Effect of coal suspension concentration and gas-air medium temperature on liquid droplets collisions

A. Islamova, Pavel P. Tkachenko, Stanislav A. Shulyaev
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Abstract

Relevance. Understanding the mechanisms of liquid droplets interaction with each other is important for many industrial and technical applications related to solving a range of problems like slag removal in a high-temperature environment, obtaining components of the desired fraction in the food industry, etc. Aim. Establishment of the main patterns of suspension droplets interaction in a gas-air environment with temperature variation. Methods. Using shadow high-speed video recording, the main patterns of the binary collision of suspensions droplets were determined. The paper introduces the results of experimental studies of the characteristics of collisions of droplets of coal-water suspensions in a gas-air environment with a temperature of 90–120°C. Parameters of the generated droplets: radius 1.0–2.2 mm, velocity 0.5–2.0 m/s. Results and conclusions. The authors have determined the modes of collision of droplets of suspensions (coagulation and separation) and the main characteristics of secondary fragments and constructed the maps of the modes of interaction of drops of suspensions with each other when varying the concentration of solid particles in the suspension, the temperature of the gas-air environment and the time the target drop spent in a gas-air environment with an elevated temperature. The conditions were established for the coagulation of droplets, as well as their intensive secondary grinding to intensify their drying, ignition and combustion in boiler furnaces. It was established that an increase in the temperature of the gas-air environment leads to a significant change in the size and properties of droplets, as well as to the occurrence of oscillatory phenomena in the system. It is substantiated that collision of droplets of suspensions in a gas-air environment with elevated temperature is complex and multi-parametric. Its characteristics depend on a combination of factors (surface tension and liquid viscosity, size and shape of droplets, speed of their movement, density and viscosity of gas-air environment). The authors obtained mathematical expressions to describe the boundaries of the modes of the studied processes and schemes for using the results obtained in order to increase the efficiency of the corresponding technological processes.
煤悬浮液浓度和气-气介质温度对液滴碰撞的影响
相关性。了解液滴之间的相互作用机理对许多工业和技术应用都非常重要,这些应用涉及解决一系列问题,如在高温环境中除渣、在食品工业中获得所需组分等。目标确定悬浮液滴在温度变化的气-气环境中相互作用的主要模式。方法。利用阴影高速视频记录,确定悬浮液滴二元碰撞的主要模式。本文介绍了煤-水悬浮液液滴在温度为 90-120°C 的气体-空气环境中碰撞特征的实验研究结果。生成液滴的参数:半径 1.0-2.2 毫米,速度 0.5-2.0 米/秒。结果和结论。作者确定了悬浮液液滴的碰撞模式(凝结和分离)以及二次碎片的主要特征,并绘制了当悬浮液中固体颗粒的浓度、气体-空气环境的温度以及目标液滴在温度升高的气体-空气环境中停留的时间发生变化时,悬浮液液滴相互之间的相互作用模式图。确定了液滴凝结的条件,以及对液滴进行强化二次研磨以加强其在锅炉炉膛中的干燥、点火和燃烧的条件。实验证明,气-气环境温度的升高会导致液滴的大小和性质发生显著变化,并在系统中产生振荡现象。研究证实,悬浮液液滴在温度升高的气体-空气环境中的碰撞是复杂和多参数的。其特征取决于多种因素(表面张力和液体粘度、液滴的大小和形状、运动速度、气-气环境的密度和粘度)。作者获得了描述所研究过程模式边界的数学表达式,以及利用所获结果提高相应技术过程效率的方案。
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