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首页> 外文期刊>Journal of Applied Meteorology >Rain Enhancement and Fog Elimination by Seeding with Charged Droplets. Part I: Theory and Numerical Simulations
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Rain Enhancement and Fog Elimination by Seeding with Charged Droplets. Part I: Theory and Numerical Simulations

机译:通过带电水滴播种来增强降雨和消除雾气。第一部分:理论与数值模拟

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摘要

A new method of droplet collision acceleration, with the purpose of rain enhancement and fog elimination, is proposed. According to the method, some fraction of the droplets is taken from clouds (or fog) themselves, charged, and then injected back into clouds (or fog). To verify the efficiency of the method, a novel model has been developed, allowing simulation of droplet spectrum evolution by collision in case a certain fraction of the droplets in a droplet spectrum is charged. Simulations of droplet spectra evolution include several steps: (a) The forces arising between charged and neutral droplets, as well as between charged droplets, are calculated as the function of the value of the charges, droplet size, and distance between droplets. It is shown that because of the induction effect, significant attraction forces arise between charged and neutral droplets, (b) The results obtained have been used to calculate the collision efficiencies between charged and neutral, as well between charged droplets. As a result, a "four dimensional" table of the collision efficiencies (the collision efficiency is the function of the droplet size and charge) was calculated. The collision efficiencies between charged and neutral droplets turn out to be significantly higher than the pure gravity-induced values, (c) To accomplish these simulations, a novel numerical method of solving the stochastic collision equation has been developed. Cloud droplets are described by a two-dimensional size distribution function in which droplets are characterized by both their mass and charge, (d) This model, with the implemented table of the collision efficiencies, has been used to simulate droplet spectra evolution in clouds and fog in case some fraction of these droplets wascharged. Simulations of the effects of seeding by charged droplets have been performed. Evolution of initially narrow droplet size spectra (typical of extremely continental clouds in highly smoky air), in the case of seeding and under natural conditions,has been simulated. It was shown that although a natural droplet spectrum does not develop and no raindrops are formed, the injection of just a small fraction of charged particles rapidly triggered the collision process and lead to raindrop formation afew minutes after the injection. Significant acceleration of raindrop formation has been found in the case of a maritime wide-droplet spectrum. Simulations of fog seeding were conducted using droplet spectra distributions of typical fog. Seeding by charged fog droplets of one or both polarities was simulated. In both cases a significant increase in fog visibility was found. The advantages of the seeding method proposed are discussed.
机译:提出了一种以雨水增强和消雾为目的的液滴碰撞加速新方法。根据该方法,液滴的某些部分是从云(或雾)本身获取的,带电,然后注入到云(或雾)中。为了验证该方法的效率,开发了一种新型模型,该模型允许在液滴谱中一定比例的液滴带电的情况下通过碰撞模拟液滴谱的演化。液滴光谱演变的模拟包括几个步骤:(a)带电液滴和中性液滴之间以及带电液滴之间产生的力是根据电荷值,液滴大小和液滴之间距离的函数计算的。结果表明,由于感应效应,带电液滴和中性液滴之间会产生很大的吸引力。(b)获得的结果已用于计算带电液滴和中性液滴之间以及带电液滴之间的碰撞效率。结果,计算了碰撞效率的“四维”表(碰撞效率是液滴尺寸和电荷的函数)。结果表明,带电液滴和中性液滴之间的碰撞效率大大高于纯重力感应值。(c)为完成这些模拟,已开发出一种新型的求解随机碰撞方程的数值方法。云滴由二维尺寸分布函数描述,其中,液滴由质量和电荷共同表征。(d)该模型具有已实现的碰撞效率表,已被用于模拟云中的液滴谱演化。如果这些液滴中的一部分带电,则雾化。已经模拟了带电液滴播种的效果。在播种的情况下和在自然条件下,已经模拟了最初狭窄的液滴尺寸谱(在高度烟熏的空气中极典型的大陆云)的演化。结果表明,尽管没有形成自然的液滴光谱,也没有形成雨滴,但是只有一小部分带电粒子的注入会迅速触发碰撞过程,并在注入后几分钟内导致形成雨滴。在海上宽液滴谱的情况下,已经发现雨滴形成的显着加速。使用典型雾的液滴光谱分布进行雾播的模拟。模拟了一种或两种极性的带电雾滴播种。在这两种情况下,都发现雾能见度显着增加。讨论了所提出的播种方法的优点。

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