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- W3022751106 abstract "This chapter highlights the role of the model used for the interfacial shear at different stages of stability analyses of the stratified flow configuration and to summarize progress made in formulating a closure law which reflects the dynamics of the interaction involved in turbulent gas flow over a mobile wavy interface. The structure of the closure laws used for the shear stresses in two-fluid models bears crucial consequences on the capability of two-fluid models to predict the stability characteristics of the presumed flow configuration. Quasi-steady closure laws for the interfacial shear stresses, which are widely used in stability analyses of the stratified flow configuration, are insufficient for capturing the physical phenomena involved during the evolution of waves over a liquid interface sheared by a turbulent gas phase. Modification of the interfacial shear stress model to include a dynamic term is essential for rendering a closure law which is capable of bridging the gap between the micro-scale phenomena at the vicinity of the phases interface and the macro-averaged representation of the flow." @default.
- W3022751106 created "2020-05-13" @default.
- W3022751106 creator A5008822699 @default.
- W3022751106 creator A5016423644 @default.
- W3022751106 date "1996-01-01" @default.
- W3022751106 modified "2023-10-18" @default.
- W3022751106 title "Role of interfacial shear modelling in predicting stability of stratified two-phase flow" @default.
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