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A Novel Emulsified Acid for Deep Wells Stimulation: Rheology, Stability, and Coreflood Study

机译:深井刺激的新型乳化酸:流变,稳定性和核心普遍研究

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The main objective of matrix acidizing is to create deep channels(wormholes) that bypass the damaged zone around the wellbore, which eventually, will increase the productivity or injectivity of the well. HCl- diesel emulsified acid is used to achieve that goal as well as other objectives such as prevention of tubing corrosion. The cost of HCl-emulsified acid could be lower by reducing the cost of either the surfactant (emulsifier) or the continuous phase (diesel). Hence, in this study, a low-cost, more efficient emulsified acid is proposed, with cheaper solid stabilizer (nanoparticle) instead of surfactant, and less expensive continuous phase; waste oil instead of diesel. Rheology, stability and coreflooding experiments were performed at high-pressure high-temperature (HPHT) of a typical reservoir conditions in the Middle East. This study addresses the feasibility of a novel waste oil emulsified acid system in acid stimulation treatment. In particular, rheology and stability of the emulsion and reactivity with limestone reservoir rock at HPHT were investigated. The reactivity was carried out through a series of core flow experiments at HPHT and compared with the conventional diesel emulsified acid. Stability experiments were conducted at 375 ?F. Coreflood experiments were conducted using Indiana limestone 12″ cores and 1.5 in diameter. The initial permeability of the cores was in the range of 2-4 md. The pressure and temperature were 3000 psi and 275 ?F, respectively. Four injection rates were used 0.5, 2, 5, and 10 ml/min. For better comprehension for resulted wormhole characteristic from both stimulation fluids under investigation, the CT-scan image for the Indiana limestone cores after injection of both waste oil and diesel emulsified acids were performed and analyzed through a high resolution imaging and visualization software. From the laboratory results, the novel waste oil emulsified acid system showed a good potential as a stimulation fluid. For instance, it achieved lower pore volume of acid to break through (PVBT) compared to both conventional diesel emulsified acid and plain HCl. Moreover, diesel emulsion presented a better performance at lower injection rates whereas waste oil emulsion performed superiorly at higher rates . Thisindicates that, diesel emulsion is still better in terms of stimulation efficiency, however, waste oil emulsified acid still could be recommended in acid stimulation since it has low cost and acceptable performance. Furthermore, CT scan analysis shows that waste oil emulsified acid was capable of achieving narrow, branch-free, and deep wormhole which are the desired characteristic for any potential stimulation fluid. The novelty of this work comes from the fact that waste oil emulsified acid performance for carbonate acid stimulation has not been addressed before and hence this work to fill in the gap.
机译:基质酸化的主要目的是产生绕过井筒周围受损区域的深通道(虫洞),最终将增加井的生产率或注射性。 HCl-柴油乳化酸用于达到该目标以及其他目的,例如防止管腐蚀。通过降低表面活性剂(乳化剂)或连续相(柴油)的成本,可以降低HCl-乳化酸的成本。因此,在该研究中,提出了低成本,更高效的乳化酸,其具有更便宜的固体稳定剂(纳米颗粒)代替表面活性剂,较便宜的连续相;废油代替柴油。在中东典型的储层条件的高压高温(HPHT)下进行流变学,稳定性和核心全核实验。本研究解决了新型废油乳化酸系统在酸刺激处理中的可行性。特别地,研究了HPHT在HPHT的乳液的流变和与石灰石储层岩石的反应性的流变和稳定性。通过HPHT的一系列核心流实验进行反应性,与常规柴油乳化酸相比。稳定性实验在375°F中进行。 CoreFlood实验是使用印第安纳石灰石12“直径的1.5芯进行的。核心的初始渗透率在2-4 md的范围内。压力和温度分别为3000psi和275°F。使用0.5,2,5和10mL / min的四个注射率。为了更好地理解从正在研究的刺激流体中获得导致的蠕虫孔特性,通过高分辨率成像和可视化软件进行,通过高分辨率成像和可视化软件进行印第安纳石灰石核的CT扫描图像。从实验室结果中,新型废油乳化酸系统显示出良好的刺激液。例如,与常规柴油乳化酸和普通HCl相比,它达到了较低的酸酸以突破(PVBT)。此外,柴油乳液在较低的注射率下呈现更好的性能,而废油乳液以更高的速率进行。鉴于刺激效率而言,柴油乳液仍然可以更好,仍然可以在酸刺激中推荐废油乳化酸,因为它具有低成本和可接受的性能。此外,CT扫描分析表明废油乳化酸能够实现窄,分支和深虫洞,这是任何潜在刺激流体的所需特征。这项工作的新颖性来自于之​​前尚未解决碳酸盐酸刺激的废油乳化酸性的性能,因此这项工作填补了差距。

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