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ITER structural design criteria and their extension to advanced reactor blankets

机译:国际热核实验堆的结构设计标准及其对先进反应堆防护层的扩展

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Applications of the recent ITER structural design criteria (ISDC) are illustrated by two components. First, the low-temperature-design rules are applied to copper alloys that are particularly prone to irradiation embrittlement at relatively low fluences at certain temperatures. Allowable stresses are derived and the impact of the embrittlement on allowable surface heat flux of a simple first-wall/limiter design is demonstrated. Next, the high-temperature-design rules of ISDC are applied to evaporation of lithium and vapor extraction (EVOLVE), a blanket design concept currently being investigated under the US Advanced Power Extraction (APEX) program. A single tungsten first-wall tube is considered for thermal and stress analyses by finite-element method. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 4]
机译:两个组成部分说明了最新的ITER结构设计标准(ISDC)的应用。首先,将低温设计规则应用于特别容易在某些温度下以相对较低的通量进行辐照脆化的铜合金。得出允许的应力,并证明了脆性对简单的第一壁/限制器设计的允许表面热通量的影响。接下来,将ISDC的高温设计规则应用于锂的蒸发和蒸气提取(EVOLVE),这是目前正在美国高级功率提取(APEX)计划下进行的总体设计概念。考虑通过有限元方法对单个钨第一壁管进行热和应力分析。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:4]

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