利用 Sentinel-3 OLCI 分析 2020-2021 年印度尼西亚东部水域叶绿素 a 的变化情况

Eko Handoko, Noorlaila Hayati, Muhammad Syariz, M. Hanansyah
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引用次数: 0

摘要

印度尼西亚东部水域对全球气候系统和海洋连通性具有重要影响。然而,印度尼西亚贯穿流(ITF)促进了太平洋水域向印度洋的流动。这种水流垂直混合了东部地区的水团,导致浮游植物集中。此外,表明叶绿素-a 浓度的浮游植物的分布还受到上升流和下沉流现象的影响。叶绿素-a 在海洋生态系统中负责捕捉碳和产生氧气,对调节气候变化非常重要。此外,海洋条件对叶绿素-a 浓度的散布也有重要影响。因此,本研究采用海洋颜色遥感技术来评估叶绿素-a 的分布。多时相 Sentinel-3 海洋和陆地颜色仪器(OLCI)收集了每月的海洋颜色数据。分析结果包括与洋流和厄尔尼诺南方涛动(ENSO)相关的叶绿素-a 浓度。使用 Case-2 区域海岸色彩(C2RCC)处理器进行数据处理后,印度尼西亚东部水域的平均叶绿素-a 浓度为 0.16 至 0.52。结果显示,东南季风(7 月至 9 月)期间叶绿素-a 浓度较高,而西北季风(1 月至 3 月)期间叶绿素-a 浓度较低。
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Analysis of Chlorophyll-a Variability in the Eastern Indonesian Waters Using Sentinel-3 OLCI from 2020-2021
The Eastern Indonesian waters are significant in influencing the global climate system and oceanic connectivity. However, the Indonesian Through Flow (ITF) facilitates the movement of waters from the Pacific Ocean to the Indian Ocean. This flow vertically mixes water masses in the Eastern regions, leading to the concentration of phytoplankton. In addition, the distribution of phytoplankton, indicative of chlorophyll-a concentration, is influenced by upwelling and downwelling phenomena. Chlorophyll-a, responsible for capturing carbon and producing oxygen in marine ecosystems, is important in regulating climate change. Moreover, oceanographic conditions play a significant role in the dispersion of chlorophyll-a concentration. Therefore, this study adopted ocean colour remote sensing technology to assess chlorophyll-a distribution. Monthly ocean colour data was collected by the multi-temporal Sentinel-3 Ocean and Land Colour Instrument (OLCI). The analysis output included chlorophyll-a concentration associated with currents and the El Nino Southern Oscillation (ENSO). Data processing using the Case-2 Regional Coast Colour (C2RCC) processor resulted in an average chlorophyll-a concentration in the Eastern Indonesian waters ranging from 0.16 to 0.52. The results showed higher chlorophyll-a levels during the southeast monsoon (July to September) and lower levels during the northwest monsoon (January to March).
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