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首页> 外文期刊>Journal of Petroleum Science & Engineering >On the size-dependent behavior of drop contact angle in wettability alteration of reservoir rocks to preferentially gas wetting using nanofluid
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On the size-dependent behavior of drop contact angle in wettability alteration of reservoir rocks to preferentially gas wetting using nanofluid

机译:基于储层岩石润湿性改变的液压接触角的尺寸依赖性行为,纳米流体优先气体润湿

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摘要

Wettability alteration of rock surfaces toward gas wetting have been recognized as a practical approach for maximizing the production from the gas condensate reservoirs. Most of the reported work in this area applied the so called sessile drop contact angle measurement technique to examine the change in wetting state of a surface. However, the size-dependent wetting behavior of drop which could affect the exact determination of wettability and wettability changes was not well discussed in the previous studies. Therefore, in this work, the size dependency of contact angle for four different liquid-solid-gas systems; i.e., water-calcite-air, water-treated calciteair (nanofluid treated calcite), oil-calcite-air, and oil-treated calcite-air, were investigated. To provide a better understanding of the displacement of reservoir gas and liquid following the wettability alteration process, a dynamic contact angle measurement approach was designed. The effect of drop size and surface roughness on the wetting state of calcite rock samples at the initial and altered condition of wettability was then investigated through experimental and modeling approaches. The surface roughness of calcite samples and drop contact angles were determined using Atomic Force Microscopy and Low bond axisymmetric drop shape analysis method, respectively. Analysis of results demonstrated that size dependency of contact angle imposed an error as high as 22.2 degrees on the measurement of achieved wettability alteration in the case of water-calcite/treated calciteair system. On the basis of calculated pseudo-line tension from the modeling schemes, it was also revealed that the surface roughness had a significant impact on wettability measurements. Both low and high pseudo-line tension values of order 10(-9) and 10(-6) N, respectively, could dictate some level of errors in contact angle measurements. However, high values were supposed to have a considerable degree of importance in gas condensate applications. The results of this study could provide a better understanding of the contact angle measurement experiments for petroleum engineers to evaluate the wettability alteration schemes.
机译:岩石表面朝向气体润湿的润湿性改变已被认为是最大限度地从气体冷凝水储层最大化生产的实用方法。在该区域的大多数报告的工作适用于所谓的术术滴接触角测量技术,以检查表面的润湿状态的变化。然而,在先前的研究中,可能影响可能影响润湿性和润湿性变化的精确测定的液滴的大小依赖性润湿行为并未讨论。因此,在这项工作中,四种不同液体天然气系统的接触角的尺寸依赖性;即,研究了水 - 方解石,水处理的钙质(纳米流体经处理的方解石),油石结石 - 空气和耐油处理的方解石空气。为了更好地了解润湿性改变过程后储层气体和液体的位移,设计了动态接触角测量方法。然后通过实验和建模方法研究了在初始和改变的润湿条件下对方解石岩样上润湿状态对润湿性的润湿状态的影响。利用原子力显微镜和低粘结轴对称滴形分析方法测定方解石样品的表面粗糙度和落叶接触角。结果分析表明,接触角的尺寸依赖性在水 - 方解石/处理过的降钙系统的情况下达到润湿性改变的测量值高达22.2度的误差。在从造型方案中计算出的伪线张力,也揭示了表面粗糙度对润湿性测量产生了重大影响。单位10(-9)和10(-6)n的低和高伪线张力值分别可以决定接触角测量中的一些误差。然而,应该在气体凝结应用中具有相当程度的重要性。该研究的结果可以更好地理解石油工程师的接触角测量实验,以评估润湿性改变方案。

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