A model experimental study of the formation mechanism of internal erosion caves in fractured loess

The formation mechanism of caves in fissured loess at the edge of the loess platform plateau is complex and is closely related to the occurrence of geological hazards such as landslides, which pose a serious threat to the production and life of people in this region. To address the scientific proble...

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Main Authors: Buping ZHANG, Xinghua ZHU, Hengfei SUN, Jiale CAI, Xi CHENG
Format: Article
Language:zho
Published: Editorial Office of Hydrogeology & Engineering Geology 2023-11-01
Series:Shuiwen dizhi gongcheng dizhi
Subjects:
Online Access:https://www.swdzgcdz.com/en/article/doi/10.16030/j.cnki.issn.1000-3665.202209052
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author Buping ZHANG
Xinghua ZHU
Hengfei SUN
Jiale CAI
Xi CHENG
author_facet Buping ZHANG
Xinghua ZHU
Hengfei SUN
Jiale CAI
Xi CHENG
author_sort Buping ZHANG
collection DOAJ
description The formation mechanism of caves in fissured loess at the edge of the loess platform plateau is complex and is closely related to the occurrence of geological hazards such as landslides, which pose a serious threat to the production and life of people in this region. To address the scientific problem of how internal erosion caves are formed in the fissured loess, four sets of experiments on the formation mechanism of internal erosion caves in loess under different initial fissure opening conditions are carried out using the visualisation of the internal erosion caves formation mechanism model of the fissured loess in the South Plateau of Jingyang as a reference. The results show that the development process from the fractured loess to the internal erosion of caves under water flowing erosion can be divided into three stages, including the hydraulic erosion stage, the infiltration and erosion stage and the gravity collapse stage. The formation mechanism of the internal erosion caves in the fractured loess can be summarized as follows: Softening and sputtering, scouring and widening, erosion and cavitation, and collapsing by gravity. The development rate of seepage erosion in the fractured loess is reflected by the sediment quantity and transport characteristics, which can be divided into the rapid erosion stage, the fluctuation reduction stage and the slow and stable erosion stage. The fracture opening, the erodibility of loess and the ultimate groove depth are important factors affecting the formation of internal erosion caves in the fractured loess. The research results provide theoretical support to further reveal the disaster-causing effects of loess internal erosion.
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spelling doaj.art-2bcf220410964cdfb7770f6686aa58b12023-12-05T01:09:48ZzhoEditorial Office of Hydrogeology & Engineering GeologyShuiwen dizhi gongcheng dizhi1000-36652023-11-0150615816710.16030/j.cnki.issn.1000-3665.202209052202209052A model experimental study of the formation mechanism of internal erosion caves in fractured loessBuping ZHANG0Xinghua ZHU1Hengfei SUN2Jiale CAI3Xi CHENG4School of Geological Engineering and Surveying, Chang’an University, Xi’an, Shaanxi 710054, ChinaSchool of Geological Engineering and Surveying, Chang’an University, Xi’an, Shaanxi 710054, ChinaSchool of Geological Engineering and Surveying, Chang’an University, Xi’an, Shaanxi 710054, ChinaSchool of Geological Engineering and Surveying, Chang’an University, Xi’an, Shaanxi 710054, ChinaSchool of Geological Engineering and Surveying, Chang’an University, Xi’an, Shaanxi 710054, ChinaThe formation mechanism of caves in fissured loess at the edge of the loess platform plateau is complex and is closely related to the occurrence of geological hazards such as landslides, which pose a serious threat to the production and life of people in this region. To address the scientific problem of how internal erosion caves are formed in the fissured loess, four sets of experiments on the formation mechanism of internal erosion caves in loess under different initial fissure opening conditions are carried out using the visualisation of the internal erosion caves formation mechanism model of the fissured loess in the South Plateau of Jingyang as a reference. The results show that the development process from the fractured loess to the internal erosion of caves under water flowing erosion can be divided into three stages, including the hydraulic erosion stage, the infiltration and erosion stage and the gravity collapse stage. The formation mechanism of the internal erosion caves in the fractured loess can be summarized as follows: Softening and sputtering, scouring and widening, erosion and cavitation, and collapsing by gravity. The development rate of seepage erosion in the fractured loess is reflected by the sediment quantity and transport characteristics, which can be divided into the rapid erosion stage, the fluctuation reduction stage and the slow and stable erosion stage. The fracture opening, the erodibility of loess and the ultimate groove depth are important factors affecting the formation of internal erosion caves in the fractured loess. The research results provide theoretical support to further reveal the disaster-causing effects of loess internal erosion.https://www.swdzgcdz.com/en/article/doi/10.16030/j.cnki.issn.1000-3665.202209052fractured loessinternal erosioncavesformation mechanismmodel experiment
spellingShingle Buping ZHANG
Xinghua ZHU
Hengfei SUN
Jiale CAI
Xi CHENG
A model experimental study of the formation mechanism of internal erosion caves in fractured loess
Shuiwen dizhi gongcheng dizhi
fractured loess
internal erosion
caves
formation mechanism
model experiment
title A model experimental study of the formation mechanism of internal erosion caves in fractured loess
title_full A model experimental study of the formation mechanism of internal erosion caves in fractured loess
title_fullStr A model experimental study of the formation mechanism of internal erosion caves in fractured loess
title_full_unstemmed A model experimental study of the formation mechanism of internal erosion caves in fractured loess
title_short A model experimental study of the formation mechanism of internal erosion caves in fractured loess
title_sort model experimental study of the formation mechanism of internal erosion caves in fractured loess
topic fractured loess
internal erosion
caves
formation mechanism
model experiment
url https://www.swdzgcdz.com/en/article/doi/10.16030/j.cnki.issn.1000-3665.202209052
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