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首页> 外文期刊>Cryogenics >Application of matrix heat exchangers to thermomechanical exergy recovery from liquid hydrogen
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Application of matrix heat exchangers to thermomechanical exergy recovery from liquid hydrogen

机译:矩阵换热器在液态氢热机械能值回收中的应用

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This paper reports the outcome of a project aimed at exploring thermomechanical exergy recovery from liquid hydrogen. The basis of this project was the conceptual design, development and testing of a new process for CO2 removal from air for use in alkaline fuel cells operating with hydrogen stored as a liquid, addressing simultaneously: thermomechanical exergy recovery from liquid hydrogen, and its application to CO2 removal from atmospheric air. This project was an attempt to address these issues by using the cooling available from the vaporisation of liquid hydrogen and/or boil-off vapour, to remove CO2 from the alkaline fuel cell feed air by refrigeration purification, ie. by freezing the CO2 out of the air. A schematic description of the process and an energy balance for refrigeration purification for the CO2 removal are presented, showing that the process relies on high effectiveness heat exchangers and water re-vaporisation. The high effectiveness heat transfer is achieved using perforated plate matrix heat exchangers. Implicit in this work were: The development of a new sizing procedure for matrix heat exchangers based on an approximate analytical solution for their performance, published recently in this journal. The development of a new method for construction of perforated plate matrix heat exchangers. Experimental testing of matrix heat exchanger performance. The application of matrix heat exchangers to mass transfer, and their use as reversing heat exchangers. Certain questions relating to the recent analysis published in this journal are raised and modifications suggested. Experimental results of heat exchanger effectiveness tests and CO2 removal tests showed that heat exchangers of the requisite effectiveness were designed and manufactured, and that the proposed process was successful in exergy recovery and CO2 removal. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 32]
机译:本文报告了旨在探索从液态氢中回收热机械能值的项目的成果。该项目的基础是概念设计,开发和测试从空气中去除CO2的新工艺的过程,该工艺用于以氢作为液体存储的碱性燃料电池,同时解决:从液态氢中回收热机械能值,并将其应用于从大气中去除二氧化碳。该项目试图通过利用液态氢和/或蒸发蒸气的汽化提供的冷却来解决这些问题,以通过制冷净化即碱性燃料电池进料空气去除CO2。将空气中的二氧化碳冻结。给出了该过程的示意图以及用于除去CO2的制冷净化的能量平衡,表明该过程依赖于高效的热交换器和水的再蒸发。使用多孔板状热交换器可实现高效的热传递。在这项工作中隐含的是:基于矩阵式热交换器性能的近似分析解决方案,开发了一种新的尺寸确定程序,该方法最近在该期刊上发表。开发一种多孔板式热交换器的新方法。矩阵换热器性能的实验测试。矩阵换热器在传质中的应用及其作为可逆换热器的用途。提出了与该杂志最近发表的分析有关的某些问题,并提出了修改建议。换热器有效性测试和CO2去除测试的实验结果表明,已设计和制造了具有必要有效性的换热器,并且所提出的过程在火用能量回收和CO2去除方面取得了成功。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:32]

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