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A steady-state model for asymmetric intrusive gravity currents in a linearly stratified ambient

机译:线性分层环境中非对称侵入重力流的稳态模型

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摘要

The behavior of the steady intrusive gravity current of thickness h and density ρ c which propagates with speed U at the neutral buoyancy level of a long horizontal channel of height H into a stratified ambient fluid whose density increases linearly from ρ o to ρ b is investigated. The intrusive and the ambient fluids are assumed to be asymmetric with respect to the neutral-buoyancy level. The Boussinesq, high-Reynolds number two-dimensional configuration is considered. Long’s model combined with the flow-force balance over the width of the channel and the pressure balances over a density current are used to obtain the desired results. It is shown that the intrusion velocity decreases with decreasing the asymmetry of the system and approaches its minimum for the symmetric configuration (however, the difference of speed between asymmetric and symmetric configurations shows no significant differences).
机译:厚度为h且密度为ρc 的稳定侵入重力流的行为在高度H的长水平通道的中性浮力水平上以速度U传播到分层的环境流体中,其密度从ρo < / sub>到ρb 。假定侵入性流体和环境流体相对于中性浮力水平是不对称的。考虑使用Boussinesq,高雷诺数二维配置。 Long模型与通道整个宽度上的流力平衡和密度电流上的压力平衡相结合,以获得理想的结果。结果表明,入侵速度随着系统的不对称性的降低而降低,并且在对称配置中接近其最小值(但是,非对称配置和对称配置之间的速度差异没有显着差异)。

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