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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Simulation of Spray Transfer Processes in Electrostatic Rotary Bell Sprayer
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Simulation of Spray Transfer Processes in Electrostatic Rotary Bell Sprayer

机译:静电旋转钟罩式喷雾器中喷雾转移过程的模拟

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A numerical study of the spray transfer processes in an electrostatic rotary bell applicator(ESRB)has been conducted utilizing code for a newly developed simulation code.This code consists of three modularized solvers:a fluid flow solver,a spray dynamics solver,and an electrostatic solver.The development of the code consisted of the following steps.First,the flow solver designed for an unsteady three-dimensional Navier-Stokes equation was developed to simulate the shaping,airflow with the initial condition and the boundary condition supported by experimental data.Second,the particle trajectory solver,which interacts with the airflow by momentum coupling,was developed to apply the spray transport processes.Finally,the electrostatic solver was developed to calculate the electrostatic field within the two phase flow field.The integrated code created by combining those three solvers was then applied to simulate the paint spray transport processes according to the operating conditions of interest.The numerical results show that the spray shape is very sensitive to changes in the charge to mass ratio.The voltage setting is a dominant operating parameter affecting the numerical transfer efficiency.The voltage range studied was 0 kV to 90 kV.In addition,the transfer efficiency decreases as the shaping airflow rate increases.However,a high shaping airflow rate produces a more uniform distribution of spray mass on the target plane.
机译:使用新开发的模拟代码对静电旋转钟形喷头(ESRB)中的喷雾传递过程进行了数值研究,该代码包括三个模块化求解器:一个流体流动求解器,一个喷雾动力学求解器和一个静电求解器该代码的开发包括以下步骤:首先,开发了一种为非稳态三维Navier-Stokes方程设计的流量求解器,以模拟初始条件和边界条件(由实验数据支持)来模拟形状,气流。其次,开发了通过动量耦合与气流相互作用的粒子轨迹解算器,以应用喷雾传输过程。最后,开发了静电解算器以计算两相流场内的静电场。然后使用这三个解算器根据的操作条件模拟涂料喷涂的运输过程。数值结果表明,喷雾形状对电荷质量比的变化非常敏感,电压设置是影响数值传输效率的主要操作参数,研究的电压范围为0 kV至90 kV。随着成形气流速率的增加,传递效率降低。但是,较高的成形气流速率会在目标平面上产生更均匀的喷雾质量分布。

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