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Effects of contact angle on fingered flow during non-ponding infiltration into dry sand layers

机译:接触角对非响应性渗透到干砂层中指流的影响

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Gravity-driven fingered flow may readily occur in dry sand layers with small capillary force at the same order of magnitude as gravitational force. Capillary force is related to the contact angle. The present study examined the effects of contact angle on fingered flow development, finger size and fingertip velocity during non-ponding infiltration into dry sand layers. For contact angles of 48-87 degrees, an induction zone always formed in the sand layer, and only one finger developed from the induction zone. Fingertip width reached a minimum value when the contact angle was approximately 70 degrees, and the width and velocity of fingertips were negatively correlated. This finding suggests that a contact angle of approximately 70 degrees has a physical significance for fingered flow to determine fingertip velocity and width. In addition, when the contact angle was 91 degrees, the supplied water did not spontaneously penetrate the sand surface; instead, water drops built up on the surface and two fingers directly formed from the surface. This indicates that 90 degrees is indeed the critical contact angle for water repellency and affects fingered flow development during non-ponding infiltration.
机译:重力驱动的指流很容易在毛细作用力小的干砂层中以与重力相同的数量级发生。毛细作用力与接触角有关。本研究研究了接触角对干砂层无响应渗透过程中指状流发育,指状体大小和指尖速度的影响。对于48-87度的接触角,总是在砂层中形成感应区,并且只有一个手指从感应区伸出。当接触角约为70度时,指尖宽度达到最小值,并且指尖的宽度和速度呈负相关。这一发现表明,大约70度的接触角对于指流确定指尖速度和宽度具有物理意义。另外,当接触角为91度时,所供给的水不会自发渗透到沙面中。相反,水滴堆积在表面上,并且两个手指直接从表面形成。这表明90度的确是疏水性的关键接触角,并且会影响非响应性渗透过程中的指状流发展。

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