• 제목/요약/키워드: Kagoshima bay

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SEASONAL VARIATION OF THE OCEANIC WATER INTRUSIONS INTO KAGOSHIMA BAY DERIVED FROM THE SATELLITE SST AND CHL-A IMAGES

  • Hosotani, Kazunori
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2008년도 International Symposium on Remote Sensing
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    • pp.61-64
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    • 2008
  • Seasonal distribution of the oceanic water intrusion was investigated using satellite SST (sea surface temperature) and chl-a (chlorophyll-a) images taken by the MODIS Aqua sensor. The warm water mass emanating periodically from the meandering Kuroshio Current brings the oceanic water intrusion, known as the 'Kyucho' phenomenon, into Kagoshima bay during the winter. Satellite SST images and buoy robot data show that this warm water intrusion has the characteristics of a semigeostrophic gravity current influenced by the Coriolis effect. However, it is difficult to find the oceanic water intrusion during the summer season considering that it is accompanied by thermal stratification, and SST shows almost the same temperature between the inner side of the bay and the ocean. In this research, the satellite chl-a images taken by MODIS Aqua were employed instead of SST images to reveal the oceanic water intrusion in each season. The enclosed bay has the tendency to undergo eutrophication caused by organic materials from land and differences in chl-a concentration of the bay water and the oceanic water. As a result, distribution of low concentration chl-a with oceanic water intrusion in summer season shows almost the same pattern in winter season. On the other hand, in spring season, both SST and chl-a images are available to differentiate the oceanic water intrusion. Therefore, applying the suitable satellite sensor images for each season is effective in the monitoring of oceanic water intrusion. Moreover, in this area, SST and chl-a distribution reveal not only the oceanic water intrusion into Kagoshima bay but also the intrusion at Fukiage seashore facing East China Sea.

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일본 서남부 가고시마 와카미코 해저 열수환경에서 형성된 2:1 점토광물 내 암모늄 거동 및 질소동위원소 특성 (Ammonium Behavior and Nitrogen Isotope Characteristics of 2:1 Clay Minerals from Submarine Hydrothermal System in the Wakamiko Crater of Kagoshima Bay, Southwestern Japan)

  • 조재국;토시로 야마나카;신동복
    • 자원환경지질
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    • 제54권1호
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    • pp.151-160
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    • 2021
  • 함암모늄 2:1 점토광물 내 암모늄 거동과 질소동위원소 특성을 살펴보기 위해 일본 남서부 해저 와카미코 화구(Wakamiko crater) 내 열수가 분출하는 두 지점에서 퇴적물 코어를 채취하여 스멕타이트로 대표되는 점토입자를 추출하였다. 점토입자 내 무기탄소 제거 후 순차적인 유기물 분해과정에서 감소하는 탄소-질소 비에 근거하여 무기질소 함량을 추정한 결과, 전질소에 대한 무기질소 비율은 SES 지점(Core#1093MG: av. 11.5%)에 비해 SWS 지점 (Core#1094MR: av. 18.2%)에서 높은 경향을 보였다. 후자에서 높은 광물 결정도를 보인 점은 상대적으로 진전된 광물화와 함께 교환성 암모늄이 비교환성 암모늄으로 전환된 결과로 해석된다. 단계적인 점토입자 내 교환성 암모늄의 제거과정에서 나타난 질소동위원소 조성 변화(SES 지점: Core#1093MG: -4.4 ~ +0.2 ‰, av. -2.4 ‰; SWS 지점: Core#1094MR: -0.7 ~ +3.0 ‰, av. +1.5 ‰)로부터 심부 마그마에서 비롯된 열류 및 열수에 의한 국부적인 온도변화는 함암모늄 2:1 점토광물의 형성에 관여한 유체 내 용존 암모늄과 암모니아 사이에서 질소동위원소 분별을 야기했을 것이다.