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Impact of Holder Materials on the Heating and Explosive Breakup of Two-Component Droplets

机译:支架材料对双组分液滴加热和爆炸分解的影响

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摘要

The heating of two-component droplets and the following explosive breakup of those droplets have been extensively studied over the most recent years. These processes are of high interest, since they can significantly improve the performance of many technologies in fuel ignition, thermal and flame liquid treatment, heat carriers based on flue gases, vapors and water droplets, etc. Research throughout the world involves various schemes of droplet heating and supply (or, less frequently, injection) to heating chambers. The most popular scheme features the introduction of a two-component or multi-component droplet onto a holder into the heating chamber. In this research, we study how holder materials affect the conditions and integral characteristics of droplet heating and explosive breakup: heating time until boiling temperature; minimum temperature sufficient for droplet breakup; number and size of fragments in the resulting droplet aerosol, etc. Experiments involve droplets that are produced from flammable (oil) and non-flammable (water) components with significantly different thermophysical and optical properties, as well as boiling temperature and heat of vaporization. The most popular elements with the scientific community, such as ceramic, steel, aluminum, copper, and phosphorus rods, as well as a nichrome wire, serve as holders. We establish the roles of energy inflow from a holder to a droplet, and energy outflow in the opposite direction. We compare the holder results with a supporting thermocouple, recording the drop temperature under a heat transfer provided at 350°C. Finally, we forecast the conditions that are required for a significant improvement in the performance of thermal and flame water treatment through the explosive breakup of two-component droplets.
机译:在最近几年中,对两组分液滴进行了两种液滴和以下爆炸性分析。这些过程具有很高的兴趣,因为它们可以显着提高燃料点火,热和火焰液处理中许多技术的性能,基于烟道气,蒸气和水滴等的热载体等。在全世界的研究中涉及各种液滴方案加热和供应(或更少,注射)加热室。最流行的方案具有将双组分或多分量液滴引入支架进入加热室。在这项研究中,我们研究了持有者材料如何影响液滴加热和爆炸性分解的条件和整体特性:加热时间直至沸腾温度;足以用于液滴分析的最小温度;所得液滴气溶胶等碎片的数量和尺寸等实验涉及从易燃(油)和不易燃(水)组分产生的液滴,其具有显着不同的热神族和光学性质,以及沸腾温度和蒸发热。具有科学界的最受欢迎的元素,如陶瓷,钢,铝,铜和磷棒,以及镍铬丝,用作支架。我们建立能量流入从持有者到液滴的角色,以及相反方向的能量流出。我们将支架结果与支撑热电偶进行比较,在提供在350°C的传热下记录下降温度。最后,我们预测通过双组分液滴的爆炸性破裂,对热和火焰水处理性能进行显着改善所需的条件。

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