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Analysis of Ocean Color Data for Observation on the Ocean Environment Change Caused by Typhoon Path

태풍의 이동경로에 따른 해양환경변화관측을 위한 해색 자료 분석

  • 정종철 (남서울대학교 지리정보공학과)
  • Received : 2012.11.23
  • Accepted : 2013.03.15
  • Published : 2013.03.31

Abstract

When the typhoons are passing over the ocean, the ocean environment has both physical and biological impacts on the East, South sea and Yellow sea of Korea. As a result of typhoon path, vertical mixing and upwelling injured colder subsurface water, and leaded to phytoplankton blooming along the typhoons. The ocean environment before and after a typhoon played an important role in the biological effect of sea surface. Although the magnitude of sea surface temperature (SST) gets cooler because of typhoon path, other physical and biophysical responses are quite different such as chlorophyll, K490 and SST. The purpose of this study is to compare with the typhoon path that influenced the Korean Peninsula and ocean environment parameters which were observed by ocean color remotely-sensed data. The MODIS data were used to assess the parameters of ocean environments such as K490 and chlorophyll data from 2002 to 2005. Mean chlorophyll from MODIS data increased by about 1-4% in the East sea after the typhoon. Mean concentration of MODIS chlorophyll in the post-typhoon period increased along the typhoon passage. However, Jeju coastal area has different patterns from those of the East sea.

태풍이 해양을 이동할 때 해양환경은 물리 생물학적으로 한반도 주변해역에 영향을 미친다. 태풍이동의 결과로써 해양의 수직적 혼합과 용승작용은 해양 표층수 냉각을 유도하고 태풍의 경로에 따라 식물플랑크톤의 증가를 초래하며, 태풍 전과 후의 해양환경은 해양표층의 생물학적 변화에 중요한 역할을 했다. 비록 태풍 이동의 원인으로 해양 표층수의 냉각이 확대되지만, 엽록소, K490, SST와 같은 다른 물리-생물리적 반응은 서로 다른 경향을 나타낸다. 본 연구의 목적은 한반도 주변해역에 영향을 미치는 태풍 이동경로와 해색센서에 의해 관측된 해양환경변수를 비교하는데 있다. 부유물질, 흡광계수(K490), 엽록소와 같은 해양환경변수는 2002년부터 2005년 MODIS 자료가 적용되었다. 태풍이동 후 동해에서는 평균 엽록소 농도가 1-4배 증가하였고, 태풍 이동경로를 따라 태풍 이후 MODIS 엽록소의 평균 농도가 증가하였다. 그러나 제주도 해역은 동해역과 반대의 경향을 나타내었다.

Keywords

References

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