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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/23581
Title: Analysis of high Reynolds free surface flows
Authors: Young, D L
Lin, Marvin C H
Tsai, C C 
Keywords: FINITE-ELEMENT-ANALYSIS;DIFFERENTIAL QUADRATURE METHOD;INTERFACE RECONSTRUCTION;NUMERICAL-SIMULATION;FLUID;CONVECTION;VOLUME;FORMULATION;OBJECTIVITY;STREAMLINE
Issue Date: Nov-2022
Publisher: OXFORD UNIV PRESS
Journal Volume: 38
Start page/Pages: 454-472
Source: Journal of Mechanics
Abstract: 
In this paper, we will combine an upwind radial basis function-finite element with direct velocity-pressure formulation to study the two-dimensional Navier-Stokes equations with free surface flows. We will examine this formulation in an improved mixed-order finite element and localized radial basis function method. A particle tracking method and the arbitrary Lagrangian-Eulerian scheme will then be applied to simulate the two-dimensional high Reynolds free surface flows. An upwind improved finite element formulation based on a localized radial basis function differential quadrature (LRBFDQ) method is used to deal with high Reynolds number convection dominated flows. This study successfully obtained very high Reynolds number free surface flows, up to Re = 500 000. Finally, we will demonstrate and discuss the capability and feasibility of the proposed model by simulating two complex free surface flow problems: (1) a highly nonlinear free oscillation flow and (2) a large amplitude sloshing problem. Using even very coarse grids in all computing scenarios, we have achieved good results in accuracy and efficiency.
URI: http://scholars.ntou.edu.tw/handle/123456789/23581
ISSN: 1811-8216
DOI: 10.1093/jom/ufac036
Appears in Collections:海洋工程科技學士學位學程(系)

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