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New Mechanical and Damage Skin Factor Correlations for Hydraulically Fractured Wells

机译:液压骨折井的新机械和损伤皮肤因子相关性

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Hydraulic fracturing is one of the most common well stimulation techniques. Hence, considerable amount of efforts has been devoted to study their performance under different prevailing conditions. Description of hydraulically fractured wells using the existing commercial reservoir simulators requires the use of very fine grids, which is very cumbersome, costly and impractical. In this work a two dimensional single-well mathematical simulator has been developed, which is based on finite-difference methods, and simulates linear Darcy flow in a hydraulic fractured well. Based on the results of our in-house simulator different correlations have been developed for calculation of fracture (Sf), face damage (SfD), and chocked damage (Sck) skin factors. These formulations benefit from relevant dimensionless numbers expressing the effect of geometry and those used to quantify the extent of damages occurred during fracturing operation. The results indicate that in-house Sf values are more accurate than those available in the literature. SfD, reflecting the reduction of the permeability of the rock close to the fracture, is more realistically captured here when damaged thickness is assumed to decrease linearly towards the tip of the fracture. This is more superior to the uniform thickness assumption made in the literature, which overestimates SfD. It is also shown the available analytical expression for calculation of Sck, which is a reflection of reduction of fracture permeability, overestimate Sck hence, a more realistic correlation has been developed for this purpose. The skin correlations developed here enables the engineers to study the productivity of a fractured well using simple open-hole system. They can also be used for the optimum design of a hydraulic fracture system by minimizing flow resistance for a given fracture volume and fracture permeability. This can be achieved readily by conducting simple derivation of the mathematical expressions of skin formulations presented here.
机译:水力压裂是最常见的油井增产技术之一。因此,努力相当数量一直致力于研究不同当时的条件下,它们的性能。使用现有的商业油藏模拟器水力压裂井的说明要求使用非常精细的网格,这是非常麻烦的,昂贵的和不切实际的。在这项工作中的二维单井数学模拟器已经被开发出来,这是基于有限差分方法,并模拟线性达西在液压压裂井流动。基于我们的内部模拟器不同相关结果已经开发了用于骨折的计算(SF),面部损伤(SFD),和摆满损伤(SCK)皮肤的因素。这些制剂可使用表达几何结构的效应和那些用于量化损害的程度压裂操作过程中发生的相关无量纲数。结果表明,内部SF值比在文献中那些可更准确。 SFD,反映了岩石接近裂缝的渗透性的减少,更实际地这里假定损坏厚度线性地朝向骨折的尖端减小时捕获。这是更优于在文献中,这高估SFD制成均匀的厚度假设。它也示出了用于SCK,这是减少裂缝渗透率中的反射的计算可用的解析表达式,高估Sck的因此,更现实的相关性已被开发用于该目的。这里开发的皮肤相关性,工程师可以研究压裂井使用简单的裸眼系统的生产率。它们还可以通过最小化对于给定的骨折体积和裂缝渗透率的流动阻力用于水力压裂系统的优化设计。这可以很容易地通过这里进行皮肤呈现配方的数学表达式的简单推导来实现。

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