首页> 外文学位 >Three-dimensional inversion of magnetotelluric data from the Coso Geothermal Field, based on a finite difference Gauss-Newton method parallelized on a multicore workstation.
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Three-dimensional inversion of magnetotelluric data from the Coso Geothermal Field, based on a finite difference Gauss-Newton method parallelized on a multicore workstation.

机译:基于在多核工作站上并行化的有限差分高斯-牛顿法,对来自Coso地热场的大地电磁数据进行了三维反演。

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摘要

An existing 3-D magnetotelluric (MT) inversion program written for a single processor personal computer (PC) has been modified and parallelized using OpenMP, in order to run the program efficiently on a multicore workstation. The program uses the Gauss-Newton inversion algorithm based on a staggered-grid finite-difference forward problem, requiring explicit calculation of the Frechet derivatives. The most time-consuming tasks are calculating the derivatives and determining the model parameters at each iteration. Forward modeling and derivative calculations are parallelized by assigning the calculations for each frequency to separate threads, which execute concurrently. Model parameters are obtained by factoring the Hessian using the LDLT method, implemented using a block-cyclic algorithm and compact storage.;MT data from 102 tensor stations over the East Flank of the Coso Geothermal Field, California are inverted. Less than three days are required to invert the dataset for ∼ 55,000 inversion parameters on a 2.66 GHz 8-CPU PC with 16 GB of RAM. Inversion results, recovered from a halfspace rather than initial 2-D inversions, qualitatively resemble models from massively parallel 3-D inversion by other researchers and overall, exhibit an improved fit. A steeply west-dipping conductor under the western East Flank is tentatively correlated with a zone of high-temperature ionic fluids based on known well production and lost circulation intervals. Beneath the Main Field, vertical and north-trending shallow conductors are correlated with geothermal producing intervals as well.
机译:现有的为单处理器个人计算机(PC)编写的3-D大地电磁(MT)反转程序已使用OpenMP进行了修改和并行化,以便在多核工作站上高效运行该程序。该程序使用基于交错网格有限差分正向问题的高斯-牛顿反演算法,需要对Frechet导数进行显式计算。最耗时的任务是计算导数并在每次迭代中确定模型参数。通过将每个频率的计算分配给同时执行的单独线程,可以并行进行正向建模和导数计算。模型参数是通过使用LDLT方法对Hessian进行因子分解而获得的,该方法使用块循环算法和紧凑存储来实现。来自加利福尼亚Coso地热田东翼的102个张量站的MT数据被求逆。在具有16 GB RAM的2.66 GHz 8-CPU PC上,需要约三天的时间才能反转约55,000个参数的数据集。从半空间而不是最初的2D反演中获得的反演结果在质量上与其他研究人员从大规模并行3D反演中获得的模型相似,并且总体上显示出改进的拟合度。根据已知的井产量和失去的循环间隔,在东部东侧西部下方陡峭的西侧导体暂时与高温离子流体带相关联。在主场下,垂直和北向的浅层导体也与地热产生间隔相关。

著录项

  • 作者

    Maris, Virginie.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:07

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