Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic Analysis

Stabilizing pile is widely used in the landslide controlling projects and shows excellent seismic performance under the action of earthquake. Therefore, in order to improve seismic design theory, it is of importance to study the seismic response characteristics of stabilizing pile based on elastic-p...

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Main Authors: Honglue Qu, Ying Liu, Hao Luo, Huanguo Hu, Qindi Hu
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2018/7672587
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spelling doaj-88a36b7838c04bb2a5f178cd3214a72c2020-11-25T00:11:41ZengHindawi LimitedShock and Vibration1070-96221875-92032018-01-01201810.1155/2018/76725877672587Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic AnalysisHonglue Qu0Ying Liu1Hao Luo2Huanguo Hu3Qindi Hu4School of Geoscience and Technology, Southwest Petroleum University, Chengdu 610500, ChinaSchool of Geoscience and Technology, Southwest Petroleum University, Chengdu 610500, ChinaSchool of Geoscience and Technology, Southwest Petroleum University, Chengdu 610500, ChinaChina Chemical Geology and Mine Bureau (Henan Geological Bureau), Zhengzhou 450011, ChinaSchool of Geoscience and Technology, Southwest Petroleum University, Chengdu 610500, ChinaStabilizing pile is widely used in the landslide controlling projects and shows excellent seismic performance under the action of earthquake. Therefore, in order to improve seismic design theory, it is of importance to study the seismic response characteristics of stabilizing pile based on elastic-plastic analysis. In view of this, elastic-plastic constitutive model was established to deduce the plastic zone of stabilizing pile. Based on elastic-plastic analysis, the seismic response characteristics and the influence of different section sizes, material strengths, and peak ground motion acceleration (PGA) were analyzed by ANSYS 3D. Resultantly, the elastic-plastic fourth-order tensor Cijklep was deduced, which can be used to calculate plastic strain of stabilizing pile under loading. Compared with Chinese code, the material of stabilizing pile working with elastic-plastic state will be decreased under the same section size and the same property. Furthermore, stabilizing pile is in the elastic stage at the beginning under the action of earthquake. With the increase of ground motion time, the section starts to exhibit elastic-plastic state and then the plastic zone expands gradually. Finally, the plastic zone runs through the whole section, resulting in the performance loss of the pile. In addition, under the different design parameters, pile shows different seismic response characteristics; namely, changing these parameters reasonably can improve the seismic design.http://dx.doi.org/10.1155/2018/7672587
collection DOAJ
language English
format Article
sources DOAJ
author Honglue Qu
Ying Liu
Hao Luo
Huanguo Hu
Qindi Hu
spellingShingle Honglue Qu
Ying Liu
Hao Luo
Huanguo Hu
Qindi Hu
Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic Analysis
Shock and Vibration
author_facet Honglue Qu
Ying Liu
Hao Luo
Huanguo Hu
Qindi Hu
author_sort Honglue Qu
title Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic Analysis
title_short Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic Analysis
title_full Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic Analysis
title_fullStr Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic Analysis
title_full_unstemmed Seismic Response Characteristics of Stabilizing Pile Based on Elastic-Plastic Analysis
title_sort seismic response characteristics of stabilizing pile based on elastic-plastic analysis
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2018-01-01
description Stabilizing pile is widely used in the landslide controlling projects and shows excellent seismic performance under the action of earthquake. Therefore, in order to improve seismic design theory, it is of importance to study the seismic response characteristics of stabilizing pile based on elastic-plastic analysis. In view of this, elastic-plastic constitutive model was established to deduce the plastic zone of stabilizing pile. Based on elastic-plastic analysis, the seismic response characteristics and the influence of different section sizes, material strengths, and peak ground motion acceleration (PGA) were analyzed by ANSYS 3D. Resultantly, the elastic-plastic fourth-order tensor Cijklep was deduced, which can be used to calculate plastic strain of stabilizing pile under loading. Compared with Chinese code, the material of stabilizing pile working with elastic-plastic state will be decreased under the same section size and the same property. Furthermore, stabilizing pile is in the elastic stage at the beginning under the action of earthquake. With the increase of ground motion time, the section starts to exhibit elastic-plastic state and then the plastic zone expands gradually. Finally, the plastic zone runs through the whole section, resulting in the performance loss of the pile. In addition, under the different design parameters, pile shows different seismic response characteristics; namely, changing these parameters reasonably can improve the seismic design.
url http://dx.doi.org/10.1155/2018/7672587
work_keys_str_mv AT hongluequ seismicresponsecharacteristicsofstabilizingpilebasedonelasticplasticanalysis
AT yingliu seismicresponsecharacteristicsofstabilizingpilebasedonelasticplasticanalysis
AT haoluo seismicresponsecharacteristicsofstabilizingpilebasedonelasticplasticanalysis
AT huanguohu seismicresponsecharacteristicsofstabilizingpilebasedonelasticplasticanalysis
AT qindihu seismicresponsecharacteristicsofstabilizingpilebasedonelasticplasticanalysis
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