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A versatile nonlinear inversion to interpret gravity anomaly caused by a simple geometrical structure

机译:通用的非线性反演,用于解释由简单几何结构引起的重力异常

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摘要

A geophysical interpretative method is proposed to depth, amplitude coefficient and geometrical shape factor determination of a buried structure from an observed gravity anomaly related to a cylinder or a sphere-like structure.The method is based on nonlinearly constrained mathematical modelling and also on stochastic optimization approaches. The proposed interpretative method first has been tested on theoretical synthetic models with different random errors at a certain depth, where a very close agreement has been observed between assumed and evaluated parameters. Subsequent field data have been considered for which the interpreted results by other methods are available for comparison. The agreement between the obtained results by the proposed technique and by other geophysical methods is good. A statistical analysis has been also carried out to demonstrate the accuracy and the precision of the suggested interpretative method.
机译:提出了一种地球物理解释方法,该方法基于与圆柱或球形结构有关的观测重力异常来确定埋藏结构的深度,振幅系数和几何形状因子,该方法基于非线性约束数学模型以及随机优化方法方法。首先,在具有一定随机深度的理论随机模型的理论合成模型上对提出的解释方法进行了测试,其中在假定参数和评估参数之间观察到非常接近的一致性。已经考虑了随后的现场数据,可以通过其他方法将其解释结果用于比较。所提出的技术与其他地球物理方法所获得的结果之间的一致性很好。还进行了统计分析,以证明所提出的解释方法的准确性和准确性。

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