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SIMPEG: An open source framework for simulation and gradient based parameter estimation in geophysical applications

机译:SIMPEG:一种用于地球物理应用中基于仿真和基于梯度的参数估计的开源框架

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摘要

Inverse modeling is a powerful tool for extracting information about the subsurface from geophysical data. Geophysical inverse problems are inherently multidisciplinary, requiring elements from the relevant physics, numerical simulation, and optimization, as well as knowledge of the geologic setting, and a comprehension of the interplay between all of these elements. The development and advancement of inversion methodologies can be enabled by a framework that supports experimentation, is flexible and extensible, and allows the knowledge generated to be captured and shared. The goal of this paper is to propose a framework that supports many different types of geophysical forward simulations and deterministic inverse problems. Additionally, we provide an open source implementation of this framework in Python called SIMPEG (Simulation and Parameter Estimation in Geophysics, http://simpeg.xyz). Included in SIMPEG are staggered grid, mimetic finite volume discretizations on a number of structured and semi-structured meshes, convex optimization programs, inversion routines, model parameterizations, useful utility codes, and interfaces to standard numerical solver packages. The framework and implementation are modular, allowing the user to explore, experiment with, and iterate over a variety of approaches to the inverse problem. SIMPEG provides an extensible, documented, and well-tested framework for inverting many types of geophysical data and thereby helping to answer questions in geoscience applications. Throughout the paper we use a generic direct current resistivity problem to illustrate the framework and functionality of SIMPEG. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:逆建模是从地球物理数据中提取有关地下信息的强大工具。地球物理反问题本质上是多学科的,需要相关物理学,数值模拟和优化的要素,以及对地质环境的了解,以及对所有这些要素之间相互作用的理解。可以通过支持实验的框架来实现反演方法论的发展和进步,该框架是灵活且可扩展的,并且可以捕获和共享所生成的知识。本文的目的是提出一个支持许多不同类型的地球物理正演模拟和确定性反问题的框架。此外,我们在Python中提供了该框架的开源实现,称为SIMPEG(地球物理学中的模拟和参数估计,http://simpeg.xyz)。 SIMPEG包括交错网格,许多结构化和半结构化网格上的模拟有限体积离散化,凸优化程序,反演例程,模型参数化,有用的实用代码以及与标准数值求解器包的接口。框架和实现是模块化的,允许用户探索,试验和迭代解决反问题的各种方法。 SIMPEG提供了一个可扩展的,已记录且经过良好测试的框架,用于反转许多类型的地球物理数据,从而帮助回答地球科学应用程序中的问题。在整个论文中,我们使用通用的直流电阻率问题来说明SIMPEG的框架和功能。 (C)2015作者。由Elsevier Ltd.发布

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