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Research on numerical method for evaluation of vertical well volume fracturing effect based on production data and well test data

机译:基于生产数据和井测试数据评估垂直井体积压裂效果的数值方法研究

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Volume transformation technology has become a key technology for developing low-permeability/tight oil and gas reservoirs. Evaluating the post-fracturing effect is very important for the development plan formulation and fracturing plan evaluation. In this paper, the vicinity of the main fracture is divided into the main fracture zone and the secondary fracture zone. The main fracture with infinite conductivity and the branch fracture with increased permeability are used to describe the transformation area. Based on this physical model, a numerical model considering the nonlinear seepage characteristics of the reservoir, stress sensitivity, wellbore storage and skin effects was established. Based on this numerical model, a comprehensive evaluation method for the fracturing effect of volume modification of vertical wells based on well test data and production data was established and this method was applied to three typical vertical wells. The results show that conventional vertical fracturing vertical wells can only form a single primary fracture and the range of equivalent permeability increase is very small. Volume fracturing can form a fracture network composed of primary fractures and secondary fractures, and increase the equivalent permeability of the fracture network area. The fracture half-length, equivalent permeability and reconstruction area of the volume fracturing well are dynamically changing and gradually decrease with the increase in production time and the fracturing effect becomes weak until it fails.
机译:体积变换技术已成为开发低渗透/拧紧油气和燃气藏的关键技术。评估压裂后效应对于开发计划配方和压裂计划评估非常重要。在本文中,主要骨折附近分为主骨折区和二次裂缝区。使用具有无限电导率的主要骨折和具有增加的渗透性的分支骨折来描述转化区域。基于该物理模型,建立了一种数值模型,考虑了储层的非线性渗流特性,应力敏感性,井眼储存和皮肤效果。基于该数值模型,建立了基于井试验数据和生产数据的垂直井的体积修饰的压裂效果的综合评价方法,将该方法应用于三个典型的垂直孔。结果表明,常规的垂直压裂垂直孔只能形成单一的初级骨折,并且等效渗透率的范围非常小。体积压裂可以形成由初级骨折和次级骨折组成的骨折网络,并增加骨折网络区域的等同渗透性。体积压裂井的裂缝半长,等效渗透性和重建区域具有动态变化,随着生产时间的增加而逐渐降低,压裂效果变弱,直至其失效。

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