MOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA

<p align="justify">The eruption of Mount Semeru on December 4 2021 caused material and non-material losses. This research aims to simulate lava flows that can be used as a means of minimizing the impact of the disaster. Digital Terrain Model (DTM) data is used to simulate lava flo...

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Main Author: Hendrawan, Argi
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/73427
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:73427
spelling id-itb.:734272023-06-20T10:30:48ZMOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA Hendrawan, Argi Indonesia Final Project semeru, laharz, H/L cone, proximal, distal INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/73427 <p align="justify">The eruption of Mount Semeru on December 4 2021 caused material and non-material losses. This research aims to simulate lava flows that can be used as a means of minimizing the impact of the disaster. Digital Terrain Model (DTM) data is used to simulate lava flows using the laharz algorithm based on three main processes, namely creating hydrological flows, creating proximal hazard zones and creating distal hazard zones. Simulated lava flows were generated using three flow volume scenarios, namely 5 million m3, 10 million m3, and 20 million m3 which were compared with historical maps of existing lava flow traces and maps of Kawasan Rawan Bencana (KRB) Gunung Semeru. The simulation results show more similarities with the KRB map compared to the historical maps of existing lava flows. Based on the resulting simulation, to maximize mitigation it is recommended to take a safe zone of more than 4 km from the river border. 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
description <p align="justify">The eruption of Mount Semeru on December 4 2021 caused material and non-material losses. This research aims to simulate lava flows that can be used as a means of minimizing the impact of the disaster. Digital Terrain Model (DTM) data is used to simulate lava flows using the laharz algorithm based on three main processes, namely creating hydrological flows, creating proximal hazard zones and creating distal hazard zones. Simulated lava flows were generated using three flow volume scenarios, namely 5 million m3, 10 million m3, and 20 million m3 which were compared with historical maps of existing lava flow traces and maps of Kawasan Rawan Bencana (KRB) Gunung Semeru. The simulation results show more similarities with the KRB map compared to the historical maps of existing lava flows. Based on the resulting simulation, to maximize mitigation it is recommended to take a safe zone of more than 4 km from the river border.
format Final Project
author Hendrawan, Argi
spellingShingle Hendrawan, Argi
MOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA
author_facet Hendrawan, Argi
author_sort Hendrawan, Argi
title MOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA
title_short MOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA
title_full MOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA
title_fullStr MOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA
title_full_unstemmed MOUNTAIN SEMERU LAHAR FLOW SIMULATION BASED ON DIGITAL TERRAIN MODEL (DTM) DATA
title_sort mountain semeru lahar flow simulation based on digital terrain model (dtm) data
url https://digilib.itb.ac.id/gdl/view/73427
_version_ 1822007104211255296