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Low pressure evaporative cooling of micron-sized droplets of solutions and its novel applications

机译:微米级溶液液滴的低压蒸发冷却及其新应用

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For free molecular regime the mathematical model of low pressure evaporative cooling of binary droplets in gas flow is developed. The model includes five ordinary differential equations and takes into account effects such as the release of the latent heat of condensation of both components and the release of the latent heat of dissolution. Simulations were made for weak aqueous solutions of ammonia. It was discovered that compositions of gas flow and the aqueous solution affect the rate of evaporative cooling of droplets. The ratio of mass flow of solution and gas flow is also an important parameter. The cooling rate of such binary droplets can reach the value of about 2 x 105 K/s.rnAs first applications we consider the air cooler based on evaporative cooling of droplets. For pressure of 20-80 Torr in aerosol reactor, it is shown that in the cooler with length of about 1 m temperature of air flow may drop to about 10-15 ℃.rnThe second application is the formation of nanoparticle in evaporating multicomponent droplet with two volatile components. Simulation was made for aqueous solution of ammonia which is widely used by experimentalists and engineers now. Effects of the number of precursors in droplet and supersatura-tion in droplet on the final size of nanoparticles were investigated.
机译:对于自由分子状态,建立了气体流中二元液滴的低压蒸发冷却的数学模型。该模型包括五个常微分方程,并考虑了诸如两种成分的冷凝潜热的释放以及溶解潜热的释放等影响。对氨的稀水溶液进行了模拟。已发现气流和水溶液的组成影响液滴的蒸发冷却速率。溶液的质量流量与气体流量的比率也是重要的参数。此类二元液滴的冷却速率可以达到约2 x 105 K / s的值。作为首次应用,我们考虑基于液滴的蒸发冷却的空气冷却器。结果表明,在气溶胶反应器中压力为20-80 Torr的情况下,在长度约1 m的冷却器中,气流温度可能降至10-15℃。第二种应用是在蒸发多组分液滴的过程中形成纳米颗粒。两个挥发性成分。对氨水溶液进行了仿真,该氨水溶液现在已被实验人员和工程师广泛使用。研究了液滴中前体的数量和液滴中的过饱和度对纳米粒子最终尺寸的影响。

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