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转换波AVO反演速度比各横波反射系数

机译:转换波AVO反演速度比各横波反射系数

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摘要

Based on the empirical Gardner equation describing the relationship between density and compressional wave velocity, the converted wave reflection coefficient extrema attributes for AVO analysis are proposed and the relations between the extrema position and amplitude, average velocity ratio across the interface, and shear wave reflection coefficient are derived. The extrema position is a monotonically decreasing function of average velocity ratio, and the extrema amplitude is a function of average velocity ratio and shear wave reflection coefficient. For theoretical models, the average velocity ratio and shear wave reflection coefficient are inverted from the extrema position and amplitude obtained from fitting a power function to converted wave AVO curves. Shear wave reflection coefficient sections have clearer physical meaning than conventional converted wave stacked sections and establish the theoretical foundation for geological structural interpretation and event correlation. 'The method of inverting average velocity ratio and shear wave reflection coefficient from the extrema position and amplitude obtained from fitting a power function is applied to real CCP gathers. The inverted average velocity ratios are consistent with those computed from compressional and shear wave well logs.
机译:基于描述密度和压缩波速度之间的关系的经验加工程序方程,提出了AVO分析的转换波反射系数极值属性,界面的极端位置和幅度平均速度比之间的关系,以及剪切波反射系数派生。极值位置是平均速度比的单调下降函数,极值幅度是平均速度比和剪切波反射系数的函数。对于理论模型,平均速度比和剪切波反射系数从拟合功率函数的极值位置和幅度反转到转换的波AVO曲线。剪切波反射系数部分具有比传统的转换波堆叠部分更清晰的物理意义,并建立地质结构解释和事件相关性的理论基础。 “从拟合功率函数获得的extrema位置和剪力波反射系数的反相速度比和剪切波反射系数的方法应用于真实的CCP集。倒置的平均速度比与从压缩和剪切波阱日志计算的那些一致。

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