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A Fast and Efficient Method for Predicting Fluid Flow and Heat Transfer Problems

机译:一种预测流体流动和传热问题的快速有效方法

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摘要

A fast and efficient method based on the proper orthogonal decomposition (POD) technique for predicting fluid flow and heat transfer problems is proposed in this paper. POD is first applied to an ensemble of numerical simulation results at design parameters to obtain the empirical coefficients and eigenfunctions, and then the fluid and temperature fields in the range of design parameters are resolved by a linear combination of empirical coefficients and eigenf unctions. The empirical coefficients at off-design parameters are obtained by a cubic spline interpolation method for steady problems and a Galerkin projection method for transient problems. Finally, the efficiency and accuracy of the algorithm are examined by three examples. The POD based algorithm can predict both the velocity and temperature fields in the range of design parameters accurately at a price of a large number of precomputed cases (snapshots). It also brings significant computational time savings for the new cases within the parameter range presimulated compared with the finite volume method with SIMPLE-like algorithm.
机译:提出了一种基于适当正交分解(POD)技术的快速高效的流体流动和传热问题预测方法。首先将POD应用于设计参数的一组数值模拟结果,以获得经验系数和本征函数,然后通过经验系数和本征函数的线性组合来解析设计参数范围内的流体和温度场。对于稳态问题,通过三次样条插值法,对于瞬态问题,通过Galerkin投影法获得了偏离设计参数时的经验系数。最后,通过三个例子验证了算法的效率和准确性。基于POD的算法可以以大量预先计算的情况(快照)为代价,准确地预测设计参数范围内的速度场和温度场。与采用SIMPLE类算法的有限体积方法相比,它还为新案例在预先模拟的参数范围内节省了大量计算时间。

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