多孔液氨喷雾崩塌行为:形态、崩塌时间、区域图

IF 5 Q2 ENERGY & FUELS
Xiaoxin Yao, Gangwei Zeng, Xiao Liu, Zuohua Huang, Chenglong Tang
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引用次数: 0

摘要

低沸点液氨多孔喷雾剂的闪沸和坍塌行为影响着液氨在内燃机上的有效应用。为了研究液氨多孔喷雾剂崩溃的机理和边界条件,采用纹影高速摄影和激光片密散射法记录了不同环境温度和压力下液氨多孔喷雾剂的宏观形貌和液体横截面分布,得到了喷雾剂尖端穿透度、喷雾剂角度和横截面面积等几个喷雾剂特征参数的变化情况。定义了三种不同的喷雾崩塌模式:早期崩塌、晚期崩塌和非崩塌。环境温度的升高和环境压力的降低引起的塌缩程度的增大,使得羽流合并时间提前,侵彻速度加快,喷雾截面积减小。将喷雾加速穿透的时间点定义为坍缩时间,该时间点随着喷雾坍缩程度的增加而逐渐提前,并提出了一种经验关联法来预测不同环境条件下的坍缩时间。基于实验现象,总结和分析了不同环境条件下不同的喷雾崩塌模式和行为,并用区域图表示了不同环境温度和压力下喷雾崩塌模式的转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-hole liquid ammonia spray collapsing behaviors: Morphologies, collapsing time, and region diagram
The flash-boiling and collapsing behavior of low-boiling-point liquid ammonia multi-hole spray can influence the efficient application of liquid ammonia on internal combustion engines. In order to investigate the mechanism and boundary conditions for liquid ammonia multi-hole spray to collapse, the macroscopic morphology and liquid cross-sectional distribution of liquid ammonia multi-hole spray under different ambient temperatures and pressures are recorded by schlieren high-speed photography and laser sheet Mie-scattering method, and the changes of several spray characteristic parameters such as spray tip penetration, spray angle, and cross-sectional area are obtained. Three different spray collapsing modes are defined: early collapsing, late collapsing, and non-collapsing. The increase of collapsing degree caused by the rise of ambient temperature and the decrease of ambient pressure results in earlier plume merging, accelerated penetration, and a reduced spray cross-sectional area. The time point of spray accelerating penetration, which is gradually advanced with the increase of spray collapsing degree, is defined as collapsing time, and an empirical correlation is proposed to predict the collapsing time under different ambient conditions. Based on the experimental phenomenon, the different spray collapsing modes and behaviors under different ambient conditions are summarized and analyzed, and the transition of spray collapsing mode under different ambient temperatures and pressures is shown by a region diagram.
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CiteScore
4.20
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