Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, China

The collapsibility of loess has constantly been a major problem in engineering geology. The determination of the collapsibility process and characteristics of loess are crucial to foundation construction and residents’ life in the Loess Plateau. Thus, a large-scale in situ irrigation collapse experi...

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Main Authors: Xiaozhou Zhang, Yudong Lu, Xin Li, Yangchun Lu, Jianzhong Sun, Wangsheng Pan
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2019/2153679
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spelling doaj-e39f4c8ceb7143ac95de9dec059a1fa12020-11-24T21:53:22ZengHindawi LimitedAdvances in Civil Engineering1687-80861687-80942019-01-01201910.1155/2019/21536792153679Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, ChinaXiaozhou Zhang0Yudong Lu1Xin Li2Yangchun Lu3Jianzhong Sun4Wangsheng Pan5College of Environmental Science and Engineering, Chang’an University, Xi’an 710054, ChinaCollege of Environmental Science and Engineering, Chang’an University, Xi’an 710054, ChinaCollege of Environmental Science and Engineering, Chang’an University, Xi’an 710054, ChinaCollege of Environmental Science and Engineering, Chang’an University, Xi’an 710054, ChinaCollege of Environmental Science and Engineering, Chang’an University, Xi’an 710054, ChinaCollege of Environmental Science and Engineering, Chang’an University, Xi’an 710054, ChinaThe collapsibility of loess has constantly been a major problem in engineering geology. The determination of the collapsibility process and characteristics of loess are crucial to foundation construction and residents’ life in the Loess Plateau. Thus, a large-scale in situ irrigation collapse experiment was conducted on a 10 m2 test pit. A total of 79 benchmarks are used in this experiment. These benchmarks are divided into three categories, namely, deep-buried steel pipe benchmarks, ground benchmarks inside the pit, and ground benchmarks outside the pit. The irrigation and observation time spanned 40 days. In the entire irrigation experiment, a three-day water suspension period resulted in two peaks on the collapsibility velocity curve, thereby showing a remarkable difference in the collapsibility curve from the standard one. In terms of the microstructural deformation types of loess and infiltration process of irrigation water, we found that the collapsibility of loess is a dynamic process apart from being particularly sensitive to water. That is, even after a full collapse of the irrigation process, new pores will eventually form once the water content in the loess begins to decline, thereby providing conditions for another loess collapse. Therefore, multilevel collapsibility can occur during continuous irrigation, which is a problem that has been unexplored in previous applications.http://dx.doi.org/10.1155/2019/2153679
collection DOAJ
language English
format Article
sources DOAJ
author Xiaozhou Zhang
Yudong Lu
Xin Li
Yangchun Lu
Jianzhong Sun
Wangsheng Pan
spellingShingle Xiaozhou Zhang
Yudong Lu
Xin Li
Yangchun Lu
Jianzhong Sun
Wangsheng Pan
Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, China
Advances in Civil Engineering
author_facet Xiaozhou Zhang
Yudong Lu
Xin Li
Yangchun Lu
Jianzhong Sun
Wangsheng Pan
author_sort Xiaozhou Zhang
title Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, China
title_short Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, China
title_full Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, China
title_fullStr Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, China
title_full_unstemmed Multilevel Collapsibility of Loess under Irrigation in Jinya Town, Gansu Province, China
title_sort multilevel collapsibility of loess under irrigation in jinya town, gansu province, china
publisher Hindawi Limited
series Advances in Civil Engineering
issn 1687-8086
1687-8094
publishDate 2019-01-01
description The collapsibility of loess has constantly been a major problem in engineering geology. The determination of the collapsibility process and characteristics of loess are crucial to foundation construction and residents’ life in the Loess Plateau. Thus, a large-scale in situ irrigation collapse experiment was conducted on a 10 m2 test pit. A total of 79 benchmarks are used in this experiment. These benchmarks are divided into three categories, namely, deep-buried steel pipe benchmarks, ground benchmarks inside the pit, and ground benchmarks outside the pit. The irrigation and observation time spanned 40 days. In the entire irrigation experiment, a three-day water suspension period resulted in two peaks on the collapsibility velocity curve, thereby showing a remarkable difference in the collapsibility curve from the standard one. In terms of the microstructural deformation types of loess and infiltration process of irrigation water, we found that the collapsibility of loess is a dynamic process apart from being particularly sensitive to water. That is, even after a full collapse of the irrigation process, new pores will eventually form once the water content in the loess begins to decline, thereby providing conditions for another loess collapse. Therefore, multilevel collapsibility can occur during continuous irrigation, which is a problem that has been unexplored in previous applications.
url http://dx.doi.org/10.1155/2019/2153679
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