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Identification of temperature-dependent thermal properties of solid materials

机译:识别固体材料随温度变化的热性能

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摘要

This work proposes an experimental technique for the simultaneous estimation of temperature-dependent thermal diffusivity, α, and thermal conductivity, λ, of insulation materials. The thermal model used considers a transient one-dimensional heat transfer problem. The determination of these properties is done by using the principle of the Mixed technique. In this technique two objective functions are defined, one in the frequency domain and the other in the time domain. The objective function in the frequency domain is based on the square difference between experimental and calculated values of the phase angle, while the other objective function is the least square error function of experimental and calculated signals of temperature. The properties α and λ are obtained by using an experimental apparatus that basically consists of a Polyvinyl Chloride (PVC) sample exposed to different temperatures inside an oven. The temperature inside the oven is controlled by a PID temperature controller. The properties α and λ were estimated for 7 (seven) points of average temperature in a range from 20 oC to 66 oC. The properties were determined with an additional heating of approximately 4.5 K on the frontal surface. Analyses of sensitivity, sensors location and sample dimensions were also made.
机译:这项工作提出了一种用于同时估算绝缘材料与温度相关的热扩散率α和热导率λ的实验技术。使用的热模型考虑了瞬态一维传热问题。这些特性的确定是通过使用混合技术原理完成的。在该技术中,定义了两个目标函数,一个在频域中,另一个在时域中。频域中的目标函数基于实验和计算出的相角值之间的平方差,而另一个目标函数是实验和计算出的温度信号的最小平方误差函数。通过使用基本上由暴露于烤箱内不同温度的聚氯乙烯(PVC)样品组成的实验设备获得特性α和λ。烤箱内部的温度由PID温度控制器控制。在20oC至66oC的范围内,平均温度的7(七个)点估计了特性α和λ。通过在正面上另外加热约4.5 K来确定性能。还进行了灵敏度,传感器位置和样品尺寸的分析。

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