Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Yusuke Tahara is active.

Publication


Featured researches published by Yusuke Tahara.


International shipbuilding progress | 2013

Simulation based design optimization of waterjet propelled Delft catamaran

Manivannan Kandasamy; Daniele Peri; Yusuke Tahara; Wesley Wilson; Massimo Miozzi; Svetlozar Georgiev; Evgeni Milanov; Emilio F. Campana; Frederick Stern

The present work focuses on the application of simulation-based design for the resistance optimization of waterjet propelled Delft catamaran, using integrated computational and experimental fluid dynamics. A variable physics/variable fidelity approach was implemented wherein the objective function was evaluated using both low fidelity potential flow solvers with a simplified CFD waterjet model and high fidelity RANS solvers with discretized duct flow calculations. Both solvers were verified and validated with data for the original hull. The particle swarm optimizer was used for single speed optimization at Fr = 0.5, and genetic algorithms were used for multi speed optimization at Fr = 0.3, 0.5 and 0.7. The variable physics/variable fidelity approach was compared with high fidelity approach for the bare-hull shape optimization and it showed an overall CPU time reduction of 54% and converged to the same optimal design at Fr = 0.5. The multi-speed optimization showed design improvement at Fr = 0.5 and 0.7, but not at Fr = 0.3 since the design variables were obtained based on sensitivity analysis at Fr = 0.5. High fidelity simulation results for the optimized barehull geometry indicated 4% reduction in resistance and the optimized waterjet equipped geometry indicated 11% reduction in effective pump power required at self-propulsion. Verification was performed for the optimized hull form and its reduction in powering will be validated in forthcoming experimental campaign.


Journal of Marine Science and Technology | 2018

Correction to: Variable decomposition approach applied to multi-objective optimization for minimum powering of commercial ships

Yusuke Tahara; Yasuo Ichinose; Azumi Kaneko; Yoshikazu Kasahara

In the original publication of the article Figs. 14, 26b, e, Eqs. (2), (23), (24), (27), (29) and (30) are incorrectly published. The correct figures and equations are provided in this article.


Computer Methods in Applied Mechanics and Engineering | 2006

Shape optimization in ship hydrodynamics using computational fluid dynamics

Emilio F. Campana; Daniele Peri; Yusuke Tahara; Frederick Stern


International Journal for Numerical Methods in Fluids | 2006

CFD‐based multi‐objective optimization method for ship design

Yusuke Tahara; Satoshi Tohyama; Tokihiro Katsui


Journal of Marine Science and Technology | 2006

RANS simulation of a container ship using a single-phase level-set method with overset grids and the prognosis for extension to a self-propulsion simulator

Yusuke Tahara; Robert Wilson; Pablo M. Carrica; Frederick Stern


Journal of Ship Research | 2004

Computational fluid dynamics-based optimization of a surface combatant

Frederick Stern; Yusuke Tahara; Y. Himeno


Journal of Marine Science and Technology | 2008

Computational fluid dynamics-based multiobjective optimization of a surface combatant using a global optimization method

Yusuke Tahara; Daniele Peri; Emilio F. Campana; Frederick Stern


Journal of Marine Science and Technology | 2011

Single- and multiobjective design optimization of a fast multihull ship: numerical and experimental results

Yusuke Tahara; Daniele Peri; Emilio F. Campana; Frederick Stern


Journal of Marine Science and Technology | 2002

Comparison of CFD and EFD for the Series 60 CB= 0.6 in steady drift motion

Yusuke Tahara; J. Longo; Frederick Stern


Journal of Marine Science and Technology | 2009

Database of sail shapes versus sail performance and validation of numerical calculations for the upwind condition

Yutaka Masuyama; Yusuke Tahara; Toichi Fukasawa; Naotoshi Maeda

Collaboration


Dive into the Yusuke Tahara's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar

Yoji Himeno

Osaka Prefecture University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Tokihiro Katsui

Osaka Prefecture University

View shared research outputs
Top Co-Authors

Avatar

Michitaka Yamane

Osaka Prefecture University

View shared research outputs
Top Co-Authors

Avatar

Tomohiro Takai

Osaka Prefecture University

View shared research outputs
Top Co-Authors

Avatar

Akira Hanaoka

Osaka Prefecture University

View shared research outputs
Top Co-Authors

Avatar

Koji Higaki

Osaka Prefecture University

View shared research outputs
Researchain Logo
Decentralizing Knowledge