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首页> 外文期刊>Journal of nuclear science and technology >A Thermoelectric-Conversion Power Supply System Using a Strontium Heat Source of High-Level Radioactive Nuclear Waste
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A Thermoelectric-Conversion Power Supply System Using a Strontium Heat Source of High-Level Radioactive Nuclear Waste

机译:利用高放射性核废料锶热源的热电转换电源系统

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摘要

A thermoelectric-conversion power supply system with radioactive strontium in high-level radioactive waste has been proposed. A combination of Alkali Metal Thermo-Electric Conversion (AMTEC) and a strontium fluoride heat source can provide a compact and long-lived power supply system. A heat source design with strontium fluoride pin bundles with Hastelloy cladding and intermediate copper has been proposed. This design has taken heat transportation into consideration, and, in this regard, the feasibility has been confirmed by a three-dimensional thermal analysis using Star-CD code. This power supply system with an electric output of 1MW can be arranged in a space of 50 m2 and approximately 1.1m height and can be operated for 15 years without refueling. This compact and long-lived power supply is suitable for powering sources for remote places and middle-sized ships. From the viewpoint of geological disposal of high-level waste, the proposed power supply system provides a financial base for strontium-cesium partitioning. That is, a combination of minor-actinide recycling and strontium-cesium partitioning can eliminate a large part of decay heat in high-level waste and thus can save much space for geological disposal.
机译:提出了一种在高放废物中具有放射性锶的热电转换电源系统。碱金属热电转换(AMTEC)和氟化锶热源的组合可以提供紧凑且寿命长的电源系统。已经提出了一种热源设计,该热源设计采用带有哈氏合金包层和中间铜的氟化锶针束。该设计考虑了热传输,并且在这方面,可行性已通过使用Star-CD代码进行三维热分析得到了证实。这种功率输出为1MW的电源系统可以布置在50 m2的空间中,高度约为1.1m,并且可以在不加油的情况下运行15年。这种紧凑且寿命长的电源适合为偏远地区和中型船舶的电源供电。从高放废物的地质处置角度来看,拟议的供电系统为锶-铯分配提供了资金基础。也就是说,次-系元素再循环和锶-铯分配的结合可以消除高放废物中的大部分衰变热,从而可以节省大量地质处置空间。

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