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HORIZONTAL WELL PERFORMANCE FLOW SIMULATION CFD-APPLICATION TO MODEL NEW PEROFORATION AND FARCTURATION OF TIGHT AND SHALE RESRVOIR

机译:横向井性能流动模拟CFD应用于模拟新的奇异和胸部胸部的胸部

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An understanding of flow along horizontal wells can be important for reservoir management, specially: Tight and shale reservoir. As the completed length in such wells is considerably larger than that in conventional vertical wells, the flow field inside the wellbore can have a significant impact on the overall production characteristics of an oil reservoir. Flow in a well-bore is different from conventional pipe flow due to the presence of wall inflow (as in production wells) or outflow (as in injection wells), and this affects the wall friction, acceleration, and flow patterns inside the pipe. To better understand wellbore flow, Computational Fluid Dynamics (CFD) simulation has been used. A significant advantage of such simulation, besides the fact that they could potentially replace actual experiments, is that they offer a large amount of information on the turbulent velocity and pressure fields. One of the applications of such information is the development of new techniques in the perforation technology and fracturation of shale and tight reservoir, based upon FLUENT (a commercial CFD software) simulations.
机译:沿水平井流的理解可以是水库管理很重要,特别是:紧和页岩储层。如在这种井完成的长度比在传统的垂直井大得多,在井筒内的流场可以对油藏的整体生产特性的显著影响。流在一个井孔是从常规管流不同,由于壁流入的存在(如在生产井)或流出(如在注入井),并且这影响了壁的摩擦,加速,和流管内的图案。为了更好地理解井筒流动,计算流体动力学(CFD)模拟已被使用。这种模拟的显著优势,除了这个事实,他们可能取代实际的实验,为他们提供了大量的湍流速度场和气压场的信息。一个这样的信息的应用是在射孔技术和页岩和致密储层fracturation,基于FLUENT新技术(商业CFD软件)模拟的发展。

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