A geology-constrained new intelligence method of synthesizing geologic bodies

Due to its massive content, complex processing logic and heavy repeated workload, geologic body synthesis, as the key task in the geological map compilation, is the primary factor affecting the process. Therefore, our study aims to realize the high-efficiency synthesis of geologic bodies. This paper...

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Main Authors: XU Ke, WANG Yongzhi, CHEN Yuanyuan, CHEN Tanglei, JIANG Zuorui
Format: Article
Language:zho
Published: Institute of Geomechanics, Chinese Academy of Geological Sciences 2021-06-01
Series:Dizhi lixue xuebao
Subjects:
Online Access:https://journal.geomech.ac.cn//article/doi/10.12090/j.issn.1006-6616.2021.27.03.033
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author XU Ke
WANG Yongzhi
CHEN Yuanyuan
CHEN Tanglei
JIANG Zuorui
author_facet XU Ke
WANG Yongzhi
CHEN Yuanyuan
CHEN Tanglei
JIANG Zuorui
author_sort XU Ke
collection DOAJ
description Due to its massive content, complex processing logic and heavy repeated workload, geologic body synthesis, as the key task in the geological map compilation, is the primary factor affecting the process. Therefore, our study aims to realize the high-efficiency synthesis of geologic bodies. This paper presents a new intelligence method of synthesizing geologic bodies, which takes geological constraints (expert knowledge) as the core and cartographic generalization as the means to merge spatial graphs. Also three ways of synthesizing geologic bodies were designed (merging geologic bodies with the same properties, merging interactively selected geologic bodies, merging geologic bodies into drawn bigger polygons) based on regular mapping of geological expert knowledge such as geological age, stratigraphic name. By using the geological map data in the Beishan area to test the geologic body merging module, and through repeated comparative experiments, it is proved that this intelligence method can not only rapidly realize the "one-click" synthesis of the spatial graphs of geologic bodies, but also complete the automatic mapping and assignment of geological knowledge. The comprehensive results accord with the geological rule. This method provides an effective automatic tool for simplifying geologic bodies or other surface elements to reflect the spatial distribution in a geological map.
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spelling doaj.art-944608f87a6a476fae84d055988644962023-02-28T01:29:46ZzhoInstitute of Geomechanics, Chinese Academy of Geological SciencesDizhi lixue xuebao1006-66162021-06-0127336537310.12090/j.issn.1006-6616.2021.27.03.033A geology-constrained new intelligence method of synthesizing geologic bodiesXU Ke0WANG YongzhiCHEN Yuanyuan1CHEN Tanglei2JIANG Zuorui3College of Geo-exploration Science & Technology, Jilin University, Changchun 130061, Jilin, ChinaHebei Regional Geological Survey Institute, Langfang 065000, Hebei, ChinaCollege of Geo-exploration Science & Technology, Jilin University, Changchun 130061, Jilin, ChinaBeijing Space-Time Technique Development Limited Company, Beijing 100083, ChinaDue to its massive content, complex processing logic and heavy repeated workload, geologic body synthesis, as the key task in the geological map compilation, is the primary factor affecting the process. Therefore, our study aims to realize the high-efficiency synthesis of geologic bodies. This paper presents a new intelligence method of synthesizing geologic bodies, which takes geological constraints (expert knowledge) as the core and cartographic generalization as the means to merge spatial graphs. Also three ways of synthesizing geologic bodies were designed (merging geologic bodies with the same properties, merging interactively selected geologic bodies, merging geologic bodies into drawn bigger polygons) based on regular mapping of geological expert knowledge such as geological age, stratigraphic name. By using the geological map data in the Beishan area to test the geologic body merging module, and through repeated comparative experiments, it is proved that this intelligence method can not only rapidly realize the "one-click" synthesis of the spatial graphs of geologic bodies, but also complete the automatic mapping and assignment of geological knowledge. The comprehensive results accord with the geological rule. This method provides an effective automatic tool for simplifying geologic bodies or other surface elements to reflect the spatial distribution in a geological map.https://journal.geomech.ac.cn//article/doi/10.12090/j.issn.1006-6616.2021.27.03.033geologic body synthesisgeological knowledgeartificial intelligencecartography generalization
spellingShingle XU Ke
WANG Yongzhi
CHEN Yuanyuan
CHEN Tanglei
JIANG Zuorui
A geology-constrained new intelligence method of synthesizing geologic bodies
Dizhi lixue xuebao
geologic body synthesis
geological knowledge
artificial intelligence
cartography generalization
title A geology-constrained new intelligence method of synthesizing geologic bodies
title_full A geology-constrained new intelligence method of synthesizing geologic bodies
title_fullStr A geology-constrained new intelligence method of synthesizing geologic bodies
title_full_unstemmed A geology-constrained new intelligence method of synthesizing geologic bodies
title_short A geology-constrained new intelligence method of synthesizing geologic bodies
title_sort geology constrained new intelligence method of synthesizing geologic bodies
topic geologic body synthesis
geological knowledge
artificial intelligence
cartography generalization
url https://journal.geomech.ac.cn//article/doi/10.12090/j.issn.1006-6616.2021.27.03.033
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