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Electrostatic forces alter particle size distributions in atmospheric dust

机译:静电力改变大气尘埃中的粒度分布

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Large amounts of dust are lofted into the atmosphere from arid regions of the world before being transported up to thousands of kilometers. This atmospheric dust interacts with solar radiation and causes changes in the climate, with larger-sized particles having a heating effect, and smaller-sized particles having a cooling effect. Previous studies on the long-range transport of dust have found larger particles than expected, without a model to explain their transport. Here, we investigate the effect of electric fields on lofted airborne dust by blowing sand through a vertically oriented electric field, and characterizing the size distribution as a function of height. We also model this system, considering the gravitational, drag, and electrostatic forces on particles, to understand the effects of the electric field. Our results indicate that electric fields keep particles suspended at higher elevations and enrich the concentration of larger particles at higher elevations. We extend our model from the small-scale system to long-range atmospheric dust transport to develop insights into the effects of electric fields on size distributions of lofted dust in the atmosphere. We show that the presence of electric fields and the resulting electrostatic force on charged particles can help explain the transport of unexpectedly large particles and cause the size distribution to become more uniform as a function of elevation. Thus, our experimental and modeling results indicate that electrostatic forces may in some cases be relevant regarding the effect of atmospheric dust on the climate.
机译:在运送高达数千公里的世界之前,大量的灰尘从世界的干旱地区升压到世界上的大气中。这种大气粉尘与太阳辐射相互作用,导致气候变化,具有具有加热效果的较大尺寸的颗粒,以及具有冷却效果的较小粒径。以前关于灰尘的远程运输的研究发现比预期更大的颗粒,没有模型来解释他们的运输。在这里,我们通过垂直导向的电场吹砂,调查电场对柔性的空气灰尘的影响,并将尺寸分布作为高度的函数。我们还考虑到粒子上的引力,阻力和静电力来模拟该系统,以了解电场的效果。我们的结果表明,电场将颗粒保持悬浮在较高的升高,并在较高升高处浓缩较大粒子的浓度。我们将我们的模型从小规模系统扩展到远程大气粉尘运输,开发出电场对大气尺寸灰尘尺寸分布的效果的洞察。我们表明,电场的存在和带电粒子上的静电力可以有助于解释出意外的大颗粒的运输,并导致尺寸分布变得更加均匀,因为升高的函数变得更加均匀。因此,我们的实验和建模结果表明,在某些情况下,静电力可能与大气粉尘对气候的影响相关。

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