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Experimental Evaluation of Guar Fracture Fluid Filter Cake Behavior

机译:瓜尔骨折液体滤饼行为的实验评价

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Guar gum and its derivatives have been the most commonly used polymers to increase the viscosity of fracturing fluids. However, the conductivity of many fractures created with guar-based polymers is low because of residual unbroken polymer gel remaining in the fracture. This residue can cause permeability impairment in the proppant pack resulting in low fracture conductivity and decreased effective fracture length. In this study, we experimentally evaluated two important aspects of the gel damage process - the thickness of the polymer gel filter cake that is created as fracture fluid filtrate leaks off into the formation, and the yield stress of the concentrated polymer gel that accumulates in the fracture. The thickness of the filter cake created during the leakoff process was measured as a function of the polymer loading and the volume of leakoff. We created the filter cake following the procedure described by Ayoub et al. (2006), then measured the filter cake thickness with a precise laser profilometer. We found that the filter cake thickness varied linearly with leakoff volume, meaning that the gel concentration factor is constant for this guar polymer fluid. The concentrated polymer filter cakes created by leakoff behave rheologically as Herschel-Bulkley fluids having a yield stress. The yield stress of this material is a critical parameter influencing whether or not the gel can be removed from the fracture. We measured the yield stress of borate-crosslinked guar polymer fracture fluids at concentrations up to 200 lb/mgals using a unique flat plate device. The yield stresses of the polymer filter cakes were found to depend strongly on the concentration of both polymer and breaker.
机译:瓜尔胶及其衍生物是最常用的聚合物,以增加压裂液的粘度。然而,由于残留的不间断的聚合物凝胶残留在骨折中,许多用瓜尔基聚合物产生的许多裂缝的导电性低。该残余物可引起支撑剂包装中的渗透性损伤,导致低断裂导电性并降低有效的裂缝长度。在这项研究中,我们通过实验评估了凝胶损伤过程的两个重要方面 - 聚合物凝胶滤饼的厚度,其产生的裂缝滤液滤液滤除成形成,以及积聚在的浓缩聚合物凝胶的屈服应力断裂。在泄漏过程中产生的滤饼的厚度作为聚合物负载和泄漏量的函数测量。我们在Ayoub等人描述的过程之后创建了滤饼。 (2006),然后用精确的激光型计测量滤饼厚度。我们发现滤饼厚度随泄漏体积而线性变化,这意味着该瓜尔聚合物流体的凝胶浓度因子是恒定的。由于具有屈服应力的Herschel-Bulkley流体,由泄漏产生的浓缩聚合物过滤饼表现为流变。该材料的屈服应力是影响凝胶是否可以从骨折中除去的关键参数。我们使用独特的平板装置测量了浓度高达200磅/mgAls的硼酸盐交联的瓜尔聚合物骨折流体的屈服应力。发现聚合物过滤饼的屈服应力强烈依赖于聚合物和断路器的浓度。

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