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一类平衡大气边界层边界条件研究 被引量:3

A Boundary Condition of Equilibrium Atmospheric Boundary Layers
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摘要 基于标准k-ε湍流模型,首先利用湍流粘度方程和剪切应力在整个边界层内恒定的假设,推导出一类耗散率表达式,并根据常用的湍动能入口剖面方程以及平均风速剖面方程,计算获得相应的耗散率方程;然后在输运方程中添加自定义源项,通过已经确定的平均速度方程、湍动能方程、耗散率方程计算得到相应输运方程的自定义源项表达式,并进行空风洞数值模拟,从而得到了一类满足平衡大气边界层的来流边界条件.通过将这种边界条件与由湍流平衡条件得到的边界条件进行比较,表明本方法获得的边界条件更适用.并且,本方法无需考虑修正壁面函数和修正湍流模型常数,因而计算更为简单,可为平衡大气边界层的研究提供一种新的思路. A dissipation rate expression was derived in terms of turbulence viscosity equation and the assumption of constant shear stress in boundary layer, based on the standard k-~ turbulence model. Subsequently the dissipation rate equation was derived by using the common inlet turbulent kinetic energy equation and the mean wind velocity profile equation, gouree terms were added in the transport equations and their expressions were calculated through the established average velocity equation, turbulent kinetic energy equation and the dissipation rate equation; a typical example of numerical simulation of an empty wind tunnel was conducted. In this way, a class of flow boundary condition was obtained to meet equilibrium atmospheric boundary layers. A comparison of it with those obtained from turbulence equilibrium conditions was made. The result shows that the former is more applicable. The modification of wall function and turbulence model parameters is avoided in the proposed method. Therefore, it is simpler in calculation, and further provides a new idea for the study of equilibrium atmospheric boundary layers.
出处 《力学季刊》 CSCD 北大核心 2015年第2期328-335,共8页 Chinese Quarterly of Mechanics
关键词 标准k-ε湍流模型 耗散率方程 数值模拟 自定义源项 平衡大气边界层 standard k-ε turbulence model dissipation rate equation numerical simulation source term equilibrium atmospheric boundary layers
作者简介 孙玉航(1988-),男,山东滕州人,硕士生.研究方向:风工程.Email:12yuhangsun@tongji.edu.cn 通信作者:王国砚,教授.Email:gywang@tongji.edu.cn
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  • 1杨伟,顾明,陈素琴.计算风工程中k-ε模型的一类边界条件[J].空气动力学学报,2005,23(1):97-102. 被引量:25
  • 2杨伟,金新阳,顾明,陈素琴.风工程数值模拟中平衡大气边界层的研究与应用[J].土木工程学报,2007,40(2):1-5. 被引量:36
  • 3MURAKAMI S, OKA R, MOCHIDA A, et al. CFD analysis of wind climate from human scale to urban scale[J].J. Wind. Eng. Ind Aero., 1999, 81:57-81.
  • 4WILCOX D C. Turbulence modelling for CFD[M]. USA California: DCW Industries, 1994.
  • 5MURAKAMI S. Overview of turbulence models applied in CWE-1997[J].Journal of Wind Engineering and Industrial Aerodynamics, 1998, 74&76: 1-24.
  • 6YANG W. Numerical study on structural wind loads and response based on RANS technique[D]. Tongji University, 2004.
  • 7DURBIN P A, PETTERSSON R. Statistical theory and modelling for turbulent flow [M]. John Wiley and SONS Ltd. ,2001.
  • 8RICHARDS P J, HOXEY R P. Appropriate boundary conditions for computational wind engineering models using the k-ε model[J]. Journal of wind engineering and Industrial aerodynamics, 1993, 46&47:145-153.
  • 9MATHEWS E H. Prediction of the wind-generated pressure distribution around buildings[J]. Journal of Wind Engineering and Industrial Aerodynamics, 1987, 25: 219-228.
  • 10ZHANG C X. Numerical prediction of turbulent recirculating flows with a k-ε model[J]. Journal of Wind Engineering and Industrial Aerodynamics, 1994, 51 : 177-201.

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