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A Dual-Scale Computational Method for Correcting Surface Temperature Measurement Errors

机译:校正表面温度测量误差的双尺度计算方法

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The present paper addresses the measurement errors in temperature due to the effects of surface-mounted temperature sensors like thermocouples. Heat conduction into or from the installed thermocouple wires can alter the temperature at the thermocouple junction as well as in its immediate vicinity. As a result, the emf appearing at the thermocouple terminals does not correspond to the actual surface temperature. In this paper, we present a dual-scale computational method that can be used to calculate the transient temperatures at the multiple thermocouple junctions during heating or cooling of an object. The basis of the method is a thermocouple submodel embedded in a FEM model for the parent object. The numerical results of the dual-scale computational model are compared with that of the conventional FEM models as well as the analytical solutions available. This paper also discusses the characteristics of surface-mounted thermocouples in a range of configurations.
机译:本文解决了由于表面安装温度传感器(如热电偶)的影响而导致的温度测量误差。传入或传出已安装的热电偶导线的热传导会改变热电偶结及其附近的温度。结果,出现在热电偶端子上的电动势与实际表面温度不符。在本文中,我们提出了一种双尺度计算方法,该方法可用于计算对象加热或冷却期间多个热电偶结的瞬态温度。该方法的基础是嵌入到父对象的FEM模型中的热电偶子模型。将双尺度计算模型的数值结果与常规FEM模型的数值结果以及可用的解析解进行了比较。本文还讨论了一系列配置中的表面安装热电偶的特性。

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