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Cooling Performance Improvement of the Heat Driven Type Metal Hydride Refrigerator-Heat Transfer Enhancement Influence of Metal Hydride Sheet Loading Into a Metal Hydride Particle Bed

机译:热驱动型金属氢化物制冷性能的改善-增强金属氢化物片材装入金属氢化物颗粒床的传热效果

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摘要

In the refrigeration and air conditioning fields, the demands of energy conservation and renewable energy have been increased recently. In this study, we aim at the development of the heat driven type metal hydride (abbr., MH) that can be driven by the low temperature exhaust or solar heat under 100ᵒC. In order to use this system commercially, heat transfer enhancement of MH particle bed, activation characteric improvement and production cost reduction of MH must be achieved. In this study, we use the two heat transfer enhancement methods for improving the low effective thermal conductivity of MH particle bed. One is the MH sheet and another is the brush type carbon fiber. MH sheet is inserted into MH layer. And, by this method, we aim not only to enhance the heat transfer of MH particle bed but also to achieve the temperature uniformity of MH particle one. The cooling performance of our MH refrigeration system is estimated by measurement and calculation.
机译:在制冷和空调领域,最近对节能和可再生能源的需求增加了。在这项研究中,我们的目标是开发可被100°C以下的低温废气或太阳热驱动的热驱动型金属氢化物(缩写为MH)。为了商业上使用该系统,必须实现MH颗粒床的传热增强,MH的活化特性改善和生产成本降低。在这项研究中,我们使用两种传热增强方法来改善MH颗粒床的低有效导热率。一种是MH板,另一种是刷式碳纤维。将MH薄板插入MH层中。并且,通过这种方法,我们不仅旨在增强MH颗粒床的传热,而且还旨在实现MH颗粒床的温度均匀性。我们的MH制冷系统的制冷性能通过测量和计算来估算。

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