Effect of Liquid Viscosity and Surface Tension on the Spray Droplet Size and the Measurement Thereof
سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 232
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شناسه ملی سند علمی:
JR_JAFM-17-12_010
تاریخ نمایه سازی: 27 مهر 1403
چکیده مقاله:
This investigation focuses on the impact of liquid properties—viscosity, surface tension—and air pressure on the Sauter Mean Diameter (SMD) of atomization sprays. Utilizing a twin-fluid atomizer, the study resulted in derived equations that quantify these effects across a spectrum of liquid behaviours, with an emphasis on both viscous and non-viscous liquids. The derivation process for viscous liquids yielded equations showcasing an average deviation of ۱.۳۲% from experimentally observed SMD values, validated across a dataset of ۲۵۰ experimental trials. These trials involved a total of ۱۸,۰۰۰ droplets analysed, with a standard error of ۰.۰۲%, spanning a liquid viscosity range of ۳x۱۰-۳ to ۲۰x۱۰-۳ kg/(m.s), and air pressures from ۵۰ to ۳۰۰ kPag. For non-viscous liquids, defined by a liquid viscosity threshold of < ۳x۱۰-۳ kg/(m.s), the equations revealed a higher average deviation of ۱.۵۱% from the experimental SMD. These runs included the analysis of ۱۹,۶۰۰ droplets across liquid surface tensions from ۲۰x۱۰-۳ N/m to ۷۲.۸x۱۰-۳ N/m, with a standard error of ۰.۰۳%. This distinction highlights the significant influence of surface tension in shaping the atomization outcomes for these liquids. A quantitative discovery of this research is how a ۱۰% increase in viscosity for viscous liquids correlates to a substantial ۳۳% increase in SMD, impacting around ۱۰,۵۰۰ droplets per viscosity level, with an observed standard deviation of ۰.۱۵% across viscosity measurements. This emphasizes the dominance of viscosity in influencing atomization dynamics for viscous liquids. Conversely, for non-viscous liquids, a ۱۰% increase in surface tension translates to a ۴۵% increase in SMD, affecting approximately ۱۱,۲۰۰ droplets per surface tension category, with a standard deviation of ۰.۱۸% in surface tension measurements. Moreover, this study pioneers the introduction of a particle tracking code, designed for high-speed camera frames, enabling the analysis of over ۱۰,۰۰۰ droplets per experimental run, summing up to more than ۲۸۰,۰۰۰ droplets analysed across all trials, with an overall precision rate of ۹۹.۵%. This novel technique enhances system performance by providing highly accurate and real-time droplet size distribution data, which is critical for optimizing atomization processes in industrial applications. In comparison with state-of-the-art studies, this research offers a comprehensive analysis of the combined effects of viscosity, surface tension, and air pressure on SMD, providing new insights and validated predictive models. The contributions of this work lie in its detailed quantitative results and the introduction of advanced measurement techniques, which together represent a significant advancement in the field of atomization.
کلیدواژه ها:
Viscosity Surface Tension Air Pressure Sauter Mean Diameter (SMD) Twin ، Fluid Atomizer
نویسندگان
N. Chideme
Department of Chemical Engineering, University of Pretoria, Gauteng, ۰۰۲۸, South Africa
P. de Vaal
Department of Chemical Engineering, University of Pretoria, Gauteng, ۰۰۲۸, South Africa
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