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Numerical and experimental study of the drying of bi-component droplets under various drying conditions

机译:不同干燥条件下双组份液滴干燥的数值与实验研究

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This paper presents a combined experimental and numerical study of the evaporation and solid layer formation of single bi-component mannitol-water droplets in hot air. Experimentally, the process of droplet evaporation and drying is studied in a custom-built acoustic levitator. The experimental results are compared with numerical simulations of spherically symmetric bi-component droplets in an unsteady, one-dimensional configuration. The model includes evaporation and solid layer formation. This approach enables the comparison of the temporal variation of the droplet size and the porosity, which are related to the final particle sizes. The study is performed for various drying conditions and initial droplet sizes as well as compositions of the droplets. The objective of this paper is the derivation and validation of a suitable model to predict the properties of spray-dried mannitol particles, depending on their drying conditions. A design of experiments (DoE) is used to define suitable drying conditions and to analyze the results. The study includes initial droplet diameters varying from 350 μm to 550 μm and initial mannitol mass fractions in water droplets ranging from 5% to 15%. The surrounding air temperature is varied from 80℃ to 120 ℃. Additionally, different relative humidity of the surrounding air between 1% and 7.5% is studied. Based on the DoE, correlations for results from both experiments and simulations including the temporal evolution of the droplet surface area and the final particle size are derived and discussed. Major influences are identified that dominate particle drying characteristics.
机译:本文结合实验和数值研究了热空气中单双组分甘露醇水滴的蒸发和固体层形成。实验上,在定制的声悬浮器中研究了液滴蒸发和干燥的过程。将实验结果与非对称一维结构中球对称双组分液滴的数值模拟进行了比较。该模型包括蒸发和固体层形成。这种方法能够比较与最终粒径有关的液滴尺寸和孔隙度随时间的变化。该研究针对各种干燥条件和初始液滴尺寸以及液滴组成进行。本文的目的是根据喷雾干燥甘露醇颗粒的干燥条件,推导和验证合适的模型来预测喷雾干燥的甘露醇颗粒的性质。实验设计(DoE)用于定义合适的干燥条件并分析结果。这项研究包括初始液滴直径在350μm至550μm之间变化,以及水滴中甘露醇的初始质量分数在5%至15%之间。周围空气温度在80℃至120℃之间变化。另外,研究了周围空气在1%和7.5%之间的不同相对湿度。基于DoE,得出并讨论了实验和模拟结果的相关性,包括液滴表面积的时间演变和最终粒径。确定了影响颗粒干燥特性的主要因素。

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