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首页> 外文期刊>Journal of Energy Resources Technology >Development of Viscosified Acid-Surfactant Solutions for Oilfield Applications: Rheological Properties
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Development of Viscosified Acid-Surfactant Solutions for Oilfield Applications: Rheological Properties

机译:油田应用粘液酸表面活性剂溶液的研制:流变性能

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Viscosified acids are desired in several oilfield applications such as in acid diversion and acid fracturing operations. The study aimed to delineate the rheological properties of a novel amine type surfactant and viscosified acid-surfactant solutions. The steady shear and dynamic rheological properties were evaluated by varying the surfactant, acid, and salt concentration. Such a study is required to gauge the suitability of the viscosifying agent in acid stimulation jobs. The surfactant solutions without acid showed shear-thinning behavior, whereas those with acid showed a Newtonian plateau over a wide shear rate range before undergoing shear thinning. This means that over a wide shear rate range, the acid-surfactant solutions become independent of applied shear. At low shear rates, the viscosity of the surfactant was higher compared with the surfactant-acid solution. However, at high shear rates, the viscosity of the surfactant was lower compared with the viscosity of the surfactant-acid solution. There was an optimal salt concentration that improved the viscosity and elasticity of the acid-surfactant solutions. Thus, the rheology of the surfactant solution can be improved by adding both acid and salt. The elastic properties of acid-surfactant solutions were also better compared with the elastic properties of pure surfactant. The addition of acid improved the elastic properties of the surfactant solutions. Constant viscosity over a range of shear rate is a suitable application for acid fracturing operations in which the acid leak-off will be minimal due to the high viscosity. Also, brines in most of the carbonate formation consist of high loading of calcium chloride which was found to have a positive effect on the viscosity. Increasing the calcium chloride leads to an increase in viscosity, and then subsequently decreases the viscosity. This shows that the acid and salt concentration plays a role in modifying the rheological properties of the surfactant solutions.
机译:在诸如酸性导流和酸性压裂操作中的几种油田应用中需要粘液酸。该研究旨在描绘新型胺型表面活性剂和粘液 - 表面活性剂溶液的流变性质。通过改变表面活性剂,酸和盐浓度来评估稳定剪切和动态流变性质。需要这种研究来衡量粘液刺激作业中的可粘性剂的适用性。没有酸的表面活性剂溶液显示剪切稀疏行为,而那些酸的溶液在经历剪切稀化之前在宽的剪切速率范围内显示牛顿高原。这意味着在宽剪切速率范围内,酸性表面活性剂溶液变得独立于施加的剪切。在低剪切速率下,与表面活性剂 - 酸溶液相比,表面活性剂的粘度较高。然而,在高剪切速率下,与表面活性剂 - 酸溶液的粘度相比,表面活性剂的粘度降低。有一种最佳的盐浓度,可改善酸性表面活性剂溶液的粘度和弹性。因此,通过添加酸和盐可以改善表面活性剂溶液的流变学。与纯表面活性剂的弹性性能相比,酸性表面活性剂溶液的弹性性能也更好。加入酸改善了表面活性剂溶液的弹性性能。在一系列剪切速率范围内的恒定粘度是酸性压裂操作的合适应用,其中由于高粘度,酸泄漏将是最小的。此外,大多数碳酸盐形成的盐水包括高负荷的氯化钙,该氯化钙被发现对粘度具有积极影响。增加氯化钙导致粘度的增加,然后随后降低粘度。这表明酸和盐浓度在改变表面活性剂溶液的流变性质方面发挥作用。

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