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Calibration of Gardner coefficient for density–velocity relationships of tertiary sediments in Niger Delta Basin

机译:尼日尔三角洲盆地第三纪沉积物密度-速度关系的Gardner系数标定

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The relationships between density and velocity are important in many geological analyses that involve rock property parameters. However, the accuracy of the results is often limited when there is a verbatim application of generalized rock property relationships. Many studies in the Niger Delta Basin suffer from this limitation. As a way forward, well logs in the Niger Delta were used to derive lithology-specific coefficients that can be applied in density–velocity transforms that make use of the Gardner equation. Whereas the default coefficient (α) and exponent (β) in the original Gardner equation are 0.31 and 0.25, respectively, fitting the Gardner curve to local data results in a coefficient value of 0.33 and 0.29 for shales and sands, respectively, when the exponent is kept at the default value. Comparing measured density data with estimates obtained from sonic velocities using the original Gardner equation gives a regional mean absolute deviation of 0.13?g/cc while those of the newly derived local coefficients do not exceed 0.05?g/cc giving an improvement of over 60% in the accuracy of estimated rock properties.
机译:在涉及岩石属性参数的许多地质分析中,密度和速度之间的关系很重要。但是,当逐字应用广义岩石属性关系时,结果的准确性通常受到限制。尼日尔三角洲盆地的许多研究都受到这一限制。作为一种向前发展的方法,尼日尔三角洲的测井曲线被用来导出特定于岩性的系数,该系数可应用于利用Gardner方程进行的密度-速度转换中。原始Gardner方程中的默认系数(α)和指数(β)分别为0.31和0.25,将Gardner曲线拟合到局部数据后,页岩和砂岩的系数值分别为0.33和0.29保持默认值。使用原始的Gardner方程将测得的密度数据与从声速获得的估计值进行比较,得出区域平均绝对偏差为0.13?g / cc,而新得出的局部系数的绝对偏差不超过0.05?g / cc,则改善了60%以上估算的岩石特性的准确性。

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