IDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS

Ambon Bay is separated into Outer Ambon Bay (OAB) and Inner Ambon Bay (IAB) by sill. The existence of this narrow sill can constrain water mass circulation between IAB and OAB, potentially leading to eutrophication in IAB which can trigger the algal blooming phenomena. Therefore, the principal ob...

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Main Author: Alfira Fitriana, Jihan
Format: Final Project
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/78436
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:78436
spelling id-itb.:784362023-09-20T09:00:49ZIDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS Alfira Fitriana, Jihan Geologi, hidrologi & meteorologi Indonesia Final Project Algal blooming, Ambon Bay, Chlorophyll-a variation pattern, Exchange of water mass. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/78436 Ambon Bay is separated into Outer Ambon Bay (OAB) and Inner Ambon Bay (IAB) by sill. The existence of this narrow sill can constrain water mass circulation between IAB and OAB, potentially leading to eutrophication in IAB which can trigger the algal blooming phenomena. Therefore, the principal objective of this research is to observe the phenomenon of algal blooming in Ambon Bay. This research uses chlorophyll-a data from field observation, satellites data, and reanalysis data as proxies to assess blooming condition. The concentration of chlorophyll-a was high in IAB (maximum value 38,45 mg/m3) in January 2019 and November 2021, indicating a substantial amount of water mass trapped in the IAB area. In contrast, in October 2021, the exchange of water mass was not smooth as it remained trapped in the threshold area (maximum value 13,326 mg/m3). The PCA (Principal Component Analysis) results for January–March and May–July 2012, based on field monitoring data, revealed that temperature, chlorophyll-a, and phytoplankton were the primary components contributing to the variability of value in the IAB area (as indicated at stations 1 to 6). Meanwhile, salinity was identified as the primary component contributing to variability in the OAB area (as indicated at stations 9 to 18). The higher distribution pattern of chlorophyll-a in IAB compared to OAB, high probability was attributed to the less smooth water mass exchange, supported by tidal asymmetry and upwelling in the region. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Geologi, hidrologi & meteorologi
spellingShingle Geologi, hidrologi & meteorologi
Alfira Fitriana, Jihan
IDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS
description Ambon Bay is separated into Outer Ambon Bay (OAB) and Inner Ambon Bay (IAB) by sill. The existence of this narrow sill can constrain water mass circulation between IAB and OAB, potentially leading to eutrophication in IAB which can trigger the algal blooming phenomena. Therefore, the principal objective of this research is to observe the phenomenon of algal blooming in Ambon Bay. This research uses chlorophyll-a data from field observation, satellites data, and reanalysis data as proxies to assess blooming condition. The concentration of chlorophyll-a was high in IAB (maximum value 38,45 mg/m3) in January 2019 and November 2021, indicating a substantial amount of water mass trapped in the IAB area. In contrast, in October 2021, the exchange of water mass was not smooth as it remained trapped in the threshold area (maximum value 13,326 mg/m3). The PCA (Principal Component Analysis) results for January–March and May–July 2012, based on field monitoring data, revealed that temperature, chlorophyll-a, and phytoplankton were the primary components contributing to the variability of value in the IAB area (as indicated at stations 1 to 6). Meanwhile, salinity was identified as the primary component contributing to variability in the OAB area (as indicated at stations 9 to 18). The higher distribution pattern of chlorophyll-a in IAB compared to OAB, high probability was attributed to the less smooth water mass exchange, supported by tidal asymmetry and upwelling in the region.
format Final Project
author Alfira Fitriana, Jihan
author_facet Alfira Fitriana, Jihan
author_sort Alfira Fitriana, Jihan
title IDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS
title_short IDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS
title_full IDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS
title_fullStr IDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS
title_full_unstemmed IDENTIFICATION OF ALGAL BLOOM PHENOMENON IN AMBON BAY WATERS
title_sort identification of algal bloom phenomenon in ambon bay waters
url https://digilib.itb.ac.id/gdl/view/78436
_version_ 1822995756938690560