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首页> 外文期刊>Nuclear engineering and technology >AN ANALYSIS OF THE THERMAL AND MECHANICAL BEHAVIOR OF ENGINEERED BARRIERS IN A HIGH-LEVEL RADIOACTIVE WASTE REPOSITORY
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AN ANALYSIS OF THE THERMAL AND MECHANICAL BEHAVIOR OF ENGINEERED BARRIERS IN A HIGH-LEVEL RADIOACTIVE WASTE REPOSITORY

机译:高水平放射性废料库中工程壁垒的热力学性能分析

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Adequate design of engineered barriers, including canister, buffer and backfill, is important for the safe disposal of high-level radioactive waste. Three-dimensional computer simulations were carried out under different condition to examine the thermal and mechanical behavior of engineered barriers and rock mass. The research looked at five areas of importance, the effect of the swelling pressure, water content of buffer, density of compacted bentonite, emplacement type and the selection of failure criteria. The results highlighted the need to consider tensile stress in the outer shell of a canister due to thermal expansion of the canister and the swelling pressure from the buffer for a more reliable design of an underground repository system. In addition, an adequate failure criterion should be used for the buffer and backfill.
机译:适当设计的障碍物(包括罐,缓冲液和回填物)对于安全处置高放射性废物至关重要。在不同条件下进行了三维计算机模拟,以检查工程屏障和岩体的热力学性能。研究着眼于五个重要领域,膨胀压力的影响,缓冲液的含水量,压实膨润土的密度,位置类型和破坏准则的选择。结果强调了由于罐的热膨胀和来自缓冲器的膨胀压力而需要考虑的在罐的外壳中的拉应力,以便更可靠地设计地下储存库系统。另外,缓冲液和回填应使用足够的失效标准。

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