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幂律型流体撞击射流破碎特性直接数值模拟
Authors
孙俊柠
尤延铖
朱呈祥
郑浩铭
Publication date
18 December 2019
Publisher
'Elsevier BV'
Doi
Cite
Abstract
凝胶推进剂的双股射流撞击雾化广泛应用于液体火箭发动机的燃烧室中,其破碎特征及雾化效果直接影响燃烧效率。为探究雾化特性的发展规律,采用直接数值模拟DNS方法,对射流速度为100m/s的剪切稀化非牛顿液体正交撞击产生的雾化特征、液体表面积、表面波、涡特性以及非牛顿特性开展研究。结果表明,射流下形成的雾化流场迅速扩张形成液膜,液膜两侧边缘破碎成大量的液丝与液滴,核心部分产生撞击波后在气体力的作用下逐步发展为带有凸起和褶皱的不稳定表面波,其撞击波波长最大可达2.46倍射流直径。液体表面积不断增长,但无量纲表面积总体呈现先下降再上升的趋势。气体中的涡量分布则分为有序附着区和无序爆炸区两类,并且涡量主要集中分布于气相区域。此外,射流撞击时产生强剪切使该液体内部的粘性系数下降,最低仅为初始粘性系数的0.3倍。国家自然科学基金(51606161;91441128;11602209)中央高校基本科研业务费专项资金(20720170055
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Last time updated on 20/11/2020