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运载工具喷水推进跌落射流气-液两相流动特性和空气夹带机理研究
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作者 刘辉 崔晓慧 +2 位作者 林翔 宁德志 周波 《中国造船》 EI CSCD 北大核心 2024年第2期179-188,共10页
采用数值模拟与试验相结合的方法,考虑喷口几何形状、射流速度和跌落高度等因素,研究跌落射流气-液两相流动特性和空气夹带机理,分析跌落射流初始砰击过程和空腔的非稳态演化,讨论流场压力和速度的分布规律。研究结果表明:自由液面、跌... 采用数值模拟与试验相结合的方法,考虑喷口几何形状、射流速度和跌落高度等因素,研究跌落射流气-液两相流动特性和空气夹带机理,分析跌落射流初始砰击过程和空腔的非稳态演化,讨论流场压力和速度的分布规律。研究结果表明:自由液面、跌落液柱、空腔、气泡和液滴等相间界面时空变化复杂;根据自由液面下方的气泡数目、分布和形成间隔,可确定无夹带、开始夹带、间歇夹带和连续夹带4种空气夹带模式;各影响因素的耦合会改变气泡羽流的穿透特征。根据射流跌落高度和射流速度建立了空气夹带图谱。研究成果可为提高运载工具的喷水推进效率和进行结构优化设计提供技术支撑。 展开更多
关键词 喷水推进 跌落射流 气-液相间界面 多相流动特性 空气夹带机理
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Gas–liquid two-phase flow in serpentine microchannel with different wall wettability 被引量:9
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作者 Yunlong Zhou He Chang Tianyu Qi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第7期874-881,共8页
Gas–liquid flow in serpentine microchannel with different surface properties exhibits drastically different flow behavior. With water and air as working fluids, the method of numerical simulation was adopted in this ... Gas–liquid flow in serpentine microchannel with different surface properties exhibits drastically different flow behavior. With water and air as working fluids, the method of numerical simulation was adopted in this paper based on CLSVOF(coupled level set and volume of fluid method) multiphase model. After verifying the reasonability of the model through experiment, by changing wall properties and Re number(Re<1500), the influences of contact angle and surface roughness on flow regime and Po number were discussed. Moreover, the difference of pressure drop between curve and straight microchannel was also calculated. Beyond that, the combined effect of curve channel and wall properties on flow resistance was analyzed. This paper finds that wall properties have great influence on gas–liquid flow in microchannels not only on flow regime but also flow characteristics. Meanwhile, the pressure drop in curve microchannels is larger than straight. It is more beneficial for fluid flowing when the straight part of microchannel is hydrophilic smooth wall and curve part is hydrophobic with large roughness. 展开更多
关键词 Serpentine microchannel Computational fluid dynamics Gas-liquid flow MICROFLUIDICS
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Numerical Simulation of Enhanced Oil-Water Separation in a Three-Stage Double-Stirring Extraction Tank 被引量:3
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作者 Lü Chao Zhang Zimu +3 位作者 Zhao Qiuyue Wang Shuchan Zhang Ting'an Liu Yan 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第4期121-126,共6页
Numerical simulation of enhanced fluid flow characteristics in a three-stage double-stirring extraction tank was conducted with the coupling of an Eulerian multiphase flow model and a Morsi-Alexander interphase drag f... Numerical simulation of enhanced fluid flow characteristics in a three-stage double-stirring extraction tank was conducted with the coupling of an Eulerian multiphase flow model and a Morsi-Alexander interphase drag force model. Results show that the addition of a stirring device into the settler can efficiently reduce the volume fraction of out-of-phase impurity in the outlet, and accelerate the settling separation of oil-water mixture. Such addition can also effectively break down the oil-water-wrapped liquid droplets coming from the mixer, inhibit reflux from the outlet, and improve the oil-water separation. The addition of a stirring device induces ignorable power consumption compared with that by the mixer, and can thus facilitate the commercialized promotion of this novel equipment. 展开更多
关键词 three-stage extraction tank double-stirring numerical simulation flow characteristics power
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