首页> 外文期刊>Journal of Microwaves, Optoelectronics and Electromagnetic Applications >A Numerical Mode-Matching Method Based on Multiple-Knot Cubic B-Splines Applied to the Analysis of Well-Logging Tools
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A Numerical Mode-Matching Method Based on Multiple-Knot Cubic B-Splines Applied to the Analysis of Well-Logging Tools

机译:基于多结三次B样条的数值模式匹配方法在测井工具分析中的应用

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Abstract The numerical mode-matching (NMM) technique is a very efficient approach to analyze well-logging tools used for hydrocarbon exploration. This problem is typically modeled as a cylindrically layered medium (subterranean formation) including both horizontal and vertical stratifications. In this paper, we present a new NMM formulation based on the use of B-splines expansion functions with variable knot multiplicity to represent the dependency of fields on the vertical direction, and cylindrical Bessel functions to represent the fields along the radial (horizontal) direction. We show that this type of expansion allows to better capture the spatial variation of the electromagnetic field near vertical layer interfaces. Illustrative examples elucidate the advantage of knot multiplicity in the modeling of earth formations with anisotropic and lossy layers. A case study on compensated dual resistivity (CDR) well-logging tool sensors is also presented based on the proposed method.
机译:摘要数值模式匹配(NMM)技术是一种非常有效的方法,用于分析用于油气勘探的测井工具。通常将此问题建模为包含水平分层和垂直分层的圆柱形分层介质(地下构造)。在本文中,我们提出了一种新的NMM公式,该公式基于具有可变结多重性的B样条展开函数来表示场在垂直方向上的依赖性,而圆柱贝塞尔函数用于表示沿径向(水平)方向的场。我们表明,这种类型的扩展允许更好地捕获垂直层界面附近的电磁场的空间变化。说明性示例阐明了在具有各向异性层和有损层的地层建模中结多重性的优势。在此基础上,以补偿双电阻率测井工具传感器为例。

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