Energy consumption of emulsification processes in small-sized mix apparatuses

N. Shulaev, T. Shulaeva, S. Laponov
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Abstract

There is given in this thesis a general method of calculation of power consumption for emulgation in systems liquid-liquid in small-size mixing devices (rotor-pulsation apparatuses and rotor-disc mixers). This mixing devices, have shown a high efficiency at processing of liquid-liquid systems and are wide using chemical processes. The base of calculation method is an energy ratio to describe of developed turbulent motion, pulsation intensity of which is enough for create of dispersed particles of given size and concentration, which provide a necessary surface of phases contact. It is shown, that in determination of energy consumption it is need to take in account energy dissipation processes, due to viscous friction forces, which have a significant influence at high gradients of turbulent motion. There is obtained a ratio, which connects an angular velocity of rotor rotation of mixing device and a characterized size of dispersed phase particles.There is given an experimental dependencies of consumed power of rotor-disc mixers on rotor rotations number of mixing device and characterized sizes of dispersed particles for systems water-diesel fuel. It was determined, that are decreasing of dispersed particles sizes and in increasing of volumetric flow of processing mixture a value of consumed power increases, and it is related with by increase of energy consumption for creating of interphase surface. It was determined, that a power, consumed by rotor-disc mixer, for emulsion making with averaged dispersion size of particles at range 5-25 mkm, increases by increase of rotation numbers ~n0.37. Comparison of theoretical equations and experimental data have shown adequacy of supposed calculation method of energy consumption.
小型混合装置乳化过程的能耗
本文给出了小型混合装置(转子脉动装置和转子圆盘混合器)中液-液系统仿真耗电量的一般计算方法。这种混合装置在处理液-液系统方面表现出高效率,在化学过程中得到广泛应用。计算方法的基础是描述发展的湍流运动的能量比,其脉动强度足以产生给定大小和浓度的分散颗粒,并提供必要的相接触表面。结果表明,在确定能量消耗时,需要考虑由粘性摩擦力引起的能量耗散过程,粘性摩擦力在湍流运动的高梯度下具有重要影响。得到了混合装置转子旋转角速度与分散相颗粒表征尺寸之间的比值。给出了水-柴油混合系统中转子盘式混合器的功率消耗与混合装置的转子旋转数和分散颗粒的表征尺寸的实验关系。结果表明,随着分散粒径的减小和加工混合物体积流量的增大,所消耗的功率值也随之增大,这与形成界面所消耗的能量的增加有关。结果表明,在颗粒平均分散粒径为5 ~ 25 mkm范围内,转子盘式混合器的乳化功率随着旋转次数的增加而增加~ 0.37。通过理论方程与实验数据的比较,证明了所设想的能耗计算方法的充分性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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