首页> 外文会议>ASME joint US-European Fluids Engineering Division summer meeting >NUMERICAL AND EXPERIMENTAL STUDY OF THE EVAPORATION AND SOLID LAYER FORMATION OF A BI-COMPONENT DROPLET UNDER VARIOUS DRYING CONDITIONS
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NUMERICAL AND EXPERIMENTAL STUDY OF THE EVAPORATION AND SOLID LAYER FORMATION OF A BI-COMPONENT DROPLET UNDER VARIOUS DRYING CONDITIONS

机译:两种干燥条件下双组分液滴蒸发和固结层形成的数值和实验研究

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This paper presents a combined experimental and numerical study of the evaporation and solid layer formation of a single bi-component mannitol-water droplet in air. For spherically symmetric droplets, the problem is described mathematically by the unsteady, one-dimensional conservation equations of mass and energy. The effect of the formation of a solid layer at the droplet surface on the droplet evaporation and thermal diffusion rate is included in the present approach. The simulations are validated by comparison with experiments using acoustically levitated droplets. The study includes initial droplet diameters varying from 350 to 450 μm, gas temperatures ranging from 80 to 120 °C, and the initial mannitol mass fraction inside the droplet varies from 0.05 to 0.15. The numerical results are analyzed to identify the occurrence of solid layer formation, and the temporal evolutions of both the droplet size and mass are presented. A parameter study of the initial gas temperature, the initial droplet size, and the initial mannitol mass fraction inside the droplet on droplet evaporation and solid layer formation is presented. The present model accurately captures the initial stages of droplet drying under all conditions investigated.
机译:本文对空气中单个双组分甘露醇-水滴的蒸发和固体层形成进行了组合的实验和数值研究。对于球形对称液滴,该问题通过质量和能量的非稳态一维守恒方程进行数学描述。在本方法中包括在液滴表面上形成固体层对液滴蒸发和热扩散速率的影响。通过与使用声学悬浮液滴的实验进行比较,对模拟进行了验证。该研究包括初始液滴直径从350到450μm不等,气体温度在80到120°C范围内,液滴内部的初始甘露醇质量分数从0.05到0.15不等。分析数值结果以识别固体层形成的发生,并给出液滴大小和质量的时间演变。提出了关于初始气体温度,初始液滴尺寸以及液滴内部蒸发和固体层形成时液滴内部甘露醇初始质量分数的参数研究。本模型准确地捕获了所研究的所有条件下液滴干燥的初始阶段。

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