LES validation of lock-exchange density currents interacting with an emergent bluff obstacle

M. Brito,R. M. L. Ferreira, A. Sousa, R. Farias, G. Di Lollo,A. M. Ricardo,L. Gil

Environmental Fluid Mechanics(2022)

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摘要
We address the capability of large eddy simulation (LES) to predict the physics of density currents interacting with bluff obstacles. Most density currents of interest in engineering and geophysical applications interact with obstacles or topographic features. Validating LES solutions in these contexts is crucial to establish it as a trusted tool. We thus propose a validation effort based on simple geometries that nonetheless pose challenges common to more complex systems, including boundary layer separation and convective instabilities. We focus on lock-exchange gravity currents in the slumping phase interacting with an emergent vertical circular cylinder. Our main investment was in ensuring that the comparison of experimental data and numerical results include, at least, the velocity and the density fields , and derived quantities (e.g., second order moments). Measurements of both density and velocity fields were performed in the side and plan views for cylinder Reynolds numbers, Re_d , in the range 1300 to 3475. It was found that the LES accurately predicts the temporal evolution of the current front position. The computed front velocity exhibits a maximum relative error less than 8
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关键词
Density currents, Bluff obstacles, Large eddy simulation (LES), Flow-structure interaction
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