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2-D Wavelet-Based Adaptive-Grid Method for the Resolution of PDEs

机译:基于二维小波的自适应网格分解方法

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An efficient interpolating wavelet-based adaptive-grid numerical method is described for solving systems of bidimensional partial differential equations. The grid is dynamically adapted in both dimensions during the integration procedure so that only the relevant information is stored, saving allocation memory. The spatial derivatives are directly calculated in a nonuniform grid using cubic splines. Numerical results for five typical problems presented illustrate the efficiency and robustness of the method. The adaptive strategy significantly reduces the computational times and the memory requirements, as compared to the fixed-grid approach.
机译:描述了一种有效的基于小波插值的自适应网格数值方法,用于求解二维偏微分方程组。在集成过程中,网格在两个维度上都是动态适应的,因此仅存储相关信息,从而节省了分配内存。使用三次样条直接在非均匀网格中计算空间导数。提出的五个典型问题的数值结果说明了该方法的效率和鲁棒性。与固定网格方法相比,自适应策略显着减少了计算时间和内存需求。

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