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阶梯式溢洪道泄洪能力随几何形状变化的数值模拟计算 被引量:4
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作者 吴春水 《陕西水利》 2020年第5期16-18,共3页
利用ADINA软件的有限元计算流体力学模块,对阶梯式溢洪道不同台阶形状的水流进行数值模拟,预测流动的主要特性。由于实际的流动是湍流,故采用k-ε流动模型,结果表明模拟水流与一般流动特性一致,显示滑行水流流速大于旋涡流速,可采用相... 利用ADINA软件的有限元计算流体力学模块,对阶梯式溢洪道不同台阶形状的水流进行数值模拟,预测流动的主要特性。由于实际的流动是湍流,故采用k-ε流动模型,结果表明模拟水流与一般流动特性一致,显示滑行水流流速大于旋涡流速,可采用相同的模拟过程来模拟不同阶梯形式的溢洪道结构,优化阶梯式溢洪道的性能,从消能计算结果来看与相关研究成果吻合,说明该仿真模拟软件作为一种可用于灵敏度分析的工具,是研究阶梯溢洪道等泄水建筑物水流运动规律及消能机理的可靠途径。 展开更多
关键词 阶梯式溢洪道 ADINA有限元数值模拟 k-ε流动模型
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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:3
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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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Effect of Inlet Guide Vanes on the Performance of Small Axial Flow Fan 被引量:4
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作者 LIU Yang LIN Zhe +3 位作者 LIN Peifeng JIN Yingzi Toshiaki Setoguchi Heuy Dong Kim 《Journal of Thermal Science》 SCIE EI CAS CSCD 2017年第6期504-513,共10页
Effects of the inlet guide vanes on the static characteristics, aerodynamic noise and internal flow characteristics of a small axial flow fan are studied in this work. The inlet guide vanes with different outlet angle... Effects of the inlet guide vanes on the static characteristics, aerodynamic noise and internal flow characteristics of a small axial flow fan are studied in this work. The inlet guide vanes with different outlet angle are designed, which are mounted on the casing and located at the upstream of the impeller of the prototype fan. Both steady and unsteady flow simulations arc performed. The steady flow is simulated by the calculations of Navier-Stokes equa- tions coupled with RNG k-epsilon turbulence model, while the unsteady flow is computed with large eddy simu- lation. According to the theoretical analysis, the inlet guide vanes with outlet angle of 60° are regarded as the op- timal inlet guide vanes. The static characteristic experiment is carried out in a standard test rig and the aerody- namic noise is tested in a semi-anechoic room. Then, performances of the fan with optimal inlet guide vanes are compared with those of the prototype fan. The results show that there is reasonable agreement between the simu- lation results and the experimental data. It is found that the static characteristics of small axial flow fan is im- proved obviously after installing the optimal inlet guide vanes. Meanwhile, the optimal inlet guide vanes have effect on reducing noise at the near field, but have little effect on the noise at the far field. 展开更多
关键词 small axial flow fan inlet guide vanes static characteristics aerodynamic noise internal flow characteristics
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