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Thermal diffusivity estimation using numerical inverse solution for 1D heat conduction

机译:一维热传导的数值逆解热扩散率估算

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摘要

This work presents an improved apparatus and a numerical approach to obtain the estimate of thermal diffusivity of complex materials. Transient thermal response at the axis of cylindrical sample is measured when boundary temperature is suddenly changed. Instead of assuming an ideal step temperature excitement, a measured temperature of a material boundary was employed. An iterative procedure, based on minimizing a sum of squares function with the Levenberg-Marquardt method, is used to solve the inverse problem. A graphical user interface is built to enable easy use of the inverse thermal diffusivity estimation method. The reference materials used to evaluate the method are Agar water gel, glycerol and Ottawa quartz sand.
机译:这项工作提出了一种改进的设备和数值方法来获得复杂材料的热扩散率的估计值。当边界温度突然变化时,将测量圆柱状样品轴的瞬态热响应。代替假定理想的阶跃温度激发,而是采用材料边界的测量温度。使用基于Levenberg-Marquardt方法最小化平方和函数的迭代过程来解决反问题。建立图形用户界面可以轻松使用逆热扩散率估算方法。用于评估该方法的参考材料是琼脂水凝胶,甘油和渥太华石英砂。

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