Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual Framework
Sinkholes cause subsidence and collapse problems for many transportation infrastructure assets. Subsequently, transportation infrastructure management agencies dedicate a considerable amount of time and money to detect and map sinkholes as part of their asset management programs. Traditionally, sink...
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2019-01-01
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doaj-1e2e8f8c820f4855876da3090cad56232021-03-02T10:03:58ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012710200510.1051/matecconf/201927102005matecconf_tran-set2019_02005Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual FrameworkZhang Su0Bogus Susan1Baros Shirley2Neville Paul3Dow Ryan4Earth Data Analysis Center, University of New MexicoDepartment of Civil, Construction, and Environmental Engineering, University of New MexicoEarth Data Analysis Center, University of New MexicoEarth Data Analysis Center, University of New MexicoDepartment of Civil, Construction, and Environmental Engineering, University of New MexicoSinkholes cause subsidence and collapse problems for many transportation infrastructure assets. Subsequently, transportation infrastructure management agencies dedicate a considerable amount of time and money to detect and map sinkholes as part of their asset management programs. Traditionally, sinkholes are detected through area reconnaissance, which includes visual inspection of a site to locate existing sinkholes or device inspection of a site to locate potential sinkholes or previously filled sinkholes. Another method for sinkhole detection is through a review of maps such as geological maps. These methods are expensive, time-consuming, and labor-intensive. Recent advances in remote sensing, especially airborne light detection and ranging (LiDAR), allows for the examination of the change in the Earth's surface elevation accurately and rapidly. The focus of this study is to develop a conceptual framework for sinkhole detection and mapping with airborne LiDAR. This conceptual framework lays the foundation for the future application of airborne LiDAR for sinkhole detection and mapping.https://www.matec-conferences.org/articles/matecconf/pdf/2019/20/matecconf_tran-set2019_02005.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhang Su Bogus Susan Baros Shirley Neville Paul Dow Ryan |
spellingShingle |
Zhang Su Bogus Susan Baros Shirley Neville Paul Dow Ryan Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual Framework MATEC Web of Conferences |
author_facet |
Zhang Su Bogus Susan Baros Shirley Neville Paul Dow Ryan |
author_sort |
Zhang Su |
title |
Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual Framework |
title_short |
Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual Framework |
title_full |
Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual Framework |
title_fullStr |
Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual Framework |
title_full_unstemmed |
Karst Sinkhole Detecting and Mapping Using Airborne LiDAR - A Conceptual Framework |
title_sort |
karst sinkhole detecting and mapping using airborne lidar - a conceptual framework |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2019-01-01 |
description |
Sinkholes cause subsidence and collapse problems for many transportation infrastructure assets. Subsequently, transportation infrastructure management agencies dedicate a considerable amount of time and money to detect and map sinkholes as part of their asset management programs. Traditionally, sinkholes are detected through area reconnaissance, which includes visual inspection of a site to locate existing sinkholes or device inspection of a site to locate potential sinkholes or previously filled sinkholes. Another method for sinkhole detection is through a review of maps such as geological maps. These methods are expensive, time-consuming, and labor-intensive. Recent advances in remote sensing, especially airborne light detection and ranging (LiDAR), allows for the examination of the change in the Earth's surface elevation accurately and rapidly. The focus of this study is to develop a conceptual framework for sinkhole detection and mapping with airborne LiDAR. This conceptual framework lays the foundation for the future application of airborne LiDAR for sinkhole detection and mapping. |
url |
https://www.matec-conferences.org/articles/matecconf/pdf/2019/20/matecconf_tran-set2019_02005.pdf |
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