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Gravity data interpretation by a two-sided fault-like geologic structure using the global particle swarm technique

机译:使用全局粒子群技术的双面故障样地质结构的重力数据解释

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摘要

We have developed a scheme for the interpretation of gravity data by a two-sided fault-like geological structure. The scheme is based on the particle swarm optimization and determines the model parameters of the upthrown and downthrown of the fault. It uses the second horizontal derivatives, which are calculated numerically from the measured gravity data by applying some filters of consecutive graticule spacings (the so-called here window lengths or s-values). The developed scheme has been verified on various noise-free synthetic models. Following that, the accuracy of the scheme has been assessed on a number of noisy synthetic examples. Finally, the developed technique has been successfully applied to two real data examples from India and the United States of America. It is found that the model parameters obtained from the scheme developed here are in good agreement with those reported in the published literature.
机译:我们开发了一种利用双侧断层状地质构造解释重力数据的方案。该方案基于粒子群优化算法,确定了故障上升和下降的模型参数。它使用第二水平导数,通过应用连续分划间距(此处称为窗口长度或s值)的一些过滤器,从测量的重力数据中进行数值计算。该方案已在各种无噪声合成模型上得到验证。在此基础上,通过大量噪声合成实例对该方案的准确性进行了评估。最后,开发的技术已成功应用于来自印度和美国的两个实际数据示例。研究发现,从本文提出的方案中得到的模型参数与已发表文献中的结果吻合良好。

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