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A Study of Effective Deployment in Ultra-Low-Permeability Reservoirs With Non-Darcy Flow

机译:非达西渗流超低渗油藏有效部署研究

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摘要

Due to the existence of a threshold pressure gradient (TPG) in ultra-low-permeability reservoirs, the peripheral reserves of the wellbore are difficult to deploy effectively. The main problem is that it is hard to ensure that well pattern, well spacing, and drawdown pressure easily and accurately because of the existence of low-velocity non-Darcy flow in such reservoirs. Simple and accurate calculation methods of the problem are most popular with reservoir engineers, so effective deployment calculation methods of ultra-low-permeability reservoirs are presentedin this article. They include control radius calculation, control distance calculation, control area calculation, and control coefficient calculation, which can be directly used in the evaluation of well pattern thickening of developed oilfields and reserves of undeveloped oilfields. Based on theory of fluid mechanics in porous medium considering TPG, the non-Darcy flow mathematic model was established to reveal the characteristics of pressure distribution of ultra-low-permeability reservoirs. According to the analytical solution of non-Darcy radial flow, the relationship between control radius for ultra-low-permeability medium and TPG under different drawdown pressures was established. A calculation method combined with ellipse flow theory for control coefficient is presented, which was used to characterize the producing degree of reserve in a rectangular pattern. The control radius and coefficient of ultra-low-permeability reservoirs can provide a theoretical foundation for reservoir evaluation and development design.
机译:由于超低渗透储层中存在阈值压力梯度(TPG),井筒的外围储量很难有效地利用。主要问题在于,由于这种储层中存在低速非达西流,因此难以轻松,准确地确保井网,井距和井下压力。简单,准确的问题计算方法受到油藏工程师的普遍欢迎,因此,本文提出了有效的超低渗透油藏部署计算方法。它们包括控制半径计算,控制距离计算,控制区域计算和控制系数计算,可直接用于评估已开发油田的井网加厚和未开发油田的储量。基于考虑TPG的多孔介质流体力学理论,建立了非达西渗流数学模型,揭示了超低渗油藏的压力分布特征。根据非达西径向流的解析解,建立了不同压降条件下超低渗透介质控制半径与TPG的关系。提出了一种结合椭圆流理论的控制系数计算方法,用于表征矩形储量的开采程度。超低渗储层的控制半径和控制系数可以为储层评价和开发设计提供理论依据。

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