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Finite Element Numerical Simulation Research on Fractured Horizontal Well's Productivity

机译:有限元数值模拟研究骨折水平井生产力

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Conventional productivity research method of fractured horizontal wells doesn't meticulously describe the seepage characteristics of the near wellbore area. Based on the similarity of seepage field and temperature field, and ANSYS finite element software platform, this paper conducts the simulation calculation of the fractured horizontal wells' productivity, shows the flow of near wellbore area, and analyzes the factors affecting the productivity on fractured horizontal well by using the heat flow field model in the ANSYS software platform. The results show that the larger the angle between fractures and horizontal wells, the higher the production. It is necessary to place the fractures stagger to the greatest extent, and the fracture spacing should be extended as much as possible in actual production. This optimization design of fractured horizontal well has a certain role in guiding.
机译:裂缝水平井的常规生产力研究方法不会细心地描述近井眼区域的渗流特性。基于渗流场和温度场的相似性,以及ANSYS有限元软件平台,该论文进行了骨折水平井的生产率的仿真计算,显示了井眼区域的流动,并分析了影响水平破裂的生产率的因素通过在ANSYS软件平台中使用热流场模型。结果表明,裂缝和水平井之间的角度越大,生产越高。有必要将骨折错开在最大程度上,并且应在实际生产中尽可能地延长裂缝间距。这种裂缝水平井的优化设计在引导方面具有一定的作用。

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