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Inverse three-dimensional modeling for determination of in-situ state of stresses

机译:反向三维建模,用于确定原位应力状态

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The in-situ state of stresses is essential for most civil or mining engineering projects. An attempt is made here to reproduce this in-situ state by inverse analysis of field measurement data with a three-dimensional explicit finite-difference program using FLAC~(3D) and a three-dimensional fictitious stress boundary element method. The inhomogeneous models are adopted to reflect the real geological conditions both for FLAC~(3D) and 3D BEM. Estimations by numerical simulations are compared with field-measured results and the state of stresses at new locations can be predicted closely.
机译:原位应力状态对于大多数民事或采矿工程项目至关重要。这里尝试通过使用FLAC〜(3D)和三维虚拟应力边界元方法,通过用三维显式有限差分计划的现场测量数据逆分析来再现这种原位状态。采用不均匀的模型来反映FLAC〜(3D)和3D BEM的真实地质条件。将数值模拟的估计与现场测量结果进行比较,并且可以密切预测新位置处的应力状态。

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