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绕水翼超空化流动数值模拟的湍流模型评价

Evaluation of Turbulence Models for the Numerical Simulation of Supercavitating Flows Around a Hydrofoil

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【作者】 李向宾; 王国玉; 张博; 余志毅;

【Author】 LI Xiang-bin1,2,WANG Guo-yu1,ZHANG Bo1,YU Zhi-yi1(1.School of Mechanics and Vehicular Engineering,Beijing Institute of Technology,Beijing 100081,China;2.School of Nuclear Science and Engineering,North China Electric Power University,Beijing 102206,China)

【机构】 北京理工大学机械与车辆工程学院; 华北电力大学核科学与工程学院;

【摘要】 为深入了解湍流模型对超空化流动计算的影响,分别采用3种不同的湍流模型即标准κ-ε模型、RNGκ-ε模型和SSG雷诺应力模型,对绕水翼的超空化流动进行了数值模拟,并与实验结果进行了对比.结果表明:标准κ-ε模型仅能模拟出定常状态的超空化形态;RNGκ-ε模型和SSG雷诺应力模型能较为准确地模拟出超空化区域内的两相混合非定常特性,并完整再现了空泡内部两相(气相和水气混合相)界面的反向波动过程,而采用RNGκ-ε模型计算得到的最大空泡长度与实验最为接近.

【Abstract】 Supercavitating flows around a hydrofoil is simulated to grasp the unsteady behaviour numerically.To evaluate the application of turbulence models in the computations of supercavitating flows,three different models are implemented: standard κ-ε model,RNG κ-ε model and SSG Reynolds stress model.And then,numerical results were compared to experimental ones.The results showed that the standard κ-ε model can only simulate the steady supercavitating behavior.However,both the RNG κ-ε model and SSG Reynolds stress model can obtain two-phase mixture characteristics in the cavity area,especially the reverse fluctuating processes of the interface between the vapor phase and water-vapor mixture phase.It is also noted that the maximum cavity length simulated by the RNG κ-ε model agrees well with the experimental one.

【基金】 国家自然科学基金资助项目(50679001)
  • 【文献出处】 北京理工大学学报 ,Transactions of Beijing Institute of Technology , 编辑部邮箱 ,2008年11期
  • 【分类号】TV131.3
  • 【被引频次】7
  • 【下载频次】268
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