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Measurement of the Effective Thermal Conductivity of Powders Using a Three-Layer Structure

机译:使用三层结构测量粉末的有效导热系数

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This article deals with the experimental measurement of the effective thermal conductivity of powders using a photothermal method with a crenel heating excitation. This method represents an improvement of the technique presented in a preceding article. It consists of applying a heat flux on the front face of a three-layer structure and recording the temperature on the rear face using a Tellure of Bismuth thermocouple. The powder is poured into a Teflon cell which is closed by two thin copper layers. Measurements are reported on several powders with spherical particles. The parameter identification is performed by the minimization of the ordinary least squares objective function, comparing the measured temperatures to the response of a thermal model built by the thermal quadrupole formalism. The used iterative algorithm is based on the Gauss-Newton method.
机译:本文使用具有筒架加热激励的光热方法,对粉末的有效导热率进行实验测量。此方法表示对先前文章中介绍的技术的改进。它包括在三层结构的正面施加热通量,并使用铋热电偶Tellure记录背面的温度。将粉末倒入特氟隆电池中,该电池由两层薄铜层封闭。报道了几种具有球形颗粒的粉末的测量结果。通过最小化普通最小二乘目标函数,将测得的温度与由热四极杆形式主义建立的热模型的响应进行比较来执行参数识别。使用的迭代算法基于高斯-牛顿法。

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