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Spray structure as generated under homogeneous flash boiling nucleation regime

机译:在均匀闪蒸成核机制下产生的喷雾结构

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摘要

We show the effect of the initial pressure and temperature on the spatial distribution of droplets size and their velocity profile inside a spray cloud that is generated by a flash boiling mechanism under homogeneous nucleation regime. We used TSI's Phase Doppler Particle Analyzer (PDPA) to characterize the spray. We conclude that the homogeneous nucleation process is strongly affected by the initial liquid temperature while the initial pressure has only a minor effect. The spray shape is not affected by temperature or pressure under homogeneous nucleation regime. We noted that the only visible effect is in the spray opacity. Finally, homogeneous nucleation may be easily achieved by using a simple atomizer construction, and thus is potentially suitable for fuel injection systems in combustors and engines. (C) 2014 Elsevier Ltd. All rights reserved.
机译:我们显示了初始压力和温度对液滴尺寸的空间分布及其在喷雾云内部的速度分布的影响,该喷雾云是在均匀成核条件下通过闪蒸机制生成的。我们使用TSI的相位多普勒颗粒分析仪(PDPA)来表征喷雾。我们得出结论,均相成核过程受初始液体温度的强烈影响,而初始压力只有很小的影响。在均匀成核条件下,喷雾形状不受温度或压力的影响。我们注意到唯一的可见效果是喷雾不透明。最后,通过使用简单的雾化器结构可以轻松实现均相成核,因此潜在地适用于燃烧器和发动机中的燃料喷射系统。 (C)2014 Elsevier Ltd.保留所有权利。

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