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Featured researches published by Van-Tu Nguyen.


ASME 2013 International Mechanical Engineering Congress and Exposition | 2013

MULTIPHASE FLOW SIMULATION OF WATER-ENTRY AND -EXIT OF AXISYMMETRIC BODIES

Van-Tu Nguyen; Cong-Tu Ha; Warn-Gyu Park

A fully-compressible, multiphase, homogeneous mixture model, based on unsteady Reynolds-averaged Navier-Stokes equations is presented in this study. Dual-time preconditioning method was employed to improve the computational efficiency of the solution. The multiphase flow solver has been applied to computations of: (1) cavitating flows over underwater projectiles; (2) transonic flow past an underwater projectile; (3) water impact of a circular cylinder entering the water; (4) water-entry of a hemisphere with one degree of freedom; and (5) supercavitating flows over an axisymmetric projectile during water-entry and water-exit. The surface pressure coefficients, water impact forces, vertical accelerations, and impact velocities are compared with available experiments and other published results. Good agreements with those results are obtained. Aspects of water-entry and water-exit flow physics of a projectile with and without gaseous exhaust plume including cavity shape, phase topography and drag coefficients are presented.Copyright


Computers & Fluids | 2016

Navier-Stokes solver for water entry bodies with moving Chimera grid method in 6DOF motions

Van-Tu Nguyen; Duc-Thanh Vu; Warn-Gyu Park; Chul-Min Jung


International Journal for Numerical Methods in Fluids | 2016

A free surface flow solver for complex three‐dimensional water impact problems based on the VOF method

Van-Tu Nguyen; Warn-Gyu Park


Computers & Fluids | 2014

Numerical analysis of water impact forces using a dual-time pseudo-compressibility method and volume-of-fluid interface tracking algorithm

Van-Tu Nguyen; Duc-Thanh Vu; Warn-Gyu Park; Young-Rae Jung


한국전산유체공학회 학술대회논문집 | 2014

3-D Numerical Simulation of Water Entry of Free Falling Objects Using Navier-Stokes Computations and Moving Chimera Grid Scheme

Van-Tu Nguyen; Duc-Thanh Vu; Warn-Gyu Park


Computers & Fluids | 2017

A volume-of-fluid (VOF) interface-sharpening method for two-phase incompressible flows

Van-Tu Nguyen; Warn-Gyu Park


Computers & Fluids | 2018

A novel sharp interface capturing method for two- and three-phase incompressible flows

Van-Tu Nguyen; Van-Dat Thang; Warn-Gyu Park


Applied Ocean Research | 2018

Enhancement of Navier–Stokes solver based on an improved volume-of-fluid method for complex interfacial-flow simulations

Van-Tu Nguyen; Warn-Gyu Park


한국전산유체공학회 학술대회논문집 | 2016

SIMULATION ALL SPEED COMPRESSIBLE FLOW ON UNSTRUCTURED GRID

Dat Thang Van; Cong-Tu Ha; Van-Tu Nguyen; Warn-Gyu Park


대한기계학회 춘추학술대회 | 2015

Numerical Simulation of Water Entry of Objects in 6DOF Motions

Van-Tu Nguyen; Warn-Gyu Park

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Warn-Gyu Park

Pusan National University

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Duc-Thanh Vu

Pusan National University

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Cong-Tu Ha

Pusan National University

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Dong-Hyun Kim

Pusan National University

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Chul-Min Jung

Agency for Defense Development

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Son-Tung Dang

Pusan National University

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Van-Dat Thang

Pusan National University

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Young-Rae Jung

Pusan National University

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