会议论文详细信息
2nd International Conference on Marine Science: Better Insight for the Healthy Ocean
Indonesian Throughflow (ITF) variability in Halmahera Sea and its coherency with New Guinea Coastal Current
Wattimena, M.C.^1 ; Atmadipoera, A.S.^1 ; Purba, M.^1 ; Nurjaya, I.W.^1 ; Syamsudin, F.^2
Department of Marine Science and Technology, FPIK IPB, Bogor, Indonesia^1
Agency for the Assessment and Application of Technology (BPPT), Jakarta, Indonesia^2
关键词: Coastal currents;    Equatorial Pacific;    Indonesian throughflow;    Intra-seasonal;    Transport variability;    Vertical structures;    Volume estimates;    Western boundary currents;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/176/1/012011/pdf
DOI  :  10.1088/1755-1315/176/1/012011
来源: IOP
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【 摘 要 】

The Indonesian Throughflow passing through the Halmahera Sea (H-ITF) is supposed to be supplied by the western boundary current system, particularly from the New Guinea Coastal Current (NGCC). However, characteristics of H-ITF and NGCC is not well understood yet. This paper aims to investigate vertical structure, transport volume estimate, and transport variability of H-ITF and its coherency with NGCC in the upper 200 m depth. The dataset are obtained from daily INDESO model output (2008-2014). H-ITF across latitude of 0.3°S is indicated by a strong intensified southward flow in upper 150 m with 67.2 km width, and mean transport volume 2.35 (±1.94) Sv (southward). Furthermore, NGCC across 134°E is characterized with 291.2 km width, strong velocity core (>0.4 m/s) in the upper 200 m depth, and transport volume 13.47 (±6.6) Sv (westward). The model indicated that H-ITF is supplied by 17.45% of NGCC. Variability of H-ITF is dominated by intraseasonal period. High coherence (0.85) between H-ITF and NGCC transport is revealed on intraseasonal (45-day) period, with NGCC signal is 4.86 days leading to H-ITF. This sinyal may be associated with a passage of westward equatorial Pacific waves into Halmahera Sea.

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