2018
DOI: 10.1016/j.advwatres.2018.04.011
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Multi-phase SPH model for simulation of erosion and scouring by means of the shields and Drucker–Prager criteria.

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Cited by 54 publications
(17 citation statements)
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“…The 2D experimental tests, involving rapidly varied mixture flows with erosion and the transport of bed sediment, were simulated in [7] and [8]. Moreover, in [6], mixture flow computation was performed with the open-source DualSPHysics solver [52] accelerated with a graphic processing unit (GPU). The adopted WCSPH algorithm, representing the improvement of the model in [53], reproduces the dynamics of the bottom sediment phase combining two erosion criteria with the non-Newtonian rheological model.…”
Section: Scouring and Sediment Transportmentioning
confidence: 99%
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“…The 2D experimental tests, involving rapidly varied mixture flows with erosion and the transport of bed sediment, were simulated in [7] and [8]. Moreover, in [6], mixture flow computation was performed with the open-source DualSPHysics solver [52] accelerated with a graphic processing unit (GPU). The adopted WCSPH algorithm, representing the improvement of the model in [53], reproduces the dynamics of the bottom sediment phase combining two erosion criteria with the non-Newtonian rheological model.…”
Section: Scouring and Sediment Transportmentioning
confidence: 99%
“…If a solid particle is identified as being near the sediment-water interface by means of the criteria described in [6], then the Shields criterion determines the onset of bed erosion at the sediment-water interface and provides the critical bed shear stress τ bcr , replacing the yield stress parameter τ c , in the HBP model.…”
Section: Scouring and Sediment Transportmentioning
confidence: 99%
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