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Optimal experiment design for thermal property estimation using a boundary condition of the fourth kind with a time-limited heating period

机译:使用第四类边界条件和加热时间限制的热特性估算的最佳实验设计

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An optimal design of a three-layer experimental apparatus where a thin heater is placed between two identical samples is proposed. It allows thermal conductivity and volumetric heat capacity of high conductivity materials to be estimated when the heating period is finite and the heater heat capacity is not negligible. Once the thermal field within the sample is known and the sensitivity coefficients are computed, a D-optimum criterion is applied in order to minimize the area of the confidence region of the estimates. Three experimental variables (experiment duration, heating duration and sensor location) are investigated for different values of the heater heat capacity. For instance, when it is 5% of the sample heat capacity, the optimal experiment duration is of about 4% longer than that occurring when the heater is neglected. However, the heater heat capacity does not affect the optimal heating duration and the optimal sensor locations. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了在两个相同的样本之间放置一个薄加热器的三层实验设备的最佳设计。当加热时间有限且加热器的热容不可忽略时,它可以估算高热导率材料的热导率和体积热容。一旦知道了样品内的热场并计算了灵敏度系数,便会应用D优化准则,以使估计值的置信区域的面积最小。针对加热器热容量的不同值,研究了三个实验变量(实验持续时间,加热持续时间和传感器位置)。例如,当其为样品热容量的5%时,最佳实验持续时间比忽略加热器时的最佳实验持续时间长约4%。但是,加热器的热容量不会影响最佳加热时间和最佳传感器位置。 (C)2019 Elsevier Ltd.保留所有权利。

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