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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Air-conditioning system for vehicles with on-board hydrogen
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Air-conditioning system for vehicles with on-board hydrogen

机译:用于车载氢的车辆空调系统

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Highlights?Proof of concept for open metal hydride cooling system.?System suitable to support air-conditioning of H2driven vehicles.?Experimental thermal cooling power densities of 1.59?kW/kgMeH?1.AbstractElectric vehicles with on-board hydrogen store not only the corresponding chemical energy of the H2, but also a significant amount of potential energy in the pressurized gas. This energy is provided by a compressor at the fueling station and so far, it is wasted by throttling the H2to the fuel cell supply pressure. An “open” metal hydride cooling system can convert part of this potential energy into cooling power. In this publication, results for an experimental lab-scale setup of such a cooling system are presented and discussed in the vehicle context. The lab-scale system consists of two plate heat exchanger based reactors filled with 335?g and 353?g of Hydralloy? C5 hydride material. At 10?°C an average cooling power of ?532?W or ?586?W could be determined for cycling times of 100?s or 75?s, respectively. Due to the small lab-scale reactors used in this study, this value is reduced to ?76?W, when the efficient cooling power between 30?°C and 10?°C is determined. To conclude the results, scale-up effects and the relation of hydrogen flow and cooling power are discussed as well as a possible integration into a vehicle.]]>
机译:<![cdata [ 亮点 开放式金属氢化物冷却系统的概念证明。 系统适用于支持H的空调空调 2 驱动车辆。 实验热冷却功率密度为1.59?kw / kg meh ?1 抽象 电动车辆带载储氢,不仅是H 2 的相应化学能,而且大量加压气体中的潜在能量。这种能量由加油站的压缩机提供,到目前为止,通过将H节流H 2 对燃料电池供应压力来浪费。 “打开”金属氢化物冷却系统可以将部分这种潜在的能量转化为冷却功率。在该出版物中,在车辆环境中呈现并讨论了这种冷却系统的实验实验室规模设置的结果。实验室级系统由两个板式热交换器组成的基于反应器,填充335Ω·G和353?G的Hydlaryoy? C5氢化物材料。在10?℃下,可以确定为100?S或75Ω的循环时间的平均冷却功率。由于本研究中使用的小实验室级反应器,当确定了30°C和10Ω°C之间的有效冷却功率时,该值减小到Δ76≤W。为了得出结论结果,讨论了缩放效应和氢气流量和冷却功率的关系以及将可能的集成到车辆中。 ]]>

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