Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental Adaptation

The purpose of this study was to analyze abrasion at the border of Sayung, Demak, Indonesia. Coastal abrasion data were obtained from high-resolution images from 2005-to 2017 by using ArcGIS 10.3, while data on environmental factors that affected abrasion, including tides from 2013-to 2017, was obta...

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Main Author: A. Irsadi, N. K. T. Martuti, M. Abdullah and L. N. Hadiyanti
Format: Article
Language:English
Published: Technoscience Publications 2022-06-01
Series:Nature Environment and Pollution Technology
Subjects:
Online Access:https://neptjournal.com/upload-images/(22)D-1281.pdf
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author A. Irsadi, N. K. T. Martuti, M. Abdullah and L. N. Hadiyanti
author_facet A. Irsadi, N. K. T. Martuti, M. Abdullah and L. N. Hadiyanti
author_sort A. Irsadi, N. K. T. Martuti, M. Abdullah and L. N. Hadiyanti
collection DOAJ
description The purpose of this study was to analyze abrasion at the border of Sayung, Demak, Indonesia. Coastal abrasion data were obtained from high-resolution images from 2005-to 2017 by using ArcGIS 10.3, while data on environmental factors that affected abrasion, including tides from 2013-to 2017, was obtained from BMKG. Based on the analysis and calculations, the area of abrasion at the coast of Sayung, Demak was 262.74 hectares spread over four villages, namely Sri Wulan, Bedono, Timbulsloko, and Surodadi. Avifauna in the mangroves will be severely harmed by abrasion. As a result, abrasion prevention and evaluation, as well as the factors that cause abrasion, are required to reduce the impact of abrasion on the specified shore.
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spelling doaj.art-2950ef4767614bc2849b12265118ad852022-12-22T03:31:31ZengTechnoscience PublicationsNature Environment and Pollution Technology0972-62682395-34542022-06-0121263364110.46488/NEPT.2022.v21i02.022Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental AdaptationA. Irsadi, N. K. T. Martuti, M. Abdullah and L. N. HadiyantiThe purpose of this study was to analyze abrasion at the border of Sayung, Demak, Indonesia. Coastal abrasion data were obtained from high-resolution images from 2005-to 2017 by using ArcGIS 10.3, while data on environmental factors that affected abrasion, including tides from 2013-to 2017, was obtained from BMKG. Based on the analysis and calculations, the area of abrasion at the coast of Sayung, Demak was 262.74 hectares spread over four villages, namely Sri Wulan, Bedono, Timbulsloko, and Surodadi. Avifauna in the mangroves will be severely harmed by abrasion. As a result, abrasion prevention and evaluation, as well as the factors that cause abrasion, are required to reduce the impact of abrasion on the specified shore.https://neptjournal.com/upload-images/(22)D-1281.pdfabrasion, sayung coastline, demak, mitigation and environmental adaptation
spellingShingle A. Irsadi, N. K. T. Martuti, M. Abdullah and L. N. Hadiyanti
Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental Adaptation
Nature Environment and Pollution Technology
abrasion, sayung coastline, demak, mitigation and environmental adaptation
title Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental Adaptation
title_full Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental Adaptation
title_fullStr Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental Adaptation
title_full_unstemmed Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental Adaptation
title_short Abrasion and Accretion Analysis in Demak, Indonesia Coastal for Mitigation and Environmental Adaptation
title_sort abrasion and accretion analysis in demak indonesia coastal for mitigation and environmental adaptation
topic abrasion, sayung coastline, demak, mitigation and environmental adaptation
url https://neptjournal.com/upload-images/(22)D-1281.pdf
work_keys_str_mv AT airsadinktmartutimabdullahandlnhadiyanti abrasionandaccretionanalysisindemakindonesiacoastalformitigationandenvironmentaladaptation