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Dive into the research topics where Kweon-Ha Park is active.

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Featured researches published by Kweon-Ha Park.


Ksme International Journal | 2004

The effect of water emulsified fuel on a motorway-bus diesel engine

Kweon-Ha Park; Inseok Kwak; Seungmook Oh

In this study, the combustion characteristics and durability of a diesel engine using emulsified fuel was investigated. Water was used in oil type emulsified fuel. In order to understand the effect of emulsified fuel in a wide range of engine running conditions, D-13 mode was selected as a test condition, and a durability test was included to understand the long-term effect of water. Combustion pressure in a cylinder, exhaust emissions, specific fuel consumption, sound level and maximum torque were measured. NOx and PM were simultaneously reduced and the specific fuel consumption was increased and decreased at low and high loads, respectively. There was no trouble and any damage on the parts of the cylinder during a 500 hour durability test.


Journal of Hazardous Materials | 2018

Impacts of initial temperature and cylindrical obstacles on the dispersing flammable limits of accidental methane releases in an LNG bunkering terminal

Byung Chul Choi; Kweon-Ha Park; Deog-Hee Doh

This paper presents a numerical study on the dispersing flammable limits with respect to the initial methane releases at TCH4,0 = -50 and -150 °C in the crosswind of ambient air according to the arrangement of (a) No Tank, (b) Tank I, (c) Tank II, and (d) Tank I and II on the ground. To provide a better physical insight on the dispersion behaviors of the methane releases, the spatial distributions of the quasi-averaged methane concentration and flow fields were mainly analyzed using 3-D large eddy simulations. Consequently, the results of both the parameters can be summarized in that the vortex characteristics of the rotating direction and vorticity generated by the interactions not only between the crosswind and cylindrical obstacles but also between the crosswind and releasing methane flows played important roles in determining the dispersing flammable limits depending on the mixing characteristics.


Nuclear Engineering and Design | 2014

Hydrogen concentration variation and examination of PAR installation in reactor containment building during hydrogen release from different direction failure places

Kweon-Ha Park; Kyung-Hyo Bae


Journal of the Korean Society of Marine Engineering | 2012

The Effect of Bio-diesel Fuel on Industrial Diesel Engine

Kweon-Ha Park; J.-M. Kim; Chul-Jung Kim; Jea-Hyun Ko; Hong-Il Park


Nuclear Engineering and Design | 2015

Consideration on hydrogen explosion scenario in APR 1400 containment building during small breakup loss of coolant accident

Kweon-Ha Park; Chong Lee Khor


Journal of the Korean Society of Marine Engineering | 2008

Assessment of Turbulence Models for Engine Intake and Compression Flow Analysis

Kweon-Ha Park; Jae-Gon Kim


Journal of the Korean Society of Marine Engineering | 2014

The effect of heat exchanger type for exhaust heat recovery system on diesel engine performance

Cheol-Jeong Kim; Byung-Chul Choi; Kweon-Ha Park


Journal of the Korean Society of Marine Engineering | 2014

The effect of exit opening rate on exhaust gas pressure, temperature, and engine performance

Cheol-Jeong Kim; Byung-Chul Choi; Kweon-Ha Park


Journal of the Korean Society of Marine Engineering | 2013

Analysis of organic rankine cycle for designing evaporator of engine exhaust heat recovery system

Jea-Hyun Ko; Byung-Chul Choi; Kweon-Ha Park


Journal of the Korean Society of Marine Engineering | 2012

Study on Design Factor and Design-code Development for Plate Type Heat Exchangers

Jea-Hyun Ko; Kweon-Ha Park; Young-Ho Song

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Inseok Kwak

Korea Maritime and Ocean University

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Byungdoo So

Korea Maritime and Ocean University

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Chong Lee Khor

Korea Maritime and Ocean University

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Deog-Hee Doh

Korea Maritime and Ocean University

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Kyung-Hyo Bae

Korea Maritime and Ocean University

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Sung-Hoon Park

Catholic University of Daegu

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Young Ho Song

Korea Maritime and Ocean University

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