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Evaporation and transport of non-dilute, multi-component liquid mixtures in porous wicks: Simulation and experimental validation

机译:多孔灯芯中非稀释多组分液体混合物的蒸发和运输:模拟和实验验证

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摘要

Modeling the transport and evaporation of multi-component liquids remains one of the most challenging problems in porous media studies. In this paper, slow isothermal evaporation of a non-dilute multi-component liquid mixture from a cylindrical porous wick made of sintered polymer beads is studied numerically and experimentally. Such wicks are used in several consumer products, such as air-fresheners and insect repellants, for dispensing volatile compounds into air. Since the evaporation rate is much smaller than the rate of capillary-pressure-driven liquid imbibition, the wick is considered fully-saturated while the evaporation from the wick top is modeled as a boundary effect. A volume-averaged model based on the work of Quintard and Whitaker is adapted to set the nonlinear species-transport equations inside the fully-saturated porous wick. Three numerical models with progressively increasing levels of complexity are employed to solve the governing equations in a one-dimensional domain representing the unidirectional, axial flow in a cylindrical wick. The Darcy velocity inside the wick is determined from evaporation rate at the wick-top, which in turn is a function of mole-fractions of all components at the liquid-air interface. Using the proposed numerical models, the evaporated liquid-mass and the composition of liquid mixture within the wick are predicted as functions of time. Results of the simulations are compared with experiments for a non-dilute mixture of decane, dodecane and hexadecane. Good agreement is observed for the three models, especially for the component concentration distributions along the wick, without the use of any fitting parameters. The evaporation rate is found to be a strong function of two model parameters: the porous-medium tortuosity and the air-film thickness at wick top.
机译:在多孔介质研究中,对多组分液体的传输和蒸发进行建模仍然是最具挑战性的问题之一。本文从数值和实验上研究了从稀薄的多孔多孔芯吸取的慢速等温蒸发的非稀释多组分液体混合物。这种灯芯用于多种消费产品中,例如空气清新剂和驱虫剂,用于将挥发性化合物分配到空气中。由于蒸发速率远小于毛细管压力驱动的液体吸收速率,因此棉芯被认为是完全饱和的,而来自棉芯顶部的蒸发被建模为边界效应。基于Quintard和Whitaker的工作的体积平均模型适用于在完全饱和的多孔芯中设置非线性物质传输方程。使用复杂程度逐渐增加的三个数值模型来求解一维域中的控制方程,该域代表圆柱芯中的单向轴向流。灯芯内部的达西速度由灯芯顶部的蒸发速率确定,而蒸发速率又是液-气界面上所有组分的摩尔分数的函数。使用提出的数值模型,可以预测芯内蒸发的液体质量和液体混合物的成分随时间的变化。将模拟结果与癸烷,十二烷和十六烷的非稀释混合物的实验进行比较。在不使用任何拟合参数的情况下,对于这三个模型,尤其是沿芯的成分浓度分布,观察到了很好的一致性。发现蒸发速率是两个模型参数的强函数:多孔介质曲折度和灯芯顶部的气膜厚度。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2011年第26期|p.5216-5230|共15页
  • 作者单位

    Laboratory for Flow and Transport Studies in Porous Media, Department of Mechanical Engineering, University of Wisconsin-Milwaukee, 3200 N. Cramer Street,Milwaukee, Wl 53211, USA;

    Laboratory for Flow and Transport Studies in Porous Media, Department of Mechanical Engineering, University of Wisconsin-Milwaukee, 3200 N. Cramer Street,Milwaukee, Wl 53211, USA;

    Department of Chemistry and Biochemistry, University of Wisconsin-Milwaukee, 3210 N. Cramer Street, Milwaukee, Wl 53211, USA;

    Department of Chemistry and Biochemistry, University of Wisconsin-Milwaukee, 3210 N. Cramer Street, Milwaukee, Wl 53211, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    evaporation; mass transfer; porous media; polymer wick; multicomponent mixture; gas chromatography;

    机译:蒸发;传质;多孔介质;聚合物芯;多组分混合物;气相色谱;

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