Numerical Investigation of the Impact of the Rectangular Nozzle Aspect Ratio On Liquid Jet in Crossflow

Meng Shao, Zhixia He, Qian Wang
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Abstract

High fidelity simulation is conducted to investigate liquid jet in crossflow, specifically regarding the rectangular nozzle. The influence of aspect ratio (AR) of nozzles on the atomization characteristics of liquid column in the process of primary breakup is explored by the analysis of the flow structure of crossflow and liquid column. The aspect ratio is ranging from 1 to 8. The results indicate that as the increase of aspect ratio, the disturbance of crossflow to the liquid on the sides is weakened. While the thickness of liquid column also gradually decreases, which enables smaller disturbances to promote droplet shedding. Therefore, surface breakup first weakens and then strengthens. In the column breakup process, the increase of aspect ratio causes crossflow to become the main factor affecting column breakup, and the influence of air pressure gradually weakens. This indicates a shift in the mechanism of surface instability from “Rayleigh-Taylor” (R-T) instability to “Kelvin-Helmholtz” (K-H) instability.
矩形喷嘴长宽比对横流中液体射流影响的数值研究
我们进行了高保真模拟来研究横流中的液体射流,特别是矩形喷嘴。通过分析横流和液柱的流动结构,探讨了喷嘴长宽比(AR)对初级破裂过程中液柱雾化特性的影响。喷嘴的长宽比范围为 1 至 8。结果表明,随着纵横比的增大,横流对两侧液体的扰动减弱。而液柱的厚度也逐渐减小,这使得较小的扰动能够促进液滴脱落。因此,表面破裂先减弱后加强。在液柱破裂过程中,长径比的增大使横流成为影响液柱破裂的主要因素,气压的影响逐渐减弱。这表明表面不稳定机制从 "Rayleigh-Taylor"(R-T)不稳定性转变为 "Kelvin-Helmholtz"(K-H)不稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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