further validation of the hybrid particle-mesh method for vortex shedding flow simulations

further validation of the hybrid particle-mesh method for vortex shedding flow simulations

;Seung-Jae Lee;Jun-Hyeok Lee;Jung-Chun Suh
current developments in nutrition 2015 Vol. 7 pp. 1034-1043
168
lee2015internationalfurther

Abstract

This is the continuation of a numerical study on vortex shedding from a blunt trailing-edge of a hydrofoil. In our previous work (Lee et al., 2015), numerical schemes for efficient computations were successfully implemented; i.e. multiple domains, the approximation of domain boundary conditions using cubic spline functions, and particle- based domain decomposition for better load balancing. In this study, numerical results through a hybrid particle-mesh method which adopts the Vortex-In-Cell (VIC) method and the Brinkman penalization model are further rigorously validated through comparison to experimental data at the Reynolds number of 2 × 106. The effects of changes in numerical parameters are also explored herein. We find that the present numerical method enables us to reasonably simulate vortex shedding phenomenon, as well as turbulent wakes of a hydrofoil.

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