DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3D

In March 2011, Eastern Japan suffered serious damage of Tsunami caused by a massive earthquake. In 2012, Ministry of Land, Infrastructure and Transport published “Guideline of setting assumed areas of inundation by Tsunami” to establish the conditions of topography data used for simulation of Tsun...

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Main Authors: S. Hatake, Y. Kohori, Y. Watanabe
Format: Article
Language:English
Published: Copernicus Publications 2016-06-01
Series:The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
Online Access:https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLI-B1/595/2016/isprs-archives-XLI-B1-595-2016.pdf
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author S. Hatake
Y. Kohori
Y. Watanabe
author_facet S. Hatake
Y. Kohori
Y. Watanabe
author_sort S. Hatake
collection DOAJ
description In March 2011, Eastern Japan suffered serious damage of Tsunami caused by a massive earthquake. In 2012, Ministry of Land, Infrastructure and Transport published “Guideline of setting assumed areas of inundation by Tsunami” to establish the conditions of topography data used for simulation of Tsunami. In this guideline, the elevation data prepared by Geographical Survey Institute of Japan and 2m/5m/10m mesh data of NSDI are adopted for land area, while 500m mesh data of Hydrographic and Oceanographic Department of Japan Coast Guard and sea charts are adopted for water area. These data, however, do not have continuity between land area and water area. Therefore, in order to study the possibility of providing information for coastal disaster prevention, we have developed an efficient method to acquire continuous topography over land and water including tidal zone. Land area data are collected by Mobile Mapping System (MMS) and water area depth data are collected by interferometry echo sounder (C3D), and both data are simultaneously acquired on a same boat. Elaborate point cloud data of 1m or smaller are expected to be used for realistic simulation of Tsunami waves going upstream around shoreline. Tests were made in Tokyo Bay (in 2014) and Osaka Bay (in 2015). The purpose the test in Osaka Bay is to make coastal map for disaster prevention as a countermeasure for predicted Nankai massive earthquake. In addition to Tsunami simulation, the continuous data covering land and marine areas are expected to be used effectively for maintenance and repair of aged port and river facilities, maintenance and investigation of dykes, and ecosystem preservation.
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spelling doaj.art-e0984161c4344077af37fbfc48064e6d2022-12-22T03:20:40ZengCopernicus PublicationsThe International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences1682-17502194-90342016-06-01XLI-B159559910.5194/isprs-archives-XLI-B1-595-2016DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3DS. Hatake0Y. Kohori1Y. Watanabe2Asia Air Survey, Geospatial Information Division , 2150004 Kawawaki, Kanagawa, JapanAsia Air Survey, Geospatial Information Division , 2150004 Kawawaki, Kanagawa, JapanArc Geo Support, Osaka branch, Chuou-ku, Osaka, JapanIn March 2011, Eastern Japan suffered serious damage of Tsunami caused by a massive earthquake. In 2012, Ministry of Land, Infrastructure and Transport published “Guideline of setting assumed areas of inundation by Tsunami” to establish the conditions of topography data used for simulation of Tsunami. In this guideline, the elevation data prepared by Geographical Survey Institute of Japan and 2m/5m/10m mesh data of NSDI are adopted for land area, while 500m mesh data of Hydrographic and Oceanographic Department of Japan Coast Guard and sea charts are adopted for water area. These data, however, do not have continuity between land area and water area. Therefore, in order to study the possibility of providing information for coastal disaster prevention, we have developed an efficient method to acquire continuous topography over land and water including tidal zone. Land area data are collected by Mobile Mapping System (MMS) and water area depth data are collected by interferometry echo sounder (C3D), and both data are simultaneously acquired on a same boat. Elaborate point cloud data of 1m or smaller are expected to be used for realistic simulation of Tsunami waves going upstream around shoreline. Tests were made in Tokyo Bay (in 2014) and Osaka Bay (in 2015). The purpose the test in Osaka Bay is to make coastal map for disaster prevention as a countermeasure for predicted Nankai massive earthquake. In addition to Tsunami simulation, the continuous data covering land and marine areas are expected to be used effectively for maintenance and repair of aged port and river facilities, maintenance and investigation of dykes, and ecosystem preservation.https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLI-B1/595/2016/isprs-archives-XLI-B1-595-2016.pdf
spellingShingle S. Hatake
Y. Kohori
Y. Watanabe
DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3D
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
title DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3D
title_full DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3D
title_fullStr DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3D
title_full_unstemmed DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3D
title_short DISASTER PREVENTION COASTAL MAP PRODUCTION BY MMS & C3D
title_sort disaster prevention coastal map production by mms c3d
url https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLI-B1/595/2016/isprs-archives-XLI-B1-595-2016.pdf
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AT ykohori disasterpreventioncoastalmapproductionbymmsc3d
AT ywatanabe disasterpreventioncoastalmapproductionbymmsc3d