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Comparison of the Responses of New Reduced-Size Calorimetric Cells Made of Different Structure Materials for High Energy Deposition

机译:用不同结构材料制成的新型减压量电池对高能沉积的响应的比较

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This paper concerns experimental and numerical works on a new differential calorimeter called CALORRE and validated recently under irradiation conditions in MARIA reactor at low nuclear absorbed dose rate level. Works focus on a specific configuration of CALORRE which was designed especially for the measurement of high nuclear energy deposition rates inside Material Testing Reactors. Due to the high level, a new calibration system was fabricated in order to determine the response of the new configuration under laboratory conditions for a very wide range of electrical power never applied in the literature. The response of the new configuration can be considered linear for this very wide range of electrical power. An analytical calculation shows the contribution of each heat transfer in specific zones. 3D thermal simulations performed by means of COMSOL Multiphysics under irradiation conditions give the predictions of the calorimeter behavior under real conditions (up to 20W.g~(-1)).
机译:本文涉及一种叫做Calorre的新差分量热计的实验和数值作品,并在低核吸收剂量率水平下最近在Maria反应器的辐照条件下验证。 作品专注于卡尔利的特定配置,该粉碎的设计尤其用于测量材料检测反应器内的高核能沉积速率。 由于高水平,制造了一种新的校准系统,以便在实验室条件下确定新配置的响应,以获得非常广泛的电力从未应用于文献中的电力。 对于这种非常广泛的电力,可以将新配置的响应视为线性。 分析计算显示了每个传热在特定区域中的贡献。 通过辐照条件下通过COMSOL多体学进行的3D热模拟,可在真实条件下预测量计行为(高达20W.g〜(-1))。

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