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JOINT INVERSION OF TEM AND DISTORTED MT SOUNDINGS - SOME EFFECTIVE PRACTICAL CONSIDERATIONS

机译:TEM和失真MT声音的联合反演-一些有效的实践考虑

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Accurate layered-earth interpretation of magnetotelluric (MT) apparent resistivity sounding curves distorted by the presence of near-surface, 3-D bodies in an otherwise horizontally stratified ground requires that the curves be shifted to the level they would have assumed in the absence of these anomalous small-size bodies. The most popular preinterpretation processing involves shifting the biased MT apparent resistivity curves to the levels determined by some additional data. This paper examines the nature of TEM field data, their relationship with MT data, and their usefulness in constraining the interpretation of MT data at locations affected by near-surface 3-D effects. The MT apparent resistivity curves are neglected in a joint inversion scheme involving the (undistorted equivalent) phase information and TEM data, thus eliminating the need for preinterpretation data processing or correction of statically shifted curves. This approach is efficient and effective, and since an overlapping TEM observational bandwidth is not always required for a successful joint interpretation, simple inexpensive TEM equipment can be deployed as a logical compliment to MT in deep basin exploration campaigns. [References: 23]
机译:大地电磁(MT)视电阻率测深曲线的精确层状地球解释会因在水平分层地面中存在近地表3-D体而失真,因此需要将曲线移至在没有地层的情况下假定的水平这些异常的小型物体。最流行的预解释处理包括将偏置的MT表观电阻率曲线移动到由某些其他数据确定的水平。本文研究了TEM场数据的性质,它们与MT数据的关系,以及它们在限制受近地表3-D效应影响的位置MT数据解释方面的有用性。 MT视电阻率曲线在包含(无失真等效)相位信息和TEM数据的联合反演方案中被忽略,因此无需进行预解释数据处理或校正静态位移曲线。这种方法是有效且有效的,并且由于成功进行联合解释并不总是需要重叠的TEM观测带宽,因此可以在深海盆地勘探活动中部署简单廉价的TEM设备,作为对MT的逻辑补充。 [参考:23]

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