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High-efficiency Numerical Simulation of Electromagnetic Response of Complex Geoelectric Structures Based on GPU Parallel Symplectic Algorithm

机译:基于GPU并行辛算法的复杂地电结构电磁响应的高效数值模拟

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For forward modeling of large size and fine structures, the numerical accuracy and computational efficiency are not high due to the stability conditions and dense grid number. In this paper, the symplectic Euler algorithm, surface conformal technique and GPU acceleration technique were combined to establish a precise and high-efficiency numerical model of electromagnetic wave propagation in complex geoelectric structures. And we realized the refined and efficient calculation of the electromagnetic response of arbitrary shape underground target. The results show that the accuracy and efficiency of ground penetrating radar (GPR) forward modeling are greatly improved, which provides a theoretical basis for accurately interpreting GPR detection data, and provides an accurate and efficient forward modeling for the inversion imaging.
机译:对于大尺寸和精细结构的正向建模,由于稳定​​性条件和密集的网格数,因此数值精度和计算效率不高。本文将辛欧拉算法,表面保形技术和GPU加速技术相结合,建立了复杂地电结构中电磁波传播的精确高效数值模型。从而实现了任意形状的地下目标电磁响应的精细高效计算。结果表明,探地雷达正向建模的准确性和效率大大提高,为准确解释探地雷达探测数据提供了理论基础,为反演成像提供了准确高效的正向建模。

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