首页> 外文会议>2002 Engineering Technology Conference on Energy, Feb 4-5, 2002, Houston, Texas >THE EFFECT OF SOLID SURFACE ROUGHNESS ON DYNAMIC CONTACT ANGLES IN SOLID-LIQUID-LIQUID SYSTEMS
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THE EFFECT OF SOLID SURFACE ROUGHNESS ON DYNAMIC CONTACT ANGLES IN SOLID-LIQUID-LIQUID SYSTEMS

机译:固液粗糙度对固液体系动态接触角的影响

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The engineering applications of spreading and adhesion phenomena involving fluids on solids are numerous. The adhesive and spreading interactions at the solid-fluid interfaces are well characterized by dynamic contact angles. This study reports on the results of an experimental investigation into the effect of solid surface roughness on dynamic contact angles in solid-liquid-liquid (S-L-L) systems. The experiment involved the use of Wilhelmy Plate apparatus to measure adhesion tension (which is the product of interfacial tension and cosine of the contact angle between the liquid-liquid interface and the solid surface), the DuNuoy tensiometer to measure the liquid-liquid interfacial tension, and a profilometer to characterize the roughness of the solid surfaces used. The components of the solid-liquid-liquid systems studied consisted of: (ⅰ) smooth glass, roughened quartz and an actual rock surface for the solid phase, (ⅱ) normal-hexane and deionized water as the two immiscible liquid phases. The dynamic contact angles (advancing and receding angles) of the three-phase (rock-oil-water) system provide essential information about the wettability of petroleum resrvoirs. The wettability of a reservoir is an important parameter that affects oil recovery in primary, secondary, and enhanced recovery operations. Contact angle measurements on smooth surfaces are generally used to characterize reservoir wettability. However pore surfaces within reservoir rocks are essentially rough and hence it is important to determine the effect of such roughness on measured contact angles. There is very little information in the open literature on the effect of surface roughness on dynamic contact angles in S-L-L systems. In the present work, four levels of roughness of solid surfaces of similar mineralogy (quartz and glass) were tested in hexane-deionized water fluid pair. The advancing and receding contact angles measured at ambient conditions were analyzed for wettability effects. It was found that as surface roughness increased, the dynamic contact angles also increased. The wettability of the rock-oil-water system shifted from weakly water-wet for the smooth glass to intermediate-wet for the roughened surface. The general trends observed in our study were found to be in good agreement with other published results. However, the generally held notion of increasing contact angle hysteresis with increasing roughness appears to be incorrect in solid-liquid-liquid systems. Examined in the present study.
机译:涉及液体在固体上的扩散和粘附现象的工程应用是众多的。固-液界面处的粘合剂和扩散相互作用以动态接触角为特征。这项研究报告了对固体表面粗糙度对固-液-液(S-L-L)系统中动态接触角的影响进行实验研究的结果。该实验涉及使用Wilhelmy Plate装置测量粘附张力(这是界面张力和液-液界面与固体表面之间的接触角的余弦值的乘积),使用DuNuoy张力计测量液-液界面张力,以及用于表征所用固体表面粗糙度的轮廓仪。所研究的固-液-液系统的组成包括:(ⅰ)光滑的玻璃,粗糙的石英和固相的实际岩石表面;(normal)正己烷和去离子水作为两种不混溶的液相。三相(岩石-油-水)系统的动态接触角(前进和后退角)提供了有关石油储层润湿性的基本信息。储层的润湿性是影响一次,二次和增强采油作业中油采收率的重要参数。光滑表面上的接触角测量通常用于表征储层的润湿性。然而,储层岩石内的孔隙表面基本上是粗糙的,因此确定这种粗糙度对所测量的接触角的影响很重要。在公开文献中,关于表面粗糙度对S-L-L系统中动态接触角的影响的信息很少。在目前的工作中,在己烷去离子水流体对中测试了四个相似矿物学(石英和玻璃)固体表面的粗糙度。分析在环境条件下测量的前进和后退接触角的润湿性影响。发现随着表面粗糙度增加,动态接触角也增加。岩石-油-水系统的润湿性从光滑玻璃的弱水变到粗糙表面的中等湿。我们在研究中观察到的总体趋势与其他已发表的结果非常吻合。然而,在固-液-液系统中,通常认为接触角滞后随粗糙度增加而增加的观点似乎是不正确的。在本研究中进行了检查。

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