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A Model for Multi-Component Evaporation of Aerial Sprays

机译:空气喷雾多组分蒸发模型

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摘要

Droplet evaporation models, such as the one in AGDISP, make use of a single evaporation constant for active, additive, and carrier components of the aerial spray. A general approach to droplet evaporation suggests the need for modeling the evaporationrates of the three components separately and independently. The proposed approach discussed herein extends the single droplet evaporation model by making several assumptions also made in work on the evaporation of multi-component jet fuels. For example,the model treats the computation of evaporation from an isolated droplet composed of three distinct components with the assumption of rapid internal mixing, implying that the components within a droplet mix so fast that at any instant the mass fractionof each component is approximately spatially uniform. This assumption is especially helpful near the surface of the droplet, since the mixture properties at the surface dominate the evaporation rate for the various components. The intent of the paper isto develop a working evaporation model and provide initial examples of its application.
机译:液滴蒸发模型(如Agdisp中的蒸发型号)利用单一蒸发恒定的恒星恒定,以及空中喷雾的载体部件。液滴蒸发的一般方法表明需要单独且独立地建模三个组分的蒸发器。本文讨论的所提出的方法通过在工作中的几种假设上延伸了单滴蒸发模型,这些假设在多组分射流燃料的蒸发上进行了几种。例如,该模型以具有快速内部混合的假设从三个不同部件组成的隔离液滴的蒸发的计算,这意味着液滴内的组分在任何瞬时均匀的液滴混合时近似空间均匀。这种假设在液滴的表面附近特别有用,因为表面的混合物性质主导了各种组分的蒸发速率。纸张的目的是开发一个工作蒸发模型,并提供其应用的最初示例。

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