湍流
机械
压力降
湍流动能
结束语(心理学)
Kε湍流模型
流量(数学)
计算流体力学
湍流模型
K-omega湍流模型
压缩性
物理
机械工程
工程类
市场经济
经济
作者
Himadri Chattopadhyay,Aniruddha Kundu,Binod Kumar Saha,Tapas Gangopadhyay
标识
DOI:10.1016/j.enconman.2011.08.021
摘要
The flow process inside a pressure regulating valve has been investigated using a computational fluid dynamic approach. The Navier–Stokes equation along with appropriate turbulent closure has been solved for this purpose in the compressible flow regime using FLUENT package. Investigations of the flow through valve at different valve opening and different pressure drop are presented. The standard k–ε model of turbulence was found to predict higher levels of turbulent kinetic energy and hence the realizable variant of k–ε model was adopted for turbulence closure. Within the operating zone, it is found that two-dimensional axi-symmetric formulation can capture the gross flow parameters quite well. However, for complete realization of the turbulent field, three dimensional analyses assume importance. The realizable k–ε model was found to be an attractive option for turbulence modeling.
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