首页> 外文会议>ASME international mechanical engineering congress and exposition >CALIBRATION OF EXTERNAL HEAT TRANSFER COEFFICIENTS DURING COOLING OF A PARTIALLY-FILLED WATER TANK USING MEASURED TEMPERATURE-TIME DATA
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CALIBRATION OF EXTERNAL HEAT TRANSFER COEFFICIENTS DURING COOLING OF A PARTIALLY-FILLED WATER TANK USING MEASURED TEMPERATURE-TIME DATA

机译:利用测得的温度-时间数据校准部分装满水的水箱冷却过程中的外部传热系数

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A combined Computational Fluid Dynamics (CFD) and experimental approach is presented to determine (calibrate) the external convective heat transfer coefficients (h) around a partially-filled water tank cooled in a climactic chamber. A CFD analysis that includes natural convection in both phases (water and air) was performed using a 2D-axisymmetric tank model with three prescribed average heat transfer coefficients for the top, side and bottom walls of the tank. The commercial CFD code ANSYS-Fluent™, along with User-Defined Functions (UDFs), were utilized to compute and extract temperature vs. time curves at five different thermocouple locations within the tank. The prescribed h values were then altered to match experimentally obtained temperature-time data at the same locations. The calibration was deemed successful when results from the simulations exhibited match with experimental data within ±2°C for all thermocouples. The calibrated h values were finally used in full-scale 3D simulations and compared to the experimental data to test their accuracy. Predicted 3D results were found to agree with experimental results within the error of the calibration, thereby lending credibility to the overall approach.
机译:提出了一种结合计算流体动力学(CFD)和实验方法来确定(校准)在高空室内冷却的部分填充水箱周围的外部对流传热系数(h)的方法。使用2D轴对称储罐模型进行了CFD分析,包括两个阶段(水和空气)的自然对流,其中,储罐的顶壁,侧壁和底壁具有三个规定的平均传热系数。商业CFD代码ANSYS-Fluent™以及用户定义的功能(UDF)用于计算和提取储罐内五个不同热电偶位置的温度与时间的关系曲线。然后更改规定的h值,以匹配在相同位置通过实验获得的温度-时间数据。当模拟结果与所有热电偶的实验数据均在±2°C之内相匹配时,则认为校准成功。最终,将校准后的h值用于全尺寸3D模拟中,并与实验数据进行比较以测试其准确性。发现预测的3D结果与实验结果在校准误差范围内一致,从而使整体方法可信。

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