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Using Adaptive Proper Orthogonal Decomposition To Solve The Reaction-diffusion Equation

机译:用自适应适当正交分解求解反应扩散方程

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We introduce an adaptive POD method to reduce the computational cost of reacting flow simulations. The scheme is coupled with an operator-splitting algorithm to solve the reaction-diffusion equation. For the reaction sub-steps, locally valid basis vectors, obtained via POD and the method of snapshots, are used to project the minor species mass fractions onto a reduced dimensional space thereby decreasing the number of equations that govern combustion chemistry. The method is applied to a one-dimensional, laminar premixed CH_4-air flame using GRImech 3.0; with errors less than 0.25%, a speed-up factor of 3.5 is observed. The speed-up results from fewer source term evaluations required to compute the Jacobian matrices.
机译:我们引入了一种自适应POD方法来减少反应流模拟的计算成本。该方案与算子分解算法相结合来求解反应扩散方程。对于反应子步骤,通过POD和快照方法获得的局部有效基向量用于将次要物种的质量分数投影到降维空间上,从而减少控制燃烧化学的方程式数量。该方法适用于使用GRImech 3.0的一维层流预混合CH_4-空气火焰;误差小于0.25%时,观察到加速因子为3.5。加速是由于需要较少的计算雅可比矩阵的源项估算而得出的。

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