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固相体积分数对O型球阀空化特性的影响
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作者 周兆年 吴斌彬 +4 位作者 华霆锋 王照彤 金志江 李文庆 钱锦远 《过程工程学报》 北大核心 2025年第3期241-248,共8页
O型球阀是煤化工行业中重要的流体控制设备,在工作过程中,球阀内部容易发生空化现象。球阀工质为含有固相颗粒的流体,颗粒的体积分数会对空化产生影响但机制尚不明确。针对这一问题,使用数值模拟的手段,探究了不同阀球转角下,固相体积... O型球阀是煤化工行业中重要的流体控制设备,在工作过程中,球阀内部容易发生空化现象。球阀工质为含有固相颗粒的流体,颗粒的体积分数会对空化产生影响但机制尚不明确。针对这一问题,使用数值模拟的手段,探究了不同阀球转角下,固相体积分数对球阀内空化的影响。结果表明,当阀球转角为30°以及45°时,阀内并无空化发生;阀球转角为60°时,低浓度的颗粒会削弱阀内的空化程度,而浓度大于10%的颗粒会促进空化发生;阀球转角为75°时,不同浓度的颗粒均会促进阀内的空化。本工作揭示了固相体积分数对O型球阀空化特性的影响机理,对于控制O型球阀工作环境以及多相流仿真方面具有一定的指导作用。 展开更多
关键词 O型球阀 空化 固相体积 Mixture模型 空化数 多相流
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Solid-liquid flow characteristics and sticking-force analysis of valve-core fitting clearance 被引量:4
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作者 Jin-yuan QIAN Jiaxiang XU +3 位作者 Fengping ZHONG Zhenhao LIN tingfeng hua Zhijiang JIN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2023年第12期1096-1105,共10页
External contamination particles or wear particles corroded by a valve body are mixed into the fluid. As a result, when the fluid enters the fitting clearance of the valve core, it can cause an increase in resistance ... External contamination particles or wear particles corroded by a valve body are mixed into the fluid. As a result, when the fluid enters the fitting clearance of the valve core, it can cause an increase in resistance and lead to sticking failure of the valve core. This paper analyzes solid-liquid flow characteristics in fitting clearances and valve-core sticking based on the Euler-Euler model, using a typical hydraulic valve as an example. The impact of particle concentration and diameter on flow characteristics and valve-core sticking force was analyzed. The highest volume fraction of particles was in the pressureequalizing groove(PEG), with peak values increasing as the particle diameter increased. The sticking force increased with increasing particle concentration. When the particle diameter was 12 μm, the sticking force was the largest, making this the sensitive particle diameter. Particle distribution and valve-core sticking force were compared for oval, rectangular, and triangular PEGs. The fluid-deflection angles in oval and rectangular PEGs were larger, and their values were 32.83° and 39.15°, respectively. The fluid-deflection angle in the triangular PEG was relatively small, less than 50% that of the oval or rectangular PEGs. The particle-volume-fraction peaks in oval, rectangular, and triangular PEGs were 0.0317, 0.0316, and 0.0312, respectively. The sticking forces of oval, rectangular, and triangular PEGs were 4.796, 4.802, and 4.757 N, respectively when the particle diameter was 12 μm. This work provides a reference for design and research aimed at reducing valve-core sticking. 展开更多
关键词 Solid-liquid flow characteristics Valve core Sticking force Euler-Euler model
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