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Single Step Matrix Acidising With HF—Eliminating Preflushes Simplifies the Process,Improves the Results

机译:HF进行单步基质酸化—消除预吹扫简化了工艺,改善了结果

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For over 50 years, mixtures of hydrochloric and hydrofluoric acids have been used for the removal of near-wellbore damage in sandstone formations. Such mixtures dissolve many siliceous minerals, including clays and quartz fines, the materials most frequently associated with particulate plugging of the formation pores. Unfortunately, the dissolution of these minerals is not a simple process and various chemical reactions can result in the generation of voluminous solid precipitates or colloidal gels. The appearance of such precipitates in the near-wellbore, can ultimately cause further formation damage and negate the benefit of the acid treatment. Other byproducts can be formed in sandstones containing carbonate minerals that react with acid and fluoride ions to produce the very insoluble calcium fluoride, CaF2, which is another potential source of formation damage. For this reason, traditional HCl:HF matrix treatments in sandstone formations are always preceded by a preflush, usually consisting of HCl to dissolve these carbonates. This approach is not always successful and adds to the complexity of the operation. The situation is worse in multistage treatments, which traditionally involve many repeat stages of preflush, main HF-stage, overflush and diverter. In such situations, it is difficult to ensure that the correct acid stage is always entering the appropriate zone and encountering the appropriate mineralogy. The result can be poor zonal coverage, poor damage removal, creation of unexpected damage due to acid/rock incompatibilities and, ultimately, poor stimulation results. This paper presents the results of a new acidising technique that eliminates the need for preflushes, across a wide range of mineralogies. It describes the background to this approach and reviews the results of laboratory testing and field treatments. It concludes with a matrix acidising methodology that can improve logistics, reduce cost and improve results while, simultaneously, making treatments easier to implement and control, at the field level.
机译:50多年来,盐酸和氢氟酸的混合物已用于去除砂岩地层中的近井眼损伤。这样的混合物溶解了许多硅质矿物,包括粘土和石英细粉,这些材料最常与地层孔隙的颗粒堵塞有关。不幸的是,这些矿物质的溶解不是一个简单的过程,各种化学反应会导致大量固体沉淀物或胶体凝胶的产生。这种沉淀物在近井眼中的出现最终会导致进一步的地层损害,并抵消酸处理的好处。其他副产物可能会在含有碳酸盐矿物的砂岩中形成,这些碳酸盐矿物会与酸和氟离子发生反应,产生非常不溶的氟化钙CaF2,这是造成地层破坏的另一潜在原因。由于这个原因,在砂岩地层中传统的HCl:HF基质处理总是要进行预冲洗,通常由HCl组成,以溶解这些碳酸盐。这种方法并不总是成功的,并且增加了操作的复杂性。多阶段处理的情况更糟,传统上涉及许多重复的预冲洗,主HF阶段,过冲洗和分流。在这种情况下,很难确保正确的酸阶段始终进入适当的区域并遇到适当的矿物学。结果可能是不良的区域覆盖,不良的破坏去除,由于酸/岩石不相容性造成的意外破坏,以及最终不良的刺激结果。本文介绍了一种新的酸化技术的结果,该技术消除了多种矿物学中对预洗液的需求。它描述了这种方法的背景,并回顾了实验室测试和现场处理的结果。它以基质酸化方法作为结束语,该方法可以改善物流,降低成本并改善结果,同时使现场处理更易于实施和控制。

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