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Quantities of Interest for Surface based Resistivity Geophysical Measurements

机译:基于表面电阻率地球物理测量的兴趣数量

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The objective of traditional goal-oriented strategies is to construct an optimal mesh that minimizes the problem size needed to achieve a user prescribed tolerance error for a given quantity of interest (QoI). Typical geophysical resistivity measurement acquisition systems can easily record electromagnetic (EM) fields. However, depending upon the application, EM fields are sometimes loosely related to the quantity that is to be inverted (conductivity or resistivity), and therefore they become inadequate for inversion. In the present work, we study the impact of the selection of the Qol in our inverse problem. We focus on two different acquisition systems: marine controlled source electromagnetic (CSEM), and magnetotellurics (MT). For both applications, numerical results illustrate the benefits of employing adequate Qol. Specifically, the use as Qol of the impedance matrix on MT measurements provides significant computational savings, since one can replace the existing absorbing boundary conditions (BCs) by a homogeneous Dirichlet BC to truncate the computational domain, something that is not possible when considering EM fields as QoI.
机译:传统面向目标的策略的目的是构造一个最佳网格,最小化了为给定数量的兴趣(Qoi)实现用户规定的公差误差所需的问题大小。典型的地球物理电阻率测量采集系统可以轻松记录电磁(EM)字段。然而,根据应用,EM场有时与要反转的量松散地相关(导电性或电阻率),因此它们变得不足以进行反转。在目前的工作中,我们研究了在逆问题中选择QoL的影响。我们专注于两种不同的采集系统:海洋控制源电磁(CSEM)和Magnetellurics(MT)。对于这两个应用程序,数值结果说明了采用足够QOL的好处。具体地,在MT测量上的阻抗矩阵的用途提供了显着的计算节省,因为人们可以通过同一性Dirichlet BC替换现有的吸收边界条件(BCS)来截断计算域,在考虑EM字段时不可能作为Qoi。

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