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Interval inversion of well-logging data for objective determination of textural parameters

机译:测井数据的间隔反演以客观确定构造参数

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摘要

A joint inversion method for the evaluation of well-logging data is presented, which is applicable to determine textural parameters, i.e., cementation exponent, saturation exponent and tortuosity factor, simultaneously with conventional petrophysical properties. The inversion techniques used today perform local interpretation. Since the number of unknowns is slightly lower than that of the data estimated locally to one depth-point, a set of marginally overdetermined inverse problems has to be solved. For preserving the overdetermination, textural parameters must be kept constant for longer depth intervals (i.e., 200-300 m), despite the fact that they seem to be varying faster with depth according to field experiences. An inversion method was developed, which inverts data of a greater depth interval jointly in a highly overdetermined inversion procedure and gives a better resolution (10 m or less) estimate for the textural parameters. In the paper, a set of inversion tests on synthetic data as well as a field example prove the feasibility of the method.
机译:提出了一种联合反演方法,用于评价测井数据,适用于确定构造参数,即胶结指数,饱和指数和曲折系数,同时具有常规的岩石物理特性。今天使用的反演技术执行局部解释。由于未知数比局部估计到一个深度点的数据略低,因此必须解决一组边际超定反问题。为了保持超确定性,尽管根据现场经验它们似乎随着深度变化更快,但是对于较长的深度间隔(即200-300 m),纹理参数必须保持恒定。开发了一种反演方法,该方法以高度确定的反演程序共同反演较大深度间隔的数据,并为纹理参数提供更好的分辨率(10 m或更小)估计。在本文中,通过对综合数据进行的一组反演测试以及一个现场实例证明了该方法的可行性。

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