Search Results - "DAE SEOK BAE"

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  1. 1

    Effects of diluents on cellular instabilities in outwardly propagating spherical syngas–air premixed flames by Vu, Tran Manh, Park, Jeong, Kwon, Oh Boong, Bae, Dae Seok, Yun, Jin Han, Keel, Sang In

    Published in International journal of hydrogen energy (01-04-2010)
    “…Experiments were conducted in a constant pressure combustion chamber using schlieren system to investigate the effects of carbon dioxide–nitrogen–helium…”
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    Journal Article
  2. 2

    Measurements of propagation speeds and flame instabilities in biomass derived gas–air premixed flames by Vu, Tran Manh, Song, Won Sik, Park, Jeong, Bae, Dae Seok, You, Hyun Seok

    Published in International journal of hydrogen energy (01-09-2011)
    “…Three biomass derived gases (BDGs, named GG-H, GG-L and GG-V), which are derived from industry facilities and can be useful for reducing CO 2 and the…”
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  3. 3

    Characterization of Joint Roughness in Granite by Applying the Scan Circle Technique to Images from a Borehole Televiewer by Bae, Dae-seok, Kim, Kyung-su, Koh, Yong-kwon, Kim, Jung-yul

    Published in Rock mechanics and rock engineering (01-07-2011)
    “…Joint roughness directly affects the mechanical behavior of a rock mass and the fluid flow through joints. The Joint Roughness Coefcient (JRC) is one measure…”
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  4. 4

    A study on methane–air premixed flames interacting with syngas–air premixed flames by Kim, Jeong Soo, Park, Jeong, Bae, Dae Seok, Vu, Tran Manh, Ha, Ji Soo, Kim, Tae Kwon

    Published in International journal of hydrogen energy (01-02-2010)
    “…Numerical study on the interaction between methane–air and syngas–air premixed flames is conducted according to equivalence ratio and global strain rate in…”
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  5. 5

    Empirical rock mechanical site-descriptive modeling (RMSDM) for the Korea Atomic Energy Research Institute Underground Research Tunnel (KURT) by Zhang, Qing-Zhao, Jang, Hyun-Sic, Bae, Dae-Seok, Kim, Geon-Young, Jang, Bo-An

    Published in Environmental earth sciences (01-05-2016)
    “…As part of master plan, when preparing to construct the second stage of the Korea Atomic Energy Research Institute Underground Research Tunnel (KURT-2), site…”
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  9. 9

    파이로공정 발생 방사성폐기물 심지층 처분을 위한 개념설정 연구 by 이종열, 이민수, 최희주, 배대석, 김경수

    “…우리나라에서의 고준위폐기물 처분을 위한 연구는 1997년부터 시작하였으며, 국내에서 발생하는 경수로 사용후핵연료와 중수로 사용후핵연료를 처분대상으로 하여 2006년도에는 한국형 사용후핵연료 기준처분시스템(KRS) 개발을 완료하였다. 이후, 경수로 사용후핵연료로부터 재활용 가능물질을…”
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  10. 10

    A study on flame structure and extinction in downstream interaction between lean premixed CH sub(4-air and (50% H) sub(2) + 50% CO) syngas-air flames by Kim, Jeong Soo, Park, Jeong, Kwon, Oh Boong, Bae, Dae Seok, Yun, Jin Han, Keel, Sang In

    Published in International journal of hydrogen energy (01-05-2011)
    “…Downstream interactions between lean premixed flames with mutually different fuels of (50% H sub(2 + 50% CO) and CH) sub(4) are numerically investigated…”
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    Journal Article
  11. 11

    A study on flame structure and extinction in downstream interaction between lean premixed CH 4–air and (50% H 2 + 50% CO) syngas–air flames by Kim, Jeong Soo, Park, Jeong, Kwon, Oh Boong, Bae, Dae Seok, Yun, Jin Han, Keel, Sang In

    “…Downstream interactions between lean premixed flames with mutually different fuels of (50% H 2 + 50% CO) and CH 4 are numerically investigated particularly on…”
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  12. 12

    Flame characteristics in H 2/CO synthetic gas diffusion flames diluted with CO 2: Effects of radiative heat loss and mixture composition by Park, Jeong, Bae, Dae Seok, Cha, Min Seok, Yun, Jin Han, Keel, Sang In, Chang Cho, Han, Kim, Tae Kwon, Ha, Ji Soo

    “…Numerical study is conducted to understand the impact of fuel composition and flame radiation in flame structure and their oxidation process in H 2/CO…”
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  13. 13

    Estimation of deep-reservoir temperature of CO 2-rich springs in Kangwon district, South Korea by Choi, Hyeon-Su, Koh, Yong-Kwon, Bae, Dae-Seok, Park, Seong-Sook, Hutcheon, Ian, Yun, Seong-Taek

    “…Weakly acid to neutral CO 2-rich springs (pH=5.5 to 6.7) with high concentrations of dissolved ions (TDS=419 to 3091 mg/L) and bicarbonate (249 to 2470 mg/L)…”
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