The 2015 Shenzhen catastrophic landslide in a construction waste dump: analyses of undrained strength and slope stability

被引:32
作者
Zhan, Liang-tong [1 ]
Guo, Xiao-gang [1 ]
Sun, Qian-qian [1 ]
Chen, Yun-min [1 ]
Chen, Zu-yu [2 ]
机构
[1] Zhejiang Univ, MOE Key Lab Soft Soils & Geoenvironm Engn, Hangzhou 310058, Peoples R China
[2] China Inst Water Resources & Hydropower Res, Beijing 100044, Peoples R China
基金
中国国家自然科学基金;
关键词
Construction waste dump; Completely decomposed granite; Slope stability; Total stress based analysis; Undrained shear strength; Wetting; LANDFILL; SOILS;
D O I
10.1007/s11440-020-01083-8
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The 2015 catastrophic landslide in a 110-m-high waste dump in Shenzhen is recognized as one of the largest landfill failure worldwide. An earlier comprehensive field investigation revealed that the dominant component of the fill was completely decomposed granite (CDG), and the dumping operation was accompanied by a rise of the groundwater level. In this paper, the complex stress paths for the initially unsaturated fill materials being subjected to both rapid filling and wetting were investigated. A simplified method was proposed for estimating the gain of undrained shear strength under the complex stress paths. Soil samples were taken from the site to a laboratory to measure the undrained shear strength and validate the estimation method. Total stress-based stability analyses were carried out to calculate the factor of safety of the dump at failure. The triggering mechanism of the landslide is clarified as follows: The gain of shear strength with the surcharge loading for the wet layer in the lower part of the waste dump was limited by a build-up of excess pore-water pressure. The gain of shear strength for the relatively dry fill material was attenuated with the rise of groundwater level. When the shear strength was not enough to resist the increasing slip force with the surcharge loading, a deep-seated translational failure took place in the lower wet layer of the waste dump. The proposed method for analyses of undrained strength and slope stability are proven to be applicable to the waste-dumping operation with rapid filling and rising groundwater level.
引用
收藏
页码:1247 / 1263
页数:17
相关论文
共 31 条
[1]  
CHEN Li-hong, 2003, ROCK SOIL MECH, V24, P229
[2]  
Chen Z-Y, 2003, PRINCIPLES METHODS P
[3]   Predictive accuracy of combined genetic and environmental risk scores [J].
Dudbridge, Frank ;
Pashayan, Nora ;
Yang, Jian .
GENETIC EPIDEMIOLOGY, 2018, 42 (01) :4-19
[4]   Investigation and dynamic analysis of the long runout catastrophic landslide at the Shenzhen landfill on December 20, 2015, in Guangdong, China [J].
Gao, Yang ;
Yin, Yueping ;
Li, Bin ;
Wang, Wenpei ;
Zhang, Nan ;
Yang, Chunxu ;
Zuo, Xiao .
ENVIRONMENTAL EARTH SCIENCES, 2017, 76 (01)
[5]   An edge-based strain smoothing particle finite element method for large deformation problems in geotechnical engineering [J].
Jin, Yin-Fu ;
Yuan, Wei-Hai ;
Yin, Zhen-Yu ;
Cheng, Yung-Ming .
INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 2020, 44 (07) :923-941
[6]   STABILITY EVALUATION DURING STAGED CONSTRUCTION [J].
LADD, CC .
JOURNAL OF GEOTECHNICAL ENGINEERING-ASCE, 1991, 117 (04) :540-615
[7]  
Li D, 2018, CONSTR TECHNOL, V47, P134
[8]   Dynamic process simulation of construction solid waste (CSW) landfill landslide based on SPH considering dilatancy effects [J].
Liang, Heng ;
He, Siming ;
Lei, Xiaoqin ;
Bi, Yuzhang ;
Liu, Wei ;
Ouyang, Chaojun .
BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT, 2019, 78 (02) :763-777
[9]  
LOWE J, 1967, J SOIL MECH FDN DIV, V93, P1
[10]   Suction stress characteristic curve for unsaturated soil [J].
Lu, N ;
Likos, WJ .
JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2006, 132 (02) :131-142