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首页> 外文期刊>Journal of Applied Geophysics >Depth solution from borehole and travel time data using three-variable hypersurface splines
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Depth solution from borehole and travel time data using three-variable hypersurface splines

机译:使用三变量超曲面样条从井眼深度和行进时间数据

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摘要

A new methodology, three-variable hypersurface splines. is presented for depth solution of geological surfaces in a certain exploration field based on the integration of elevation data, obtained from drilling, and travel time data, obtained from high-resolution seismic exploration. It is based on two-variable surface splines and could be used to generate a three-variable transformation function so that the travel time data could be globally inverted to the elevations of geological surfaces for a whole exploration field. In this procedure, no velocity parameters are used. so the selection of a suitable velocity background model is not necessary in the area with complex geological bodies. Another characteristic of this method is the ability to solve the discordance between travel time data and elevation data which always occurs while using conventional interpretation method and ensure the depths of geological surfaces transformed from seismic data full coinciding with those from original drilling data. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 12]
机译:一种新方法,三变量超曲面样条曲线。基于从钻探获得的高程数据和从高分辨率地震勘探获得的行进时间数据的集成,提出了在某个勘探领域中地质表面深度解决方案的方法。它基于二变量表面样条曲线,可用于生成三变量转换函数,因此对于整个勘探场,可以将行进时间数据全局反转为地质表面的高程。在此过程中,不使用速度参数。因此,在具有复杂地质体的区域中,无需选择合适的速度本底模型。该方法的另一个特点是能够解决使用常规解释方法时总是发生的行进时间数据与高程数据之间的不一致,并确保从地震数据转换而来的地质表面深度与原始钻探数据完全一致。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:12]

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