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Studies on a metal hydride based solar water pump

机译:基于金属氢化物的太阳能水泵的研究

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A metal hydride based solar water pump has been simulated and effects of various design and operating parameters have been studied. The study shows that if the cost of metal hydride is much higher than the collector and/or land cost, then one should use more number of thin hydride bed solar collectors for best performance. On the other hand, if the solar collector and/or land cost is much higher than hydride material cost then thick bed solar collectors arc preferred. It is possible to optimize the system performance for different discharge heads by varying the enthalpy of formation of metal hydrides, which is a unique characteristic of the hydride based solar water pump. The study shows that depending on the design and operating conditions, it is possible to pump as much as 3000 l of water in a day over a height of 15 m using 1-m~2 collector area. The maximum overall thermal efficiency of the metal hydride based solar water pump was found to be about 1.5%.
机译:模拟了基于金属氢化物的太阳能水泵,并研究了各种设计和运行参数的影响。研究表明,如果金属氢化物的成本比集热器和/或土地的成本高得多,那么为了获得最佳性能,应该使用更多数量的薄氢化物床太阳能集热器。另一方面,如果太阳能收集器和/或土地成本远高于氢化物材料成本,则优选厚床太阳能收集器。通过改变金属氢化物形成的焓,可以优化不同排放头的系统性能,这是基于氢化物的太阳能水泵的独特特性。研究表明,根据设计和运行条件,使用1-m〜2的集水区可以在15 m的高度中一天抽水3000升。发现基于金属氢化物的太阳能水泵的最大总热效率为约1.5%。

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