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转鼓分流分相式气液两相流体流量测量技术研究 被引量:11
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作者 王栋 林益 林宗虎 《西安交通大学学报》 EI CAS CSCD 北大核心 2002年第5期457-460,共4页
提出了一种分流分相式气液两相流体流量计 ,其采用转鼓作为分配器 ,从被测的两相流体中成比例地分流出约 2 0 %的气液混合物 ,并应用分离法分别测量出其中的气相和液相流量 ,然后根据比例关系确定被测两相流体的各相总流量 .理论分析和... 提出了一种分流分相式气液两相流体流量计 ,其采用转鼓作为分配器 ,从被测的两相流体中成比例地分流出约 2 0 %的气液混合物 ,并应用分离法分别测量出其中的气相和液相流量 ,然后根据比例关系确定被测两相流体的各相总流量 .理论分析和实验结果都证明 ,分流系数等于分流通道数与总通道数的比值 ,而与流型无关 .实验中出现的流型包括分层流、波状分层流和环状流 .在实验范围内 ,流量测量的平均误差小于 5 % .实验结果也表明 ,转鼓运动间隙是影响实际分流系数稳定性的主要因素 ,转鼓的加工精度愈低 ,运动间隙过大 。 展开更多
关键词 转鼓 分流分 气流两相流体 流量测量 流量计
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Computational fluid dynamics simulation of gas-liquid two phases flow in 320 m^3 air-blowing mechanical flotation cell using different turbulence models 被引量:4
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作者 沈政昌 陈建华 +2 位作者 张谌虎 廖幸锦 李玉琼 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2385-2392,共8页
According to the recently developed single-trough floating machine with the world's largest volume(inflatable mechanical agitation flotation machine with volume of 320 m3) in China, the gas-fluid two-phase flow in... According to the recently developed single-trough floating machine with the world's largest volume(inflatable mechanical agitation flotation machine with volume of 320 m3) in China, the gas-fluid two-phase flow in flotation cell was simulated using computational fluid dynamics method. It is shown that hexahedral mesh scheme is more suitable for the complex structure of the flotation cell than tetrahedral mesh scheme, and a mesh quality ranging from 0.7 to 1.0 is obtained. Comparative studies of the standard k-ε, k-ω and realizable k-ε turbulence models were carried out. It is indicated that the standard k-ε turbulence model could give a result relatively close to the practice and the liquid phase flow field is well characterized. In addition, two obvious recirculation zones are formed in the mixing zones, and the pressure on the rotor and stator is well characterized. Furthermore, the simulation results using improved standard k-ε turbulence model show that surface tension coefficient of 0.072, drag model of Grace and coefficient of 4, and lift coefficient of 0.001 can be achieved. The research results suggest that gas-fluid two-phase flow in large flotation cell can be well simulated using computational fluid dynamics method. 展开更多
关键词 computational fluid dynamics (CFD) simulation flotation cell gas-liquid two-phases flow
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