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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Thermodynamic and transport properties of thoria-urania fuel of Advanced Heavy Water Reactor
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Thermodynamic and transport properties of thoria-urania fuel of Advanced Heavy Water Reactor

机译:先进重水反应堆的二氧化铀-尿烷燃料的热力学和输运性质

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摘要

High temperature thermochemistry of thoria-urania fuel for Advanced Heavy Water Reactor was investigated. Oxygen potential development within the matrix and distribution behaviors of the fission products (fps) in different phases were worked out with the help of thermodynamic and transport properties of the fps as well as fission generated oxygen and the detailed balance of the elements. Some of the necessary data for different properties were generated in this laboratory while others were taken from literatures. Noting the behavior of poor transports of gases and volatile species in the thoria rich fuel (thoria-3 mol% urania), the evaluation shows that the fuel will generally bear higher oxygen potential right from early stage of burnup, and Mo will play vital role to buffer the potential through the formation of its oxygen rich chemical states. The problems related to the poor transport and larger retention of fission gases (Xe) and volatiles (I, Te, Cs) are discussed.
机译:研究了先进重水反应堆中二氧化硫-尿烷燃料的高温热化学性质。借助fps的热力学和输运特性以及裂变产生的氧气和元素的详细平衡,确定了基质内氧势的发展以及裂变产物(fps)在不同相中的分布行为。一些不同性质的必要数据是在此实验室中生成的,而其他一些则是从文献中获得的。评价指出富含氧化rich的燃料(thoria-3 mol%urania)中气体和挥发性物质的运输不畅的行为,评估表明,从燃尽早期开始,燃料通常会具有较高的氧势,Mo将起重要作用通过形成富氧的化学态来缓冲电位。讨论了与裂变气体(Xe)和挥发物(I,Te,Cs)的传输不良和较大保留有关的问题。

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