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Featured researches published by Jin-Rae Cho.


Transactions of The Korean Society for Noise and Vibration Engineering | 2013

Analysis of Effects of Mooring Connection Position on the Dynamic Response of Spar type Floating Offshore Wind Turbine

Yanguk Cho; Jin-Rae Cho; Weui-Bong Jeong

This paper deals with the analysis of dynamic characteristics of mooring system of floating-type offshore wind turbine. A spar-type floating structure which consists of a nacelle, a tower and the platform excepting blades, is used to model the floating wind turbine and connect three catenary cables to substructure. The motion of floating structure is simulated when the mooring system is attached using irregular wave Pierson-Moskowitz model. The mooring system is analyzed by changing cable position of floating structure. The dynamic behavior characteristics of mooring system are investigated comparing with cable tension and 6-dof motion of floating structure. These characteristics are much useful to initial design of floating-type structure. From the simulation results, the optimized design parameter that is cable position of connect point of mooring cable can be obtained.


Transactions of The Korean Society for Noise and Vibration Engineering | 2013

Experiment on Sloshing of Annular Cylindrical Tank for Development of Attitude Control Devices of Floating Offshore Wind Turbines

Myeongwoo Seo; Weui-Bong Jeong; Jin-Rae Cho

The floating offshore wind turbines are usually exposed to the wave and wind excitations which are irregular and undirected. In this paper, the sloshing characteristics of annular cylindrical tank were experimentally investigated to reduce the structural dynamic motion of floating offshore wind turbine which is robust to the irregular change of excitation direction of wind and wave. The formula for the natural sloshing frequencies of this annular cylindrical tank was derived theoretically. In order to validate this formula, the shaking equipment was established and frequency response functions were measured. Two types of tank were considered. The first and second natural sloshing frequencies were investigated according to the depth of the water. It has been observed that between theoretical and experimental results shows a good agreement.


Transactions of The Korean Society for Noise and Vibration Engineering | 2011

Finite Element Vibration Analysis of Multi-layered Damped Sandwich Beam with Complex Shear Modulus

Seung-Hoon Bae; Sung-Gyu Won; Weui-Bong Jeong; Jin-Rae Cho; Soo-Ryong Bae

In this paper, the general equation of motion of damped sandwich beam with multi-viscoelastic material layer was derived based on the equation presented by Mead and Markus. The viscoelastic layer, which has characteristics of complex shear modulus, was assumed to be dominantly under shear deformation. The equation of motion of n-layered damped sandwich beam in bending could be represented by (n+3)th order ordinary differential equation. Finite element model for the n-layered damped sandwich beam was formulated and programmed using higher order shape functions. Several numerical examples were implemented to show the effects of damped material.


Transactions of The Korean Society for Noise and Vibration Engineering | 2009

Sloshing Reduction Characteristics to Baffle for Cylindrical Liquefied Fuel Tank subject to Dynamic Load

Jun-Hyo Koo; Jin-Rae Cho; Weui-Bong Jeong; Dang-Ju Kim

Liquid fluctuation called sloshing within liquid-storage tank gives rise to the significant effect on the dynamic stability of tank. This liquid sloshing can be effectively suppressed by installing baffles within the tank, and the suppression effect depends strongly on the design parameters of baffle like the baffle configuration. The present study is concerned with the parametric evaluation of the sloshing suppression effect for the CNG-storage tank, a next generation liquefied fuel for vehicles, to the major design parameters of baffle, such as the baffle configuration, the installation angle and height, the hole size of baffle. The coupled FEM-FVM analysis was employed to effectively reflect the interaction between the interior liquid flow and the tank elastic deformation.


International Journal of Precision Engineering and Manufacturing | 2016

Investigation of Vibration Damping Characteristics of Automotive Air Conditioning Pipeline Systems

Seong-Ryeol Han; Jin-Rae Cho


Journal of Mechanical Science and Technology | 2017

Multi-objective optimum design of TBR tire structure for enhancing the durability using genetic algorithm

Jin-Rae Cho; Ju-Chul Lee


Journal of Mechanical Science and Technology | 2016

Large deformation analysis of anisotropic rubber hose along cyclic path by homogenization and path interpolation methods

Jin-Rae Cho; Young-Hwan Yoon


International Journal of Naval Architecture and Ocean Engineering | 2016

Combination resonances in forced vibration of spar-type floating substructure with nonlinear coupled system in heave and pitch motion

Eung-Young Choi; Weui-Bong Jeong; Jin-Rae Cho


Journal of The Brazilian Society of Mechanical Sciences and Engineering | 2018

Development of plastic passenger air bag (PAB) housing for replacing the steel PAB housing and reducing the automobile weight

Seong-Ryeol Han; Jae-Il Park; Jin-Rae Cho


Journal of Mechanical Science and Technology | 2018

Development of high gloss plastic for injection molding by utilizing wollastonite(CaSiO3) and talc fillers

Jae-Hoon Lee; Jin-Rae Cho; Seong-Ryeol Han

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Weui-Bong Jeong

Pusan National University

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Seong-Ryeol Han

Kongju National University

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Han-Wool Lee

Pusan National University

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Seung-Hoon Bae

Pusan National University

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Soo-Ryong Bae

Pusan National University

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Byung Kyoo Jung

Pusan National University

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Dae-Yeon Lee

Pusan National University

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Eung-Young Choi

Pusan National University

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Jeong-In Song

Pusan National University

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Ju-Chul Lee

Pusan National University

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