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Extension Omega and Omega-Liutex methods applied to identify vortex structures in viscoelastic turbulent flow 被引量:4
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作者 Lu Wang Zhi-ying Zheng +1 位作者 Wei-hua Cai Wan-you Li 《Journal of Hydrodynamics》 SCIE EI CSCD 2019年第5期911-921,共11页
The vortex structure plays a significant role in the investigation of the turbulent drag reduction effect of the viscoelastic turbulent flow.This paper aims to find out an optimal vortex identification method for the ... The vortex structure plays a significant role in the investigation of the turbulent drag reduction effect of the viscoelastic turbulent flow.This paper aims to find out an optimal vortex identification method for the viscoelastic turbulent flows,and then studies the turbulent drag reduction mechanism by analyzing the characteristics of the identified vortex structures in the turbulent flows of the viscoelastic fluids.The Q,λ2,Liutex,Omega(Ω)and Omega-Liutex(ΩR)methods are adopted for the identification of vortex structures in the forced homogeneous isotropic turbulence(FHIT)with/without the polymer additive,respectively.The comparison among these five methods shows that the threshold values for the Q,λ2 and Liutex methods should be specially adjusted so as to suitably describe the strong and weak vortex structures in the FHIT of both the Newtonian and viscoelastic fluids,while a fixed threshold value of 0.52 for theΩandΩR methods is effective for both the Newtonian and viscoelastic fluids.The comparison between the identified vortex structures in the FHIT with and without the polymer additive indicates that theΩandΩR methods are more appropriate for the vortex identification because their dimensionless values with a fixed range from 0 to 1 can avoid the effect of the different ranges of the Q,λ2 and∣R∣(for the Liutex method)for the Newtonian and viscoelastic fluids.This also illustrates that theΩandΩR methods can be extended to identify the vortex structures in the turbulent flow of the viscoelastic fluid.Finally,the characteristics of the vortex structures in the FHIT of the viscoelastic fluid are analyzed by utilizing theΩandΩR methods.The results show that both the strong and weak vortex structures are inhibited by increasing the concentration of the polymer solution and by decreasing the Weissenberg number,especially for the weak vortex structures. 展开更多
关键词 vortex identification OMEGA method(Ω) omega-liutex(ΩR)method FORCED homogeneous ISOTROPIC turbulence VISCOELASTIC fluid
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超声速平板边界层中流向涡的生成条件
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作者 王乾 黄章峰 《航空动力学报》 EI CAS CSCD 北大核心 2022年第4期886-896,共11页
针对马赫数为4.5的超声速平板边界层,基于线性稳定性理论(LST)选取初始扰动组合,通过直接数值模拟(DNS),计算了第一模态不稳定波扰动组合沿流向演化生成流向涡的过程。采用改进Omega-Liutex旋涡识别方法进行涡识别,结合流向不同位置截... 针对马赫数为4.5的超声速平板边界层,基于线性稳定性理论(LST)选取初始扰动组合,通过直接数值模拟(DNS),计算了第一模态不稳定波扰动组合沿流向演化生成流向涡的过程。采用改进Omega-Liutex旋涡识别方法进行涡识别,结合流向不同位置截面的流线图,分析了流向涡的生成特性。根据流向涡在zy截面内的流线特征,提出了流向涡的生成条件,研究发现:流向涡可以直接通过一对展向对称的第一模态不稳定斜波扰动与基本流叠加得到,不是必须经过非线性作用。 展开更多
关键词 超声速平板 边界层 线性稳定性理论 流向涡 直接数值模拟 改进omega-liutex旋涡识别法
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