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首页> 外文期刊>Journal of Colloid and Interface Science >Evolution of surface area-to-volume ratio for a water meniscus evaporating between contacting silica spheres
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Evolution of surface area-to-volume ratio for a water meniscus evaporating between contacting silica spheres

机译:接触二氧化硅球之间蒸发的水弯月面的表面积与体积之比的变化

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An experimental investigation was performed under isothermal conditions to quantify the rate of evaporation of water from a receding pendular meniscus connecting two silica spheres. Optically based measurements were used to determine the relevant meniscus dimensions, and the meniscus was modeled using a toroidal approximation. The rate of change of meniscus surface area and volume was then predicted using mathematical modeling software. The results demonstrated that once the meniscus transitioned from a relatively flat surface to one with an increasing radius of curvature, the rate of change of the ratio of surface area-to-volume was relatively constant over the range of water contents that were observable using the optical investigation techniques implemented in this study. Comparison of the flux of water from the meniscus surface demonstrated that the evaporation of bound water was four orders of magnitude slower than evaporation from a free water surface.
机译:在等温条件下进行了一项实验研究,以量化水从连接两个硅胶球的后弯弯月面蒸发的速率。基于光学的测量用于确定相关的弯液面尺寸,并且使用环形近似对弯液面进行建模。然后使用数学建模软件预测弯液面表面积和体积的变化率。结果表明,一旦弯液面从相对平坦的表面过渡到曲率半径增大的表面,则表面积与体积之比的变化率在使用该方法可观察到的水含量范围内相对恒定。在这项研究中实施的光学调查技术。比较来自弯月面的水通量,可以看出结合水的蒸发比自由水面的蒸发慢四个数量级。

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