Sehyun Baek
Korea Electric Power Corporation
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Publication
Featured researches published by Sehyun Baek.
Journal of Energy Engineering-asce | 2012
Ho Young Park; Young Ju Kim; Tae Hyung Kim; Sehyun Baek; Kyung Soo Kim; Kwon Dal Jeoung
Sub-bituminous coals have been used increasingly in coal-fired power plants with a proportion of over 50% in the blend with bituminous coals. As a result, the unburned material in fly ash has increased and is causing problems in utilizing the fly ash as an additive for concrete production. In this study, analysis of fly ash obtained from a 500 MWe power plant was carried out and unburned material in the fly ash found to be soot. The coals used in the plant were analyzed with CPD model to investigate the sooting potential depending on the coal type and blending ratio.
KEPCO Journal on electric power and energy | 2015
Ho Young Park; Sehyun Baek; Young Joo Kim; Tae Hyung Kim; Hyun Hee Kim; Hyun Soo Lim; Yoon Hwa Park
The combustion tests for Korean anthracite-bituminous coal blend were carried out in the 200 MW utility boiler. The burning characteristics of the blend were studied with a thermogravimetric analyzer (TGA). From the observation of TGA burning profiles, it was found that the presence of bituminous coal in the blend appeared to enhance the reactivity of anthracite in the higher temperature region, indicating certain interactions between the two coals. The plant test showed the boiler operation was reasonably stable with somewhat poor combustion efficiency, and some modification of the combustion environment in the furnace is necessitate for the further stable plant operation.
Journal of Energy Engineering-asce | 2014
Hyunhee Kim; Hoyoung Park; Hyunsoo Lim; Sehyun Baek; Tae Hyung Kim; Young-Ju Kim; Jiseon Gong; Jeongeun Lee
With the depletion of high grade coal, it is indispensable to be used co-combustion of low rank coal with bituminous coal in pulverized coal-fired power plants. This study describes the detailed measurements of combustion characteristics of bituminous and subbituminous coal in a 0.7MWth pilot-scale test facility. This experimental works include the measurement of gas temperature, gas concentrations along with the reactor axial and radial distance at the condition of excess air ratio of 1.2. The solid sampling was carried out and analyzed with the combustion of bituminous coal. The main reaction zone of coal flame in a reactor was formed about 1 m from the swirl burner, and at downstream, the fully developed temperature and species distribution was observed. The sampled particles of bituminous coal in a reactor revealed the complete carbon burn-out was achieved just after an main combustion zone.
Journal of Energy Engineering-asce | 2014
Sehyun Baek; Hyunhee Kim; Hoyoung Park; Sung Ho Ko
In this study, boiler tube thickness measurement and numerical analysis were conducted for standard 500MW coal-fired power plant in order to research the mechanism of tangential-fired boiler corrosion empirically. The most dominant corrosion mechanism of tangential-fired boiler waterwall was corrosion by sulfur contained in the unburned carbon. And the secondary mechanism was gas corrosion at localized reducing atmosphere. It is required to decrease the air-stage combustion operation in order to mitigate the waterwall tube corrosion. Also stringent coal pulverization quality control and reinforcing work for corrosion susceptible area such as anti-corrosion coatings is required
Fuel | 2013
Ho Young Park; Sehyun Baek; Young Ju Kim; Tae Hyung Kim; Dong Soo Kang; Dong Woong Kim
Fuel | 2015
Joo-Hyang Yang; Jung-Eun Kim; Jaehyun Hong; Min-Soo Kim; Changkook Ryu; Young Ju Kim; Ho Young Park; Sehyun Baek
Fuel | 2015
Jongkeun Park; Sangbin Park; Mukyeong Kim; Changkook Ryu; Sehyun Baek; Young Ju Kim; Hyun Hee Kim; Ho Young Park
Fuel | 2016
Ho Young Park; Sehyun Baek; Hyun Hee Kim; Young Joo Kim; Tae Hyung Kim; Hyun Soo Lim; Dong Soo Kang
Journal of the Korean Society of Combustion | 2015
Sehyun Baek; Hyunhee Kim; Hoyoung Park; Young Joo Kim; Tae Hyung Kim; Sung Ho Ko
Journal of the Korean Society of Combustion | 2014
Sehyun Baek; Hoyoung Park; Young Joo Kim; Tae Hyung Kim; Hyunhee Kim; Sung Ho Ko