AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA

The existence of a complex river system in Sarawak has contributed to the abundance of its water resources. The State is drained by 22 major river basins and has a combined installed capacity of hydropower potentials of approximately 20,000 MW of sustainable energy. However, little has been documen...

Full description

Saved in:
Bibliographic Details
Main Authors: Joan Alicia, Joseph Blandoi, Mohd. Azizul Hafiz, Jamian, Mohd Azlan Jayasilan, Abdul Gulam Azad
Format: Article
Language:English
Published: UMT 2020
Subjects:
Online Access:http://ir.unimas.my/id/eprint/29588/1/An%20Assessment%20of%20Land%20Use%20Surrounding%20Hydropower%20Reservoirs%20Using%20Remote%20Sensing%20in%20Sarawak%2C%20Malaysia.pdf
http://ir.unimas.my/id/eprint/29588/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.unimas.ir.29588
record_format eprints
spelling my.unimas.ir.295882023-03-31T01:34:11Z http://ir.unimas.my/id/eprint/29588/ AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA Joan Alicia, Joseph Blandoi Mohd. Azizul Hafiz, Jamian Mohd Azlan Jayasilan, Abdul Gulam Azad T Technology (General) The existence of a complex river system in Sarawak has contributed to the abundance of its water resources. The State is drained by 22 major river basins and has a combined installed capacity of hydropower potentials of approximately 20,000 MW of sustainable energy. However, little has been documented on land use around these hydropower dams. The current study is aimed at understanding the general land usecomposition surrounding the existing and planned hydropower reservoirs in Sarawak. The land uses surrounding these dams are expected to influence the livelihood, water discharge and water quality of the dams. A total of ten sites were selected and land use surrounding these study sites identified using Remote Sensing and Geographic Information System tools. Temporal assessment on land-use changes was only conducted for Batang Ai. The study found that a total of six sites have higher forest cover (> 50%) compared to built-up and agricultural lands and showed that 85% variation in built-up land is explained by reservoir area. Agricultural land has increased at the mean rate of 2.25% within 500 metres distance from Batang Ai reservoir shoreline. The findings of this study will hopefully contribute to the knowledge of hydropower reservoir planning and management. UMT 2020-02-02 Article PeerReviewed text en http://ir.unimas.my/id/eprint/29588/1/An%20Assessment%20of%20Land%20Use%20Surrounding%20Hydropower%20Reservoirs%20Using%20Remote%20Sensing%20in%20Sarawak%2C%20Malaysia.pdf Joan Alicia, Joseph Blandoi and Mohd. Azizul Hafiz, Jamian and Mohd Azlan Jayasilan, Abdul Gulam Azad (2020) AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA. Journal of Sustainability Science and Management, 15 (2). pp. 66-78. ISSN 18238556, eISSN: 2672-7226
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic T Technology (General)
spellingShingle T Technology (General)
Joan Alicia, Joseph Blandoi
Mohd. Azizul Hafiz, Jamian
Mohd Azlan Jayasilan, Abdul Gulam Azad
AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA
description The existence of a complex river system in Sarawak has contributed to the abundance of its water resources. The State is drained by 22 major river basins and has a combined installed capacity of hydropower potentials of approximately 20,000 MW of sustainable energy. However, little has been documented on land use around these hydropower dams. The current study is aimed at understanding the general land usecomposition surrounding the existing and planned hydropower reservoirs in Sarawak. The land uses surrounding these dams are expected to influence the livelihood, water discharge and water quality of the dams. A total of ten sites were selected and land use surrounding these study sites identified using Remote Sensing and Geographic Information System tools. Temporal assessment on land-use changes was only conducted for Batang Ai. The study found that a total of six sites have higher forest cover (> 50%) compared to built-up and agricultural lands and showed that 85% variation in built-up land is explained by reservoir area. Agricultural land has increased at the mean rate of 2.25% within 500 metres distance from Batang Ai reservoir shoreline. The findings of this study will hopefully contribute to the knowledge of hydropower reservoir planning and management.
format Article
author Joan Alicia, Joseph Blandoi
Mohd. Azizul Hafiz, Jamian
Mohd Azlan Jayasilan, Abdul Gulam Azad
author_facet Joan Alicia, Joseph Blandoi
Mohd. Azizul Hafiz, Jamian
Mohd Azlan Jayasilan, Abdul Gulam Azad
author_sort Joan Alicia, Joseph Blandoi
title AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA
title_short AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA
title_full AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA
title_fullStr AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA
title_full_unstemmed AN ASSESSMENT OF LAND USE SURROUNDING HYDROPOWER RESERVOIRS USING REMOTE SENSING IN SARAWAK, MALAYSIA
title_sort assessment of land use surrounding hydropower reservoirs using remote sensing in sarawak, malaysia
publisher UMT
publishDate 2020
url http://ir.unimas.my/id/eprint/29588/1/An%20Assessment%20of%20Land%20Use%20Surrounding%20Hydropower%20Reservoirs%20Using%20Remote%20Sensing%20in%20Sarawak%2C%20Malaysia.pdf
http://ir.unimas.my/id/eprint/29588/
_version_ 1762396674930507776
score 13.160551