Effects of heterogeneity distribution on hillslope stability during rainfalls
The objective of this study was to investigate the spatial relationship between the most likely distribution of saturated hydraulic conductivity (Ks) and the observed pressure head (P) distribution within a hillslope. The cross-correlation analysis method was used to investigate the effects of the v...
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doaj-fb7beb3f8c2f48f99226f0e0bc2d2a312020-11-24T20:46:32ZengElsevierWater Science and Engineering1674-23702016-04-019213414410.1016/j.wse.2016.06.004Effects of heterogeneity distribution on hillslope stability during rainfallsJing-sen Cai0E-chuan Yan1Tian-chyi Jim Yeh2Yuan-yuan Zha3Faculty of Engineering, China University of Geosciences, Wuhan 430074, ChinaFaculty of Engineering, China University of Geosciences, Wuhan 430074, ChinaDepartment of Hydrology and Water Resources, University of Arizona, Tucson, AZ 85721, USADepartment of Hydrology and Water Resources, University of Arizona, Tucson, AZ 85721, USAThe objective of this study was to investigate the spatial relationship between the most likely distribution of saturated hydraulic conductivity (Ks) and the observed pressure head (P) distribution within a hillslope. The cross-correlation analysis method was used to investigate the effects of the variance of lnKs, spatial structure anisotropy of lnKs, and vertical infiltration flux (q) on P at some selected locations within the hillslope. The cross-correlation analysis shows that, in the unsaturated region with a uniform flux boundary, the dominant correlation between P and Ks is negative and mainly occurs around the observation location of P. A relatively high P value is located in a relatively low Ks zone, while a relatively low P value is located in a relatively high Ks zone. Generally speaking, P is positively correlated with q/Ks at the same location in the unsaturated region. In the saturated region, the spatial distribution of Ks can significantly affect the position and shape of the phreatic surface. We therefore conclude that heterogeneity can cause some parts of the hillslope to be sensitive to external hydraulic stimuli (e.g., rainfall and reservoir level change), and other parts of the hillslope to be insensitive. This is crucial to explaining why slopes with similar geometries would show different responses to the same hydraulic stimuli, which is significant to hillslope stability analysis.http://www.sciencedirect.com/science/article/pii/S1674237016300163Cross-correlation analysisHeterogeneityHillslope stabilitySaturated hydraulic conductivityStochastic conceptualizationPore-water pressure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jing-sen Cai E-chuan Yan Tian-chyi Jim Yeh Yuan-yuan Zha |
spellingShingle |
Jing-sen Cai E-chuan Yan Tian-chyi Jim Yeh Yuan-yuan Zha Effects of heterogeneity distribution on hillslope stability during rainfalls Water Science and Engineering Cross-correlation analysis Heterogeneity Hillslope stability Saturated hydraulic conductivity Stochastic conceptualization Pore-water pressure |
author_facet |
Jing-sen Cai E-chuan Yan Tian-chyi Jim Yeh Yuan-yuan Zha |
author_sort |
Jing-sen Cai |
title |
Effects of heterogeneity distribution on hillslope stability during rainfalls |
title_short |
Effects of heterogeneity distribution on hillslope stability during rainfalls |
title_full |
Effects of heterogeneity distribution on hillslope stability during rainfalls |
title_fullStr |
Effects of heterogeneity distribution on hillslope stability during rainfalls |
title_full_unstemmed |
Effects of heterogeneity distribution on hillslope stability during rainfalls |
title_sort |
effects of heterogeneity distribution on hillslope stability during rainfalls |
publisher |
Elsevier |
series |
Water Science and Engineering |
issn |
1674-2370 |
publishDate |
2016-04-01 |
description |
The objective of this study was to investigate the spatial relationship between the most likely distribution of saturated hydraulic conductivity (Ks) and the observed pressure head (P) distribution within a hillslope. The cross-correlation analysis method was used to investigate the effects of the variance of lnKs, spatial structure anisotropy of lnKs, and vertical infiltration flux (q) on P at some selected locations within the hillslope. The cross-correlation analysis shows that, in the unsaturated region with a uniform flux boundary, the dominant correlation between P and Ks is negative and mainly occurs around the observation location of P. A relatively high P value is located in a relatively low Ks zone, while a relatively low P value is located in a relatively high Ks zone. Generally speaking, P is positively correlated with q/Ks at the same location in the unsaturated region. In the saturated region, the spatial distribution of Ks can significantly affect the position and shape of the phreatic surface. We therefore conclude that heterogeneity can cause some parts of the hillslope to be sensitive to external hydraulic stimuli (e.g., rainfall and reservoir level change), and other parts of the hillslope to be insensitive. This is crucial to explaining why slopes with similar geometries would show different responses to the same hydraulic stimuli, which is significant to hillslope stability analysis. |
topic |
Cross-correlation analysis Heterogeneity Hillslope stability Saturated hydraulic conductivity Stochastic conceptualization Pore-water pressure |
url |
http://www.sciencedirect.com/science/article/pii/S1674237016300163 |
work_keys_str_mv |
AT jingsencai effectsofheterogeneitydistributiononhillslopestabilityduringrainfalls AT echuanyan effectsofheterogeneitydistributiononhillslopestabilityduringrainfalls AT tianchyijimyeh effectsofheterogeneitydistributiononhillslopestabilityduringrainfalls AT yuanyuanzha effectsofheterogeneitydistributiononhillslopestabilityduringrainfalls |
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