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Reynolds应力模型在热分层流场中的应用及优化 被引量:1
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作者 陈丽星 姚朝晖 BOTTONI Maurizio 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2003年第8期1079-1082,共4页
对Reynolds应力模型(RSM)在数值模拟热分层流场方面进行了优化,即在Reynolds应力方程和湍动能耗散方程的基础上加入标量通量方程和温度扰动方程,使原来的7方程成为了11方程。优化后的模型可以通过精确计算湍流通量输运方程来求解加热湍... 对Reynolds应力模型(RSM)在数值模拟热分层流场方面进行了优化,即在Reynolds应力方程和湍动能耗散方程的基础上加入标量通量方程和温度扰动方程,使原来的7方程成为了11方程。优化后的模型可以通过精确计算湍流通量输运方程来求解加热湍流中重要的热浮力项。采用7方程RSM、11方程RSM,并用k-ε湍流模型作为参考,对平板间非稳定热分层流动和模拟池式快堆堆心上方的腔室内受迫对流和热分层之间的混合流动进行数值模拟和比较分析,并将计算结果与现有实验数据相比较。结论是:优化后的11方程RSM比其他的湍流模型更适合于计算各向异性的热分层流动。 展开更多
关键词 Reynolds应力模型 热分层流场 数值模拟 流通量 湍动能耗散方程 热对流
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The impact of interphase forces on the modulation of turbulence in multiphase flows
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作者 Simon Schneiderbauer Mahdi Saeedipour 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第8期18-28,共11页
The modulation of turbulence by particles has been rigorously investigated in the literature yielding either a reduction or an enhancement of the turbulent kinetic energy at different spatial length scales.However,a g... The modulation of turbulence by particles has been rigorously investigated in the literature yielding either a reduction or an enhancement of the turbulent kinetic energy at different spatial length scales.However,a general description of the turbulence modulation in multiphase flows due to the presence of an interphase force has attracted less attention.In this paper,we investigate the turbulent modulation for interfacial and fluid-particle flows analytically and numerically,where surface tension and drag define the interphase coupling,respectively.It is shown that surface tension and drag appear as additional production/dissipation terms in the transport equations for the turbulent kinetic energies(TKE),which is of particular importance for the turbulence modelling of multiphase flows.Furthermore,we study the modulation of turbulence in decaying homogenous isotropic turbulence(HIT)for both types of multiphase flow.The results clearly unveil that in both cases the energy is reduced at large scales,while the small-scale energy is enhanced compared to single-phase flows.Particularly,at large scales surface tension works against the turbulent eddies and hinders the ejection of droplet from the corrugated interface.In contrast,at the small scales,the surface tension force and the velocity fluctuations are aligned leading to an enhancement of the energy.In the case of fluid-particle flows,particles retain their energy longer than the surrounding fluid increasing the energy at the small scales,while at the large scales the particles do not follow exactly the surrounding fluid reducing its energy.For the latter effect,a considerable dependence on the particle Stokes number is found. 展开更多
关键词 Multiphase turbulence Interfacial flow Fluid-particle flow Volume of fluid method Two-fluid model
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