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首页> 外文期刊>International Journal of Thermal Sciences >Theoretical-experimental analysis of heat transfer in nonhomogeneous solids via improved lumped formulation, integral transforms and infrared thermography
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Theoretical-experimental analysis of heat transfer in nonhomogeneous solids via improved lumped formulation, integral transforms and infrared thermography

机译:通过改进的集总配方,积分变换和红外热成像对非均质固体中的传热进行理论-实验分析

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摘要

Theoretical and experimental methodologies for the identification of spatially variable thermophysical properties and for simulating multidimensional heat transfer in heterogeneous materials are illustrated by using plate samples with aluminum oxide nanoparticles dispersed in a polymeric matrix. First, the heterogeneous nanocomposite plate is thermally characterized by means of a fairly simple experimental setup which can be modeled by a one-dimensional heat conduction formulation with space variable properties. Non-intrusive temperature measurements are obtained via infrared thermography, while the direct problem is handled by an error-controlled integral transform solution with an improved lumped-differential formulation, and the inverse analysis is undertaken via Bayesian inference, making use of the Markov Chain Monte Carlo method. Then, in order to illustrate the application of the methodologies here presented, an experimental multidimensional demonstration is provided consisting of a small electrical resistance attached to the plate, simulating a heat generating electronic device installed on the nanocomposite substrate, which in such situation works as a heat spreader modeled by an improved lumped-differential two-dimensional heat conduction formulation. The integral transform solution of the lumped-differential two-dimensional problem is then critically compared against the infrared thermography experimental results.
机译:通过使用具有分散在聚合物基体中的氧化铝纳米颗粒的平板样品,说明了用于识别空间可变的热物理性质和模拟异质材料中多维传热的理论和实验方法。首先,通过相当简单的实验装置对异质纳米复合板进行热表征,该实验装置可以通过具有空间可变特性的一维导热配方进行建模。非介入式温度测量是通过红外热像仪获得的,而直接问题则由具有改进的集总-微分公式的误差控制的积分变换解决,并且通过使用马尔可夫链蒙特卡洛方法的贝叶斯推理进行逆分析。卡洛方法。然后,为了说明此处介绍的方法的应用,提供了一个实验性的多维演示,该演示包括一个附着在板上的小电阻,模拟了安装在纳米复合材料基板上的发热电子设备,该电子设备在这种情况下的工作原理如下:散热器以改进的集总-差分二维导热公式为模型。然后将集总-差分二维问题的积分变换解与红外热成像实验结果进行了严格比较。

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