首页> 外文期刊>Nuclear Engineering and Design >Numerical simulation of upward flowing supercritical fluids using buoyancy-influence-reflected turbulence model
【24h】

Numerical simulation of upward flowing supercritical fluids using buoyancy-influence-reflected turbulence model

机译:浮力-影响反射湍流模型对向上流动的超临界流体的数值模拟

获取原文
获取原文并翻译 | 示例
       

摘要

The mechanism behind heat transfer deterioration, occurring in fluids at supercritical pressures under particular conditions accompanying strong property variations, is not fully understood. The numerical simulations employing RANS type turbulence modelings have never succeeded in reproducing the thermal field of fluids under such conditions, although some success in particular cases has been reported, since the widely-used turbulence models do not account for the property variations and consequential boundary layer deformation. The authors recently reported that an introduction of varying dimensionless damping length (A(+)) as a function of the shear stress ratio between the wall and boundary layer edge into a turbulence model greatly improved the RANS type numerical simulation of highly buoyant flows. In this paper, the authors attempted to directly integrate the momentum equation under appropriate assumptions and approximations, and to establish a functional relation between A(+) and shear stress in the buffer layer (tau(delta t)). The introduction of A(+) as a function of tau(delta t) in the eddy viscosity formula in addition to the property-dependent turbulent Prandtl number, which was proposed earlier by the first author, resulted in numerical simulations of supercritical fluid with strong buoyancy agreeing excellently with the experimental data.
机译:尚不完全了解在特定条件下超临界压力下的流体中发生传热恶化的机理。尽管已经报道了在特定情况下的一些成功,但是使用RANS型湍流模型的数值模拟在重现这种条件下的流体的热场方面从未成功,因为广泛使用的湍流模型并未考虑到性质变化和相应的边界层形变。作者最近报道,将湍流模型中随壁和边界层边缘之间的切应力比而变化的无量纲阻尼长度(A(+))引入到湍流模型中,大大改善了RANS类型的高浮力流数值模拟。在本文中,作者试图在适当的假设和逼近下直接积分动量方程,并在缓冲层(tau(delta t))中建立A(+)与剪切应力之间的函数关系。除第一作者早些时候提出的与性能有关的湍流普朗特数外,还在涡流粘度公式中引入了A(+)作为tau(delta t)的函数,从而产生了具有强力的超临界流体的数值模拟。浮力与实验数据非常吻合。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号