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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Calibration of a plate sensor for determination of total heat transfer into a surface with a spatially varying heat flux
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Calibration of a plate sensor for determination of total heat transfer into a surface with a spatially varying heat flux

机译:校准板传感器,用于测定具有空间变化的热通量的表面的总热传递

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This study presents an investigation of the calibration of a plate sensor for determination of the total surface heat transfer into a stainless steel plate with a spatially variable heat flux. The total surface heat transfer is determined through use of the calibration integral equation method (CIEM) which is an elegant way of relating "input to output" for a conduction heat transfer process. The calibration data consists of a measured uniform heat transfer input to the surface of the plate along with the measured temperatures from five thermocouples installed at the same specified depth just below the back face of the plate. It is demonstrated that the calibration data set obtained from a uniform heat flux test can be used to predict the total surface heat transfer for a time and spatially varying heat flux input to the plate using the average of the measured thermocouple temperatures. The CIEM was modified by rescaling the time domain to account for the temperature dependent thermal diffusivity and rescaling the surface heat transfer to account for the temperature dependent thermal conductivity. Three calibration tests with uniform surface heat flux inputs and six reconstruction tests with time dependent spatially varying heat flux inputs were conducted. Pairs of calibration and reconstruction test data were used to investigate eighteen test cases. Accurate predictions of the total surface heat transfer into the calibrated plate sensor were obtained regardless of the spatial distribution of the surface heating, the calibration test data or the measurement noise magnitude in the reconstruction temperature.
机译:该研究提出了对具有空间可变热通量的空间钢板的总表面热传递的板传感器的校准研究。通过使用校准整体方程方法(CIEM)来确定总表面传热,这是对导通传热过程相关的“输入到输出”的优雅方式。校准数据包括输入到板表面的测量均匀的传热,以及从安装在板的背面下方的相同指定深度的五个热电偶的测量温度。据证明,从均匀的热通量测试获得的校准数据集可用于预测时间的总表面热传递以及使用测量的热电偶温度的平均值输入到板上的空间上变化的热通量。通过重新加工时域来修改CIEM,以考虑温度相关的热扩散,并重新加工表面热传递以考虑温度依赖性导热率。采用均匀表面热通量输入的三个校准测试和六次重建试验随时间依赖于空间变化的热通量输入。对校准和重建测试数据用于调查18个测试用例。无论表面加热,校准测试数据还是重建温度中的测量噪声的空间分布如何,获得了对校准板传感器的总表面传热的准确预测。

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