지역기후 접합모델링을 이용한 우리나라 해면수온 미래변화 시범전망
In spite of an increasing demand on the detailed information on climate change, future climate projections for Korean waters have been conducted very limitedly. Even for the regional climate projections, most of the previous studies used a regional ocean-only model forced by a global model projectio...
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Published in | 한국연안방재학회지 Vol. 4; no. 1; pp. 35 - 41 |
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Main Authors | , , , |
Format | Journal Article |
Language | Korean |
Published |
한국연안방재학회
30.01.2017
Korean Society of Coastal Disaster Prevention (사)한국연안방재학회 |
Subjects | |
Online Access | Get full text |
ISSN | 2288-7903 2288-8020 |
DOI | 10.20481/kscdp.2017.4.1.35 |
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Abstract | In spite of an increasing demand on the detailed information on climate change, future climate projections for Korean waters have been conducted very limitedly. Even for the regional climate projections, most of the previous studies used a regional ocean-only model forced by a global model projection result for the atmosphere and thus could not properly simulate the air-sea interactions on a high resolution. The goal of this study is to develop a regional climate coupled model (RCCM) for the Northwest Pacific and present a future climate projection in Korean waters with including high-resolution air-sea interaction effects. In this paper, we present preliminary results focusing on sea surface temperature (SST) changes projected for Korean waters using the RCCM developed for the Northwest Pacific. The RCCM consists of an ocean model, Regional Ocean Modeling System (ROMS) and an atmospheric model, Weather Research Forecast (WRF). The projection results show some prominent features such as a considerable surface warming in the East Sea relative to the Yellow and East China Sea and a stronger warming in summer than in winter. Compared to the ocean-only model result, the RCCM result shows a significant difference in the projected SST, especially in the Yellow Sea, implying that the regional climate modeling allowing air-sea interaction can have a considerable influence on a future climate change projection. KCI Citation Count: 1 |
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AbstractList | In spite of an increasing demand on the detailed information on climate change, future climate projections for Korean waters have been conducted very limitedly. Even for the regional climate projections, most of the previous studies used a regional ocean-only model forced by a global model projection result for the atmosphere and thus could not properly simulate the air-sea interactions on a high resolution. The goal of this study is to develop a regional climate coupled model (RCCM) for the Northwest Pacific and present a future climate projection in Korean waters with including high-resolution air-sea interaction effects. In this paper, we present preliminary results focusing on sea surface temperature (SST) changes projected for Korean waters using the RCCM developed for the Northwest Pacific. The RCCM consists of an ocean model, Regional Ocean Modeling System (ROMS) and an atmospheric model, Weather Research Forecast (WRF). The projection results show some prominent features such as a considerable surface warming in the East Sea relative to the Yellow and East China Sea and a stronger warming in summer than in winter. Compared to the ocean-only model result, the RCCM result shows a significant difference in the projected SST, especially in the Yellow Sea, implying that the regional climate modeling allowing air-sea interaction can have a considerable influence on a future climate change projection. KCI Citation Count: 1 |
Author | 신호정(Ho Jeong Shin) 정희석(Hee seok Jung) 김철호(Cheol Ho Kim) 장찬주(Chan Joo Jang) |
Author_xml | – sequence: 1 fullname: 장찬주(Chan Joo Jang) – sequence: 2 fullname: 신호정(Ho Jeong Shin) – sequence: 3 fullname: 정희석(Hee seok Jung) – sequence: 4 fullname: 김철호(Cheol Ho Kim) |
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Keywords | dynamical downscaling future climate change projection air-sea interaction Korean waters Regional climate coupled model |
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TableOfContents | Abstract 1. 서론 2. 지역기후 접합모형의 수립 및 성능 검증 3. 해면수온 미래변화 상세도 시범전망 4. 결론 감사의 글 References |
Title | 지역기후 접합모델링을 이용한 우리나라 해면수온 미래변화 시범전망 |
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