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Reservoir Modelling in the Shale Gas Reservoirs Based on Horizontal Wells and Seismic Inversion

机译:基于水平井和地震反演的页岩气水库储层建模

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The seismic vertical resolution is too low to identify the vertical boundary and petrophysical properties of the thin shale layers inside the target precisely. This study focuses on structural and petrophysical modeling of shale reservoirs based on horizontal wells and seismic inversion. Combined seismic trend surface with the well tops on horizontal wells, we calculated the top and bottom surface of the target formation, and obtained the structural surface of each small layer according to the thickness percentage of each layer from few vertical wells. Ultimately, the structural model is made. The horizontal trend of the petrophysical properties can be controlled by the seismic inversion results. The vertical trend of the petrophysical properties can be controlled by well logs. Constricted by the linear combination weighting of the horizontal and vertical trend, the petrophysical model is established. The results show that the trajectory of the horizontal well in the target layer is accurate, and the layers are not intersected. The thickness of each layer is relatively even in plane, which is basically the same as that of the vertical well, indicating the characteristics of shale stable deposition. The discrepancy between the thickness of each layer in the model and those of the vertical wells is very small, especially in the main production layer 1, less than 0.1m. With the linear combination weighting, petrophysical properties show the bimodal distribution in vertical trend, which is in accordance with the regularities of petrophysical distributions from vertical wells, making up for the seismic low resolution in vertical direction. The research shows the fine structural and petrophysical modeling of the thin shale reservoirs, which provide the credible spatial distribution network and petrophysical properties for further modeling.
机译:地震垂直分辨率太低,不能精确地识别薄页岩层的垂直边界和岩石物理特性。本研究侧重于基于水平井和地震反演的页岩储层的结构和岩石物理学建模。组合地震潮流表面与水平孔上的井顶,我们计算了目标形成的顶表面和底表面,并根据每层的厚度百分比从几个垂直孔中获得每个小层的结构表面。最终,结构模型。岩石物理特性的水平趋势可以通过地震反演结果来控制。岩石物理特性的垂直趋势可以通过井的原木来控制。通过水平和垂直趋势的线性组合加权来限制,建立了岩石物理模型。结果表明,目标层中水平阱的轨迹是准确的,并且没有相交。每个层的厚度在平面中相对均匀,这与垂直孔的厚度基本相同,表明页岩稳定沉积的特性。模型中的每层厚度与垂直孔的厚度之间的差异非常小,特别是在主要生产层1中,小于0.1μm。随着线性组合加权,岩石物理特性展示了垂直趋势的双峰分布,这与垂直井的岩石物理分布的规律,垂直方向上的地震低分辨率构成。该研究表明,薄页岩储层的细结构和岩石物理学建模,其为进一步建模提供可靠的空间分布网络和岩石物理性质。

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