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首页> 外文期刊>Transactions of the Indian Institute of Metals >Determination of Temperature of Structural Material Specimens in an Irradiation Capsule by an Analytical and Simulation Techniques
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Determination of Temperature of Structural Material Specimens in an Irradiation Capsule by an Analytical and Simulation Techniques

机译:分析和仿真技术测定辐射胶囊中结构材料试样的温度

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摘要

The main aim of this work is to determine the temperature of structural material specimens kept in an irradiation capsule during their irradiation in a nuclear reactor to find out the changes in mechanical properties. In the irradiation capsule, the specimens are kept in four to five separate leak-tight compartments located one over the other. Helium/Argon gas or mixtures of these gases are filled around the specimens in the compartments. The coolant of reactor, liquid sodium, flows around the irradiation capsule. During irradiation, due to attenuation of gamma rays and neutrons on the specimens, heat is generated in the specimens. Due to this generation of heat, the temperature of the specimens is more than the temperature of the sodium flowing over the capsule/compartment and we can obtain an irradiation temperature in the specimens which is much higher than the sodium temperature. In the present analysis, the temperature of specimens has been determined with various types of gases (helium/argon/helium-argon mixture) filled in the compartments around the specimens. Variable properties of gases have been used and an iterative method has been employed to calculate the temperatures. Using the results obtained, we can select the type of gas mixture required to attain a specific higher temperature in the specimens during irradiation. The results have been compared with the results obtained using a computer code COMSOL.
机译:这项工作的主要目的是在核反应堆的照射期间确定在核反应堆的照射期间保持在辐射胶囊中的结构材料标本的温度,以找出机械性能的变化。在照射胶囊中,试样保持在四到五个单独的泄漏间隔内,其位于另一个上。这些气体的氦/氩气或这些气体的混合物围绕隔室中的标本填充。反应器的冷却剂,液体钠,在照射胶囊周围流动。在照射期间,由于伽马射线和中子对试样上的衰减,在标本中产生热量。由于这种热量,样品的温度大于流动胶囊/隔室的钠的温度,并且我们可以在高于钠温度的样品中获得辐照温度。在本分析中,已经用填充在样本周围的隔室中的各种类型的气体(氦/氩/氦气混合物)确定样本的温度。已经使用了气体的可变性质,并且已经采用迭代方法来计算温度。使用获得的结果,我们可以在照射期间选择在样品中获得特异性较高温度所需的气体混合物的类型。将结果与使用计算机代码COMSOL获得的结果进行了比较。

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