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FAST REACTOR PHYSICS AND COMPUTATIONAL METHODS

机译:快速反应器物理和计算方法

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This paper reviews the fast reactor physics and computational methods. The basic reactor physics specific to fast spectrum reactors are briefly reviewed, focused on fissile material breeding and actinide burning. Design implications and reactivity feedback characteristics are compared between breeder and burner reactors. Some discussions are given to the distinct nuclear characteristics of fast reactors that make the assumptions employed in traditional LWR analysis methods not applicable. Reactor physics analysis codes used for the modeling of fast reactor designs in the U.S. are reviewed. This review covers cross-section generation capabilities, whole-core deterministic (diffusion and transport) and Monte Carlo calculation tools, depletion and fuel cycle analysis codes, perturbation theory codes for reactivity coefficient calculation and cross section sensitivity analysis, and uncertainty analysis codes.
机译:本文回顾了快堆的物理和计算方法。简要回顾了快谱反应堆的基本反应堆物理原理,重点是裂变材料的繁殖和act系元素的燃烧。比较了增殖反应器和燃烧器反应器的设计含义和反应性反馈特性。对快堆的独特核特性进行了一些讨论,使传统轻水堆分析方法中采用的假设不适用。审查了用于美国快速反应堆设计建模的反应堆物理分析代码。这篇综述涵盖了横截面生成功能,全核确定性(扩散和传输)和蒙特卡洛计算工具,耗竭和燃料循环分析代码,用于反应系数计算和横截面敏感性分析的扰动理论代码以及不确定性分析代码。

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