Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi Geografis
Rising sea levels originating from high tides and inundating land are known as tidal flooding. The cases of tidal floods are increasing day by day, especially in areas directly adjacent to the high seas. One of the areas that are prone to tidal flooding is North Jakarta. This study aims to determine...
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Format: | Article |
Language: | English |
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Department of Earth Science and Technology, Universitas Negeri Gorontalo
2022-07-01
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Series: | Jambura Geoscience Review |
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Online Access: | https://ejurnal.ung.ac.id/index.php/jgeosrev/article/view/14196 |
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author | Indah Ferdiani Zuhriah Bambang Setiadi Seftiawan Samsu Rijal |
author_facet | Indah Ferdiani Zuhriah Bambang Setiadi Seftiawan Samsu Rijal |
author_sort | Indah Ferdiani Zuhriah |
collection | DOAJ |
description | Rising sea levels originating from high tides and inundating land are known as tidal flooding. The cases of tidal floods are increasing day by day, especially in areas directly adjacent to the high seas. One of the areas that are prone to tidal flooding is North Jakarta. This study aims to determine the areas affected by the tidal flood and the extent of the area affected by the tidal flood in the Jakarta City area. This research can be used to take preventive action for residents to face the tidal flood disaster. The tidal flood height modeling was obtained based on the value of Mean Sea Level (MSL), Higher High Water Level (HHWL), and the trend of global rising tides. The result of this study is a map of areas affected by tidal flooding, where the lowest is at an altitude of 0.4 m in Penjaringan and Cilincing. At the height of this tidal flood, the impact was approximately 54 hectares of residential areas, 59 hectares of buildings, and 146 hectares of agricultural activities. The highest area affected by the tidal flood is at an altitude of 1.96 m which inundates the coastal District of Penjaringan, Cilincing, Pademangan, and Tanjung Priok Port. The height of the highest tidal flood impacts 983 ha of residential areas, 493 ha of buildings, and 830 ha of the agricultural sector were inundated. At the height of the tidal flood, which is almost 2 m high, it is necessary to carry out careful disaster mitigation efforts for the local government. |
first_indexed | 2024-12-11T01:44:48Z |
format | Article |
id | doaj.art-23793749bb314251b89651c5aaa272d1 |
institution | Directory Open Access Journal |
issn | 2623-0682 2656-0380 |
language | English |
last_indexed | 2024-12-11T01:44:48Z |
publishDate | 2022-07-01 |
publisher | Department of Earth Science and Technology, Universitas Negeri Gorontalo |
record_format | Article |
series | Jambura Geoscience Review |
spelling | doaj.art-23793749bb314251b89651c5aaa272d12022-12-22T01:24:56ZengDepartment of Earth Science and Technology, Universitas Negeri GorontaloJambura Geoscience Review2623-06822656-03802022-07-014213614410.34312/jgeosrev.v4i2.141964348Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi GeografisIndah Ferdiani Zuhriah0Bambang Setiadi1Seftiawan Samsu Rijal2Program Studi Ilmu Kelautan, Fakultas Perikanan dan Ilmu Kelautan, Universitas Brawijaya, Malang 65145Pusat Penelitian Geoteknologi, Badan Riset dan Inovasi Nasional, Bandung 40135Program Studi Ilmu Kelautan, Fakultas Perikanan dan Ilmu Kelautan, Universitas Brawijaya, Malang 65145 Laboratorium Eksplorasi Sumberdaya Hayati Laut, Fakultas Perikanan dan Ilmu Kelautan, Universitas Brawijaya, Malang 65145Rising sea levels originating from high tides and inundating land are known as tidal flooding. The cases of tidal floods are increasing day by day, especially in areas directly adjacent to the high seas. One of the areas that are prone to tidal flooding is North Jakarta. This study aims to determine the areas affected by the tidal flood and the extent of the area affected by the tidal flood in the Jakarta City area. This research can be used to take preventive action for residents to face the tidal flood disaster. The tidal flood height modeling was obtained based on the value of Mean Sea Level (MSL), Higher High Water Level (HHWL), and the trend of global rising tides. The result of this study is a map of areas affected by tidal flooding, where the lowest is at an altitude of 0.4 m in Penjaringan and Cilincing. At the height of this tidal flood, the impact was approximately 54 hectares of residential areas, 59 hectares of buildings, and 146 hectares of agricultural activities. The highest area affected by the tidal flood is at an altitude of 1.96 m which inundates the coastal District of Penjaringan, Cilincing, Pademangan, and Tanjung Priok Port. The height of the highest tidal flood impacts 983 ha of residential areas, 493 ha of buildings, and 830 ha of the agricultural sector were inundated. At the height of the tidal flood, which is almost 2 m high, it is necessary to carry out careful disaster mitigation efforts for the local government.https://ejurnal.ung.ac.id/index.php/jgeosrev/article/view/14196geographic information systeminundation heightland usetidal flood |
spellingShingle | Indah Ferdiani Zuhriah Bambang Setiadi Seftiawan Samsu Rijal Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi Geografis Jambura Geoscience Review geographic information system inundation height land use tidal flood |
title | Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi Geografis |
title_full | Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi Geografis |
title_fullStr | Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi Geografis |
title_full_unstemmed | Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi Geografis |
title_short | Pemodelan Banjir Rob Wilayah Jakarta Utara Menggunakan Sistem Informasi Geografis |
title_sort | pemodelan banjir rob wilayah jakarta utara menggunakan sistem informasi geografis |
topic | geographic information system inundation height land use tidal flood |
url | https://ejurnal.ung.ac.id/index.php/jgeosrev/article/view/14196 |
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