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Seismic inversion for organic richness and fracture gradient in unconventional reservoirs: Eagle Ford Shale, Texas

机译:非常规油藏有机质富集和裂缝梯度的地震反演:德克萨斯州Eagle Ford页岩

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摘要

A method using Eagle Ford organic shale from Texas predicts key unconventional reservoir properties, total organic carbon (TOC), and fracture pressure gradient (FG). Applying pet-rophysical and rock-physics models from previous work to the available well-log data generates the required logs for calibration, i.e., shear sonic, TOC, organic porosity, and saturation. Prestack seismic data can be evaluated using synthetic forward modeling and can be conditioned further to improve AVO response. Simultaneous prestack inversion to derive acoustic-impedance (AI) and shear-impedance (SI) volumes can be run, and TOC can be derived from those volumes by linear interpolation. Fracture gradient (which also can be thought of as "frackabil-ity") is related directly to Poisson's ratio and effective stress and can be estimated from elastic properties. The fracture gradient is related nonlinearly and inversely to TOC, i.e., assuming laterally and vertically homogeneous pore-pressure distribution inside the spatially limited block of the Eagle Ford Shale, higher TOC results in lower FG and hence better frackability.
机译:一种使用得克萨斯州伊格尔福特有机页岩的方法可预测关键的非常规储层性质,总有机碳(TOC)和裂缝压力梯度(FG)。将以前的工作的岩石物理模型和岩石物理模型应用于可用的测井资料,可以生成校准所需的测井资料,即剪切声波,TOC,有机孔隙度和饱和度。叠前地震数据可以使用合成正演模型进行评估,并可以进一步调整以改善AVO响应。可以同时进行叠前反演以导出声阻抗(AI)和切变阻抗(SI)体积,并且可以通过线性插值从这些体积中得出TOC。断裂梯度(也可以被认为是“易碎性”)与泊松比和有效应力直接相关,并且可以根据弹性性质进行估算。裂缝梯度与TOC呈非线性和反向关系,即假设Eagle Eagle页岩的空间受限区块内部横向和纵向均一的孔隙压力分布,较高的TOC导致较低的FG并因此具有更好的压裂性。

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