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Interaction of Very Large Scale Motion of Coherent Structures with Sediment Particle Exposure
A systematic variation of the exposure level of a spherical particle in an array of multiple spheres in a high Reynolds number turbulent open-channel flow regime was investigated while using the Large Eddy Simulation method. Our numerical study analysed hydrodynamic conditions of a sediment particle based on three different channel configurations, from full exposure to zero exposure level. Premultiplied spectrum analysis revealed that the effect of very-large-scale motion of coherent structures on the lift force on a fully exposed particle resulted in a bi-modal distribution with a weak low wave number and a local maximum of a high wave number. Lower exposure levels were found to exhibit a uni-modal distribution.
Interaction of Very Large Scale Motion of Coherent Structures with Sediment Particle Exposure
A systematic variation of the exposure level of a spherical particle in an array of multiple spheres in a high Reynolds number turbulent open-channel flow regime was investigated while using the Large Eddy Simulation method. Our numerical study analysed hydrodynamic conditions of a sediment particle based on three different channel configurations, from full exposure to zero exposure level. Premultiplied spectrum analysis revealed that the effect of very-large-scale motion of coherent structures on the lift force on a fully exposed particle resulted in a bi-modal distribution with a weak low wave number and a local maximum of a high wave number. Lower exposure levels were found to exhibit a uni-modal distribution.
Interaction of Very Large Scale Motion of Coherent Structures with Sediment Particle Exposure
Sencer Yücesan (author) / Daniel Wildt (author) / Philipp Gmeiner (author) / Johannes Schobesberger (author) / Christoph Hauer (author) / Christine Sindelar (author) / Helmut Habersack (author) / Michael Tritthart (author)
2021
Article (Journal)
Electronic Resource
Unknown
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