Study on flow field and temperature field characteristics of gas-liquid two-fluid snowmaking nozzle

IF 5.3 Q1 ENGINEERING, MECHANICAL International Journal of Hydromechatronics Pub Date : 2020-12-21 DOI:10.1504/ijhm.2020.10034070
Y. Sun, Dianrong Gao, Zongyi Zhang, J. Zhao, Bo Chen
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引用次数: 4

Abstract

A snowmaking nozzle based on the principle of supersonic speed of Laval nozzle is proposed, and the influence of its operation and structural parameters on flow field and temperature field characteristics is analysed. The results show that the gas-liquid mixture velocity outside the nozzle outlet increases with the increase of air inlet pressure, water inlet pressure and throat diameter, decreases with the increase of distance between water inlet and nozzle outlet. The gas-liquid mixture temperature outside the nozzle outlet increases as water inlet pressure and distance between water inlet and nozzle outlet increases, decreases as air inlet pressure and throat diameter increases. As gas-liquid pressure ratio increases, the gas-liquid mixture velocity outside the nozzle outlet tends to decrease first, then increase and then decrease, while its temperature tends to increase first, then decrease and then increase. When gas-liquid pressure ratio α = 3, this nozzle has the best performance.
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气液双流体造雪喷嘴流场和温度场特性研究
提出了一种基于拉瓦尔喷管超音速原理的造雪喷管,分析了其工作参数和结构参数对流场和温度场特性的影响。结果表明:喷嘴出口外气液混合速度随进气压力、进水压力和喉道直径的增大而增大,随进水口与喷嘴出口距离的增大而减小;喷嘴出口外气液混合温度随着进水压力和进水口与喷嘴出口距离的增大而升高,随着进水压力和喉道直径的增大而降低。随着气液压力比的增大,喷嘴出口外气液混合速度呈现先减小后增大再减小的趋势,其温度呈现先增大后减小再增大的趋势。当气液压力比α = 3时,该喷嘴性能最佳。
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来源期刊
CiteScore
7.60
自引率
0.00%
发文量
32
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