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Modeling of trajectories in an electrodynamic screen for obtaining maximum particle removal efficiency

机译:在电动筛网中建立轨迹模型以获得最大的颗粒去除效率

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An electrostatic self-cleaning panel for solar collectors is described. An electrodynamic screen is formed by inter-digitated, transparent surface electrodes energized by three-phase, low-frequency ac voltages in the range 5 to 200 Hz and 500 to 1000 V. The resulting electrostatic field wave exerts force on the particles and sweeps them laterally across the panel. Particle trajectories are simulated to help ascertain parameters for maximum dust-removal efficiency. The electric field of the electrodynamic screen is found by a Fourier expansion of Laplace's equation solutions for a surface potential that is periodic in space and time. Trajectories are found for particles of various size and charge, and electrode excitations; these are compared qualitatively to experimental observations. One unexpected result is the chaotic behavior of larger particles which jump sporadically back and forth and only slowly migrate in the direction of the impressed electrostatic surface wave.
机译:描述了一种用于太阳能收集器的静电自清洁面板。一个电动屏幕是由相互交叉的透明表面电极形成的,该表面电极由5到200 Hz和500到1000 V范围内的三相低频交流电压供电。产生的静电场波将力施加到粒子上并对其进行扫掠横向穿过面板。模拟了粒子轨迹,以帮助确定最大除尘效率的参数。电动力学屏幕的电场是通过对空间和时间呈周期性变化的表面电势的拉普拉斯方程解进行傅立叶展开而得到的。可以找到各种尺寸和电荷的粒子以及电极激发的轨迹。将这些定性与实验观察进行比较。一个出乎意料的结果是较大粒子的混沌行为,该粒子偶尔地来回跳跃,并且仅在所施加的静电表面波的方向上缓慢迁移。

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