Deviation Analysis of Temperature Distribution in Copper Bar Heat Conduction Process Experiments Against Numerical Calculations

R. F. Muldiani, K. Hadiningrum, D. Pratama
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Abstract

In the process of heat transfer by conduction, besides the quantities in the form of surface area, length or thickness of the rod, and the temperature difference between the ends of the rod and the value of the thermal conductivity, other factors also affect the rate of heat transfer to the rod, one of which is environmental factors. As long as heat flows from the high to the low temperature, the temperature decrease is not uniform at any time interval. This is a sign of the influence of the ambient temperature for each part of the material. Temperature observations were carried out experimentally in an open environment in the laboratory and then compared with the results of numerical calculations as the ideal condition for the heat conduction process. The Boltzmann transport equation for the induction process on metal rods is solved using finite differences with an explicit method to obtain the temperature distribution. The results showed differences in the temperature distribution pattern of copper rods with numerical calculations and experiments. This difference is caused by the amount of heat released into the environment. The higher the temperature at the observation point, the greater the heat released into the atmosphere.
铜棒导热过程实验温度分布与数值计算的偏差分析
在传导传热过程中,除了以棒材的表面积、长度或厚度、棒材两端的温差和导热系数等形式表现出来的量外,其他因素也会影响到棒材的传热速率,其中之一就是环境因素。只要热量从高温流向低温,温度降低在任何时间间隔都不是均匀的。这是环境温度对材料各部分影响的标志。在实验室开放环境下进行了温度观测实验,并与数值计算结果进行了比较,作为热传导过程的理想条件。用有限差分法求解了金属棒上感应过程的玻尔兹曼输运方程,得到了温度分布。数值计算和实验结果表明,铜棒的温度分布规律存在差异。这种差异是由释放到环境中的热量造成的。观测点的温度越高,释放到大气中的热量就越多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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