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Three-dimensional structural modeling of a low permeability reservoir in the Banqiao formation of the Maxi Oilfield

机译:马克西油田板桥组低渗透油藏三维结构模拟

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This paper presents a three-dimensional geological modeling method for low permeability reservoirs based on core, logging, seismic, and dynamic data. Matrix and fractures are two types of reservoir space. This method includes two-step modeling methods, and different methods are used to establish a matrix model and fracture model. As a low permeability reservoir, Maxi Oilfield has entered the high water cut stage, and developing a precise three-dimensional structural model that can reflect the spatial distribution of the reservoir is an urgent task. First, the gravity flow channel deposition was determined by core observations and the characteristics of gravity flow reservoirs are described. On this basis, a three-dimensional quantitative geological model of the matrix is established using the sequential indicator simulation. The ant-tracking technique is used to identify the fracture development in Maxi Oilfield, and two groups of fractures, 50°–100° in an NE direction and 30°–35° in an NE direction, are identified as the main reservoirs. The discrete fracture distribution model is established deterministically, and then, the fracture model is modified by the distribution of fractures reflected comprehensively by the water flooding front, microseismic, and dynamic data. This three-dimensional structural model can guide the development of water injection wells in Maxi Oilfield.
机译:本文提出了一种基于岩心,测井,地震和动态数据的低渗透油藏三维地质建模方法。基质和裂缝是两种储集空间。该方法包括两步建模方法,并且使用不同的方法来建立矩阵模型和断裂模型。作为低渗透油藏,马克西油田已进入高含水阶段,开发能够反映油藏空间分布的精确三维结构模型是当务之急。首先,通过岩心观测确定了重力流通道的沉积,并描述了重力流储层的特征。在此基础上,利用序贯指标模拟方法建立了三维三维定量地质模型。蚂蚁追踪技术用于识别马克西油田的裂缝发育,并且确定了两组裂缝,即NE方向上的50°–100°和NE方向上的30°–35°的裂缝是主要的储层。确定性地建立离散裂缝分布模型,然后通过注水锋,微地震和动态数据综合反映的裂缝分布来修改裂缝模型。该三维结构模型可以指导马克西油田注水井的开发。

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