增强热传递。

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