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气液两相流压差信号的非线性分析 被引量:7
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作者 杨靖 郭烈锦 《中国电机工程学报》 EI CSCD 北大核心 2002年第7期134-139,共6页
针对混沌现象的3个主要特征指标——分维数、Lyapunov指数和预测误差,系统地阐述了一种对时间序列进行非线性处理的方法。通过对气液两相流压差信号的分析处理,证实了气液两相流中存在着混沌现象,并在重构相空间中清晰地再现了动力特性... 针对混沌现象的3个主要特征指标——分维数、Lyapunov指数和预测误差,系统地阐述了一种对时间序列进行非线性处理的方法。通过对气液两相流压差信号的分析处理,证实了气液两相流中存在着混沌现象,并在重构相空间中清晰地再现了动力特性。结果表明这种新颖的方法对研究两相流形成的机理和本质具有十分重要的意义。 展开更多
关键词 气流两相流 压差信号 非线性分析 混沌 分形理论
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延迟修正QUICK格式及其在弹状流中的应用 被引量:2
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作者 鹿院卫 何安定 +1 位作者 王跃社 周芳德 《西安交通大学学报》 EI CAS CSCD 北大核心 2000年第5期37-41,共5页
将延迟修正QUICK格式应用于数值传热学经典问题进行验证性计算 ,应用流体体积模型 ,将延迟修正QUICK格式及界面移动施主 受主格式与SIMPLEC算法相结合 ,计算了垂直管内弹状流泰勒气泡周围的流动特性 .通过计算 ,得到了满足气泡内部压... 将延迟修正QUICK格式应用于数值传热学经典问题进行验证性计算 ,应用流体体积模型 ,将延迟修正QUICK格式及界面移动施主 受主格式与SIMPLEC算法相结合 ,计算了垂直管内弹状流泰勒气泡周围的流动特性 .通过计算 ,得到了满足气泡内部压力恒定要求的泰勒气泡形状及其周围流场分布 ,以及泰勒气泡周围液膜厚度随距离的变化规律 ,并与实验值进行了比较 ,得到的结果较为理想 . 展开更多
关键词 弹状流 泰勒气泡 气流两相流 延迟修正QUICK格式
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Three-phase flow of submarine gas hydrate pipe transport 被引量:7
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作者 李立 徐海良 杨放琼 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3650-3656,共7页
In the hydraulic transporting process of cutter-suction mining natural gas hydrate, when the temperature-pressure equilibrium of gas hydrate is broken, gas hydrates dissociate into gas. As a result, solid-liquid two-p... In the hydraulic transporting process of cutter-suction mining natural gas hydrate, when the temperature-pressure equilibrium of gas hydrate is broken, gas hydrates dissociate into gas. As a result, solid-liquid two-phase flow(hydrate and water) transforms into gas-solid-liquid three-phase flow(methane, hydrate and water) inside the pipeline. The Euler model and CFD-PBM model were used to simulate gas-solid-liquid three-phase flow. Numerical simulation results show that the gas and solid phase gradually accumulate to the center of the pipe. Flow velocity decreases from center to boundary of the pipe along the radial direction. Comparison of numerical simulation results of two models reveals that the flow state simulated by CFD-PBM model is more uniform than that simulated by Euler model, and the main behavior of the bubble is small bubbles coalescence to large one. Comparison of numerical simulation and experimental investigation shows that the values of flow velocity and gas fraction in CFD-PBM model agree with experimental data better than those in Euler model. The proposed PBM model provides a more accurate and effective way to estimate three-phase flow state of transporting gas hydrate within the submarine pipeline. 展开更多
关键词 gas hydrate pipe transport three-phase flow Euler model CFD-PBM model
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Air flow patterns and noise analysis inside high speed angular contact ball bearings 被引量:3
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作者 翟强 闫柯 +2 位作者 张优云 朱永生 王亚泰 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3358-3366,共9页
The vortex formed around the rolling ball and the high pressure region formed around the ball-raceway contact zone are the principle factors that barricades the lubricant entering the bearing cavity, and further cause... The vortex formed around the rolling ball and the high pressure region formed around the ball-raceway contact zone are the principle factors that barricades the lubricant entering the bearing cavity, and further causes improper lubrication. The investigation of the air phase flow inside the bearing cavity is essential for the optimization of the oil-air two-phase lubrication method. With the revolutionary reference frame describing the bearing motion, a highly precise air phase flow model inside the angular contact ball bearing cavity was build up. Comprehensive factors such as bearing revolution, ball rotation, and cage structure were considered to investigate the influences on the air phase flow and heat transfer efficiency. The aerodynamic noise was also analyzed. The result shows that the ball spinning leads to the pressure rise and uneven pressure distribution. The air phase velocity, pressure and cage heat transfer efficiency increase as the revolving speed increases. The operating noise is largely due to the impact of the high speed external flow on the bearing. When the center of the oil-air outlet fixes near the inner ring, the aerodynamic noise is reduced. The position near the inner ring on the bigger axial side is the ideal position to fix the lubricating device for the angular contact ball bearing. 展开更多
关键词 high speed angular contact ball bearing air phase flow heat transfer efficiency cage structure
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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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Application of time–frequency entropy from wake oscillation to gas–liquid flow pattern identification 被引量:6
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作者 HUANG Si-shi SUN Zhi-qiang +1 位作者 ZHOU Tian ZHOU Jie-min 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1690-1700,共11页
Gas–liquid two-phase flow abounds in industrial processes and facilities. Identification of its flow pattern plays an essential role in the field of multiphase flow measurement. A bluff body was introduced in this s... Gas–liquid two-phase flow abounds in industrial processes and facilities. Identification of its flow pattern plays an essential role in the field of multiphase flow measurement. A bluff body was introduced in this study to recognize gas–liquid flow patterns by inducing fluid oscillation that enlarged differences between each flow pattern. Experiments with air–water mixtures were carried out in horizontal pipelines at ambient temperature and atmospheric pressure. Differential pressure signals from the bluff-body wake were obtained in bubble, bubble/plug transitional, plug, slug, and annular flows. Utilizing the adaptive ensemble empirical mode decomposition method and the Hilbert transform, the time–frequency entropy S of the differential pressure signals was obtained. By combining S and other flow parameters, such as the volumetric void fraction β, the dryness x, the ratio of density φ and the modified fluid coefficient ψ, a new flow pattern map was constructed which adopted S(1–x)φ and (1–β)ψ as the vertical and horizontal coordinates, respectively. The overall rate of classification of the map was verified to be 92.9% by the experimental data. It provides an effective and simple solution to the gas–liquid flow pattern identification problems. 展开更多
关键词 gas–liquid two-phase flow wake oscillation flow pattern map time–frequency entropy ensemble empirical mode decomposition Hilbert transform
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