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A quadrature-free method for simulation and inversion of 1.5D direct current (DC) borehole measurements

机译:用于1.5D直流(DC)钻孔测量的仿真和反演的无正交方法

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摘要

Resistivity inverse problems are routinely solved in order to characterize hydrocarbon bearing formations. They often require a large number of forward problems simulations. When considering a one dimensional (1D) planarly layered media, semi-analytical methods can be employed in order to solve a single forward problem in a fraction of a second. However, in some situations, a large number of (over one million) simulations is required, preventing this method to be used as a real time (logging) alternative. In this paper, we propose a novel semi-analytical method that dramatically reduces the total computational time, so it can be employed for real time inversion. In our proposed method, we select an ad hoc basis representation for the spectral solution such that its inverse Hankel transform can be computed analytically. The proposed method requires a pre-process that is expensive when compared with a single evaluation in classical semi-analytical methods. However, subsequent evaluations can be rapidly obtained, decreasing thus the total computational time by orders of magnitude when the number of required forward simulations is large.
机译:常规解决电阻率反问题,以表征含烃地层的特征。他们通常需要大量的前向问题模拟。当考虑一维(1D)平面分层介质时,可以采用半分析方法,以在不到一秒的时间内解决单个正向问题。但是,在某些情况下,需要进行大量(超过一百万次)仿真,因此无法将此方法用作实时(日志记录)替代方法。在本文中,我们提出了一种新颖的半分析方法,该方法大大减少了总的计算时间,因此可用于实时反演。在我们提出的方法中,我们为频谱解决方案选择了一个特殊的基础表示形式,以便可以解析地计算其逆汉克尔变换。与经典的半分析方法中的单个评估相比,所提出的方法需要昂贵的预处理。但是,可以快速获得后续评估,从而在所需正向仿真的数量很大时,将总计算时间减少了几个数量级。

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