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Analysis Technology on the Temperature and Thermal Stress of the Cask for Radioactive Material Transport

机译:放射性物质运输桶温度和热应力分析技术

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摘要

The cask is used to transport the radioactive materials. It is required to withstand for the thirty minute under the hypothetical fire accident condition of the 800℃. According to development of the computer simulation, finite element analysis is applied to the calculation widely. But finite element method for the hypothetical accident conditions is not established in domestic regulations. In this study, the temperature and thermal stress analysis of KSC-4 cask under 800℃ fire condition is conducted using by ANSYS 7.0 code. In order to analyze finite elements, two-dimensional model of KSC-4 cask is used. Symmetric boundary, convection, and radiation condition are applied in the analysis. As the results, maximum temperature and thermal stress of the KSC-4 cask is evaluated.
机译:桶用于运输放射性物质。在假设的800℃火灾事故条件下,要求承受30分钟。随着计算机仿真技术的发展,有限元分析被广泛应用于计算中。但是在国内法规中没有建立用于假设事故条件的有限元方法。本研究采用ANSYS 7.0代码对800℃燃烧条件下的KSC-4桶进行了温度和热应力分析。为了分析有限元,使用了KSC-4桶的二维模型。分析中采用了对称边界,对流和辐射条件。结果,评估了KSC-4桶的最高温度和热应力。

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