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Improving the Overall Efficiency of Radioisotope Thermoelectric Generators

机译:提高放射性同位素热电发生器的整体效率

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Radioisotope thermoelectric generators (RTG) convert the decay energy of a radioisotope (~(238)Pu) into heat then into electricity. RTGs have been used to power space exploration missions. This review paper studies several crucial features of past and present Static RTGs, for instance the advantages of Static RTGs. In addition it reviews Static RTGs limitations such as the shortage in the amount of ~(238)Pu in (U.S.A). Furthermore it compares the future Dynamic RTGs with Static RTGs. It indicates the future Dynamic RTGs, which include a thermodynamic cycle, use 2-4 times less amount of ~(238)Pu. In spite of that, their efficiency is almost 4 times greater than past and present RTGs.
机译:放射性同位素热电发生器(RTG)将放射性同位素(〜(238)Pu)的衰变能量转化为热量,然后转化为电能。 RTG已用于为太空探索任务提供动力。这篇综述文章研究了过去和现在的静态RTG的几个关键特性,例如静态RTG的优点。此外,它还审查了静态RTG的局限性,例如(U.S.A)中〜(238)Pu数量的短缺。此外,它将未来的动态RTG与静态RTG进行了比较。它表明未来的动态RTG(包括一个热力学循环)使用的〜(238)Pu量要少2-4倍。尽管如此,它们的效率几乎是过去和现在的RTG的4倍。

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