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Study of Dust Removal by Standing Wave Electric Curtain for Application to Solar Cells on Mars

机译:常设波电动窗帘应用于太阳能电池的灰尘去除

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Multi-phase electric curtains generate traveling-waves which can lift and convey charged particles. We consider here single phase electric curtains that create a standing wave but, nevertheless, in certain conditions can expel the powder deposited above it. We present results of experiments performed in atmospheric air as well as in carbon dioxide for electrodes coated with an insulating material and for two powders under various pressures down to that existing on Mars (p = 7 mbar). In air (p = 1 bar), a part of the powders is put into motion when raising the applied voltage. Under high enough gas pressure, the process becomes efficient and leads eventually to the deposited powder being totally expelled from the stressed zone only when there are discharges (dielectric barrier discharge -DBD) in the gas just over the surface of the insulating layer. The powder removal becomes more and more difficult when p is lowered. Below a pressure threshold, there is no total removal of deposited powder. For gas pressure around 7 mbar, a good powder removal requires a distance between axes of adjacent electrodes lower than 1 mm. The dust removal capability also depends on the size of the particles. When putting Mars dust simulant using a brush having an agglomeration effect, the removal is often satisfactory. But when injecting the same powder into the vessel under reduced pressure, the resulting layer of fine particles remains unperturbed by the action of electric field and DBDs. These observations are discussed in the light of the basic forces acting on particles.
机译:多相电窗帘产生行驶波,可以提升和传送带电粒子。我们考虑到这里的单相电窗帘,营造出常设波,但在某些条件下,可以将粉末放置在其上方沉积。我们呈现在大气空气中进行的实验结果以及涂有绝缘材料的电极的二氧化碳,并且在MAR上存在的各种压力下两种粉末(P = 7毫巴)。在空气中(P = 1巴),在提高施加的电压时,将粉末的一部分投入运动。在足够高的气体压力下,该方法最终变得有效,并且最终导致沉积的粉末,仅当在绝缘层的表面上的气体中有放电(介电阻挡排出-DBD)时,沉积的粉末完全被排出。当P降低时,粉末去除变得越来越困难。低于压力阈值,没有完全除去沉积的粉末。对于大约7毫巴的气体压力,良好的粉末去除需要在低于1mm的相邻电极轴之间的距离。除尘能力还取决于颗粒的尺寸。当使用具有聚集效应的刷子将火星灰尘模拟剂放入时,去除通常令人满意。但是,当在减压下将相同的粉末注入容器时,通过电场和DBD的作用,所得到的细颗粒层保持不受干扰。根据作用于颗粒的基本力讨论这些观察结果。

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