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Approximating Convective Boundary Conditions for Transient Thermal Simulations with Surrogate Models for Thermal Packaging Studies

机译:用替代模型进行热包装研究的瞬态热模拟对流边界条件

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The need for transient thermal simulations in vehicle packaging studies has grown rapidly in recent years. To date, the computational costs associated with the transient simulation of 3D conjugate heat transfer phenomena has prohibited the widespread use of full vehicle transient simulations. This paper presents results from a recent study that explored a method to circumvent the computational costs associated with long transient conjugate heat transfer simulations. The proposed method first segregates the thermal structural and fluid physics domains to take advantage of time scale differences. The two domains are then re-coupled to calculate a series of steady state conjugate heat transfer simulations at various vehicle speeds. The local convection terms are then used to construct a set of surrogate models dependent on vehicle speed, that predict the local heat transfer coefficients and the local near wall fluid temperatures. These surrogate models are then coupled to the thermal structural simulation to simulate the wall temperature history. Results from transient conjugate heat transfer simulations of several vehicle test cycles were compared to simulations performed with the method described above. Differences in predicted wall temperatures were evaluated to assess the overall accuracy of the proposed methodology. Heat transfer coefficients and fluid temperatures predicted by the surrogate models were also compared to the local heat transfer coefficients and fluid temperatures calculated by the transient conjugate heat transfer simulation. It is concluded that surrogate models can be used to reduce the computational costs associated with transient thermal simulations with an acceptable loss of accuracy for the evaluated test cycles.
机译:近年来,在车辆包装研究中对瞬态热模拟的需求迅速增长。迄今为止,与3D共轭传热现象的瞬态仿真相关的计算成本禁止广泛使用全车辆瞬态模拟。本文提出了最近研究的结果,该研究探索了一种规避与长瞬态共轭传热模拟相关的计算成本的方法。所提出的方法首先偏析热结构和流体物理结构域以利用时间尺度差异。然后重新耦合两个域以计算各种车速的一系列稳态共轭传热模拟。然后,将局部对流术语用于构建依赖于车速的一组代理模型,其预测局部传热系数和局部靠近壁液温度。然后将这些替代模型耦合到热结构模拟以模拟壁温历史。将几种车辆测试循环的瞬态共轭传热模拟与上述方法进行的模拟进行了比较。评估了预测壁温度的差异,以评估所提出的方法的整体准确性。还将替代模型预测的传热系数和流体温度与通过瞬态缀合物传热模拟计算的局部传热系数和流体温度进行比较。结论是,代理模型可用于降低与瞬态热模拟相关的计算成本,具有可接受的评估测试周期的准确性损失。

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