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Full-waveform Based Complete Moment Tensor Inversion and Stress Estimation from Downhole Microseismic Data for Hydrofracture Monitoring

机译:基于全波形的完整力矩张量反演和应力估算井下微震数据的水力压裂监测

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摘要

Downhole microseismics has gained increasing popularity in recent years as a way to characterize hydraulic fracturing and to estimate in-situ stress state. Conventional approaches only utilize part of the information contained in the microseismic waveforms such as the P/S far-field amplitudes to determine the focal mechanisms and infer stress state. The situation becomes more serious for downhole monitoring where only limited azimuthal coverage is available. In this study, we developed a full-waveform based approach to invert for complete moment tensor. We use the discrete wavenumber integration method as the fast forward modeling tool to calculate the full wavefield in the layered medium. By matching the waveforms across the array, a stable moment tensor solution can be obtained without imposing additional constraints. We show that by using full waveforms, the resolution of the full seismic moment tensor is improved even with data from a single monitoring well. We also determine the stress drop from the S-wave displacement spectrum. We test our method using a downhole microseismic dataset from hydraulic fracturing treatments in East Texas. The results indicate the existence of non-double-couple components in the moment tensor. The derived fracture plane direction also agrees with that derived from multiple event location.
机译:近年来,作为表征水力压裂和估算原地应力状态的一种方法,井下微地震越来越受到欢迎。常规方法仅利用微地震波形中包含的部分信息(例如P / S远场振幅)来确定震源机制并推断应力状态。对于只有有限方位角覆盖范围的井下监控,情况变得更加严重。在这项研究中,我们开发了一种基于全波形的方法来反转完整矩张量。我们使用离散波数积分方法作为快速前进建模工具来计算分层介质中的全波场。通过匹配阵列上的波形,可以获得稳定的矩张量解,而无需施加其他约束。我们表明,通过使用全波形,即使使用单个监测井的数据,全地震矩张量的分辨率也会提高。我们还根据S波位移谱确定了应力降。我们使用得克萨斯州东部的水力压裂法的井下微地震数据集测试了我们的方法。结果表明在矩张量中存在非双耦合分量。导出的骨折平面方向也与从多个事件位置导出的方向一致。

著录项

  • 作者

    Song Fuxian; Toksoz M. Nafi;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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