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Numerically-robust pseudoanalytical evaluation of Green#039;s functions in cylindrical-stratified media

机译:圆柱分层介质中格林函数的鲁棒数值伪分析评估

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A robust algorithm for computing the reponse of dipole-sources in cylindrical-stratified media is presented. A set of new bounded (range-conditioned) functions are introduced in order to handle the exponential behavior of the Bessel and Hankel functions for large arguments as well their behavior for very small arguments, from which the corresponding spectral Green's function is determined. The new functions are defined in three nonoverlapping subdomains and used to stabilize the numerical computation under double-precision arithmetic. In addition, adaptively-chosen integration contours are employed in the complex plane to ensure fast convergence in all cases. The algorithm is in principle applicable to any range of frequencies of interest. We validated it at frequencies of interest to geophysical exploration, ranging from 10 MHz down to the low magnetotelluric frequency-range (around 0.01 Hz), and for layers with resistivities varying from 1000 Ω · m to 10−8 Ω · m.
机译:提出了一种计算圆柱分层介质中偶极子源响应的鲁棒算法。引入了一组新的有界(范围条件)函数,以处理大自变量的Bessel和Hankel函数的指数行为,以及对于非常小自变量的行为,从中确定相应的频谱格林函数。新函数在三个不重叠的子域中定义,并用于稳定双精度算法下的数值计算。此外,在复杂平面中采用自适应选择的积分轮廓以确保在所有情况下均能快速收敛。该算法原则上适用于任何感兴趣的频率范围。我们在地球物理勘探感兴趣的频率范围(从10 MHz到低大地电磁频率范围(约0.01 Hz))以及电阻率从1000Ω·m到10−8Ω·m的层中进行了验证。

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