APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJING

Beijing is located in the northwest corner of the North China Plain, with a total area of 16410 km<sup>2</sup>, of which mountainous area accounts for about 61.3 % of the total area. Due to the complex geological and geomorphological conditions, the development of fault structures, the s...

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Main Authors: B. Peng, X. Xiao, B. Zhao, H. Li
Format: Article
Language:English
Published: Copernicus Publications 2022-10-01
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/XLVIII-3-W1-2022/39/2022/isprs-archives-XLVIII-3-W1-2022-39-2022.pdf
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author B. Peng
B. Peng
X. Xiao
X. Xiao
B. Zhao
B. Zhao
H. Li
H. Li
author_facet B. Peng
B. Peng
X. Xiao
X. Xiao
B. Zhao
B. Zhao
H. Li
H. Li
author_sort B. Peng
collection DOAJ
description Beijing is located in the northwest corner of the North China Plain, with a total area of 16410 km<sup>2</sup>, of which mountainous area accounts for about 61.3 % of the total area. Due to the complex geological and geomorphological conditions, the development of fault structures, the spatial-temporal uneven distribution of rainfall and the influence of human engineering activities, there are many sudden geological hazards in Beijing, such as collapse, landslide, debris flow and mining collapse. As is known, Beijing is one of the capital cities with most developed sudden geological hazard in the world. With the continuous development of economy and tourism in mountainous and shallow mountain valleys and the further enhancement of human activities, the threat of sudden geological hazard to Beijing's social and economic development will continue to exist. This paper explores the application of digital twin technology in the survey and prevention of geological hazard in Beijing, mainly using tilt aerial photogrammetry, 3D model production, remote sensing interpretation, ground analysis, database management and other methods to carry out high precision survey, mapping and investigation research. Furthermore, we analyze the relevant features of geological hazard hidden danger points, deeply study their dangers, and establish a two-dimensional and three-dimensional information management system for geological hazard in Beijing's mountainous areas. It is proved that the information management system can effectively improve the management and prevention of geological hazard.
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spelling doaj.art-74124b23bcb948f3800f1dd35961db132022-12-22T02:37:30ZengCopernicus PublicationsThe International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences1682-17502194-90342022-10-01XLVIII-3-W1-2022394410.5194/isprs-archives-XLVIII-3-W1-2022-39-2022APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJINGB. Peng0B. Peng1X. Xiao2X. Xiao3B. Zhao4B. Zhao5H. Li6H. Li7Beijing Institute of Surveying and Mapping, P.R. ChinaBeijing Key Laboratory of Urban Spatial Information Engineering, P.R. ChinaBeijing Institute of Surveying and Mapping, P.R. ChinaBeijing Key Laboratory of Urban Spatial Information Engineering, P.R. ChinaBeijing Institute of Surveying and Mapping, P.R. ChinaBeijing Key Laboratory of Urban Spatial Information Engineering, P.R. ChinaBeijing Institute of Surveying and Mapping, P.R. ChinaBeijing Key Laboratory of Urban Spatial Information Engineering, P.R. ChinaBeijing is located in the northwest corner of the North China Plain, with a total area of 16410 km<sup>2</sup>, of which mountainous area accounts for about 61.3 % of the total area. Due to the complex geological and geomorphological conditions, the development of fault structures, the spatial-temporal uneven distribution of rainfall and the influence of human engineering activities, there are many sudden geological hazards in Beijing, such as collapse, landslide, debris flow and mining collapse. As is known, Beijing is one of the capital cities with most developed sudden geological hazard in the world. With the continuous development of economy and tourism in mountainous and shallow mountain valleys and the further enhancement of human activities, the threat of sudden geological hazard to Beijing's social and economic development will continue to exist. This paper explores the application of digital twin technology in the survey and prevention of geological hazard in Beijing, mainly using tilt aerial photogrammetry, 3D model production, remote sensing interpretation, ground analysis, database management and other methods to carry out high precision survey, mapping and investigation research. Furthermore, we analyze the relevant features of geological hazard hidden danger points, deeply study their dangers, and establish a two-dimensional and three-dimensional information management system for geological hazard in Beijing's mountainous areas. It is proved that the information management system can effectively improve the management and prevention of geological hazard.https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLVIII-3-W1-2022/39/2022/isprs-archives-XLVIII-3-W1-2022-39-2022.pdf
spellingShingle B. Peng
B. Peng
X. Xiao
X. Xiao
B. Zhao
B. Zhao
H. Li
H. Li
APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJING
The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
title APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJING
title_full APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJING
title_fullStr APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJING
title_full_unstemmed APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJING
title_short APPLICATION OF DIGITAL TWINS IN HIGH PRECISION GEOLOGICAL HAZARD SURVEY AND PREVENTION IN BEIJING
title_sort application of digital twins in high precision geological hazard survey and prevention in beijing
url https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLVIII-3-W1-2022/39/2022/isprs-archives-XLVIII-3-W1-2022-39-2022.pdf
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