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The peculiarities of sprayed liquid's thermal state change, as droplets are heated by conduction

机译:由于液滴通过传导加热,因此喷雾液体的热态特性会发生变化

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The change of thermal state and phase transformation intensity of sprayed water, n-hexane, n-heptane and n-decane is numerically modelled in the case, as droplets are heated by conduction; the influence of the Knudsen layer is neglected; warming and evaporation of the droplets has no influence on the state of the carrying air flow. The research results prove that a peculiar change of the thermal state of sprayed liquid, irrespective of droplet's dispersivity, exists in the time scale, expressed by Fourier number. The above-mentioned change can be conveniently defined by the characteristic curves, representing the change of a droplet surface, centre, and mean mass temperatures, which are sensibly influenced by temperature of gas mixture and partial pressure of liquid vapour in it. As these characteristic curves were expressed in regards to the initial and equilibrium evaporation temperatures of liquid, the universal curves, representing the change of thermal states of the examined liquids, were obtained in the time scale, expressed by Fourier number. It is shown that liquid evaporation rate and the change of a droplet dimension can also be described by characteristic curves.
机译:在这种情况下,随着液滴通过传导加热,热模拟喷淋水,正己烷,正庚烷和正癸烷的热状态和相变强度。克努森层的影响被忽略了;液滴的加热和蒸发对输送气流的状态没有影响。研究结果证明,无论液滴的分散性如何,喷射液体的热状态都会发生一个特殊的变化,该变化以傅立叶数表示。可以通过特性曲线来方便地定义上述变化,该特性曲线表示液滴表面,中心和平均质量温度的变化,这些变化受气体混合物的温度和其中的液体蒸气分压的影响。由于这些特征曲线是针对液体的初始蒸发温度和平衡蒸发温度而表示的,因此在时标中获得了代表被检液体热状态变化的通用曲线,用傅立叶数表示。结果表明,液体蒸发速率和液滴尺寸的变化也可以通过特性曲线来描述。

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