Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater Environment

A water-rich sand layer is a common stratum in marine underground engineering. Grouting is a technology for soil or rock sealing, a method to solve the water seepage problem, and can be used to solve geological challenges in water-rich sand layers. A grouting-reinforced body deteriorates by the long...

Full description

Bibliographic Details
Main Authors: Hongbo Wang, Quanwei Liu, Shangqu Sun, Qingsong Zhang, Zhipeng Li, Pengfei Zhang
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/12/9/2495
id doaj-a6b83bb23a6547dbb513c56a161c041e
record_format Article
spelling doaj-a6b83bb23a6547dbb513c56a161c041e2020-11-25T02:51:50ZengMDPI AGWater2073-44412020-09-01122495249510.3390/w12092495Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater EnvironmentHongbo Wang0Quanwei Liu1Shangqu Sun2Qingsong Zhang3Zhipeng Li4Pengfei Zhang5College of Civil Engineering and Architecture, Shandong University of Science and Technology, Qingdao 266590, ChinaQingdao West Coast Rail Transit Co., Ltd., Qingdao 266500, ChinaCollege of Civil Engineering and Architecture, Shandong University of Science and Technology, Qingdao 266590, ChinaGeotechnical and Structural Engineering Research Center, Shandong University, Jinan 250100, ChinaSchool of Transportation and Civil Engineering, Shandong Jiaotong University, Jinan 250357, ChinaCollege of Transportation, Shandong University of Science and Technology, Qingdao 250357, ChinaA water-rich sand layer is a common stratum in marine underground engineering. Grouting is a technology for soil or rock sealing, a method to solve the water seepage problem, and can be used to solve geological challenges in water-rich sand layers. A grouting-reinforced body deteriorates by the long-term erosion of seawater, resulting in attenuation of the performance of the solid. Obtaining the decay law of the performance of the grouting-reinforced body can guarantee the safe operation of the underground structure over a long life cycle. To this end, by describing the solid damage after seawater erosion, the stress–strain curve and the relationship between the damage variable and the internal micro-cracks and pores in the grouting-reinforced body were analyzed. Then, a constitutive model of the solid damage in the seawater environment was established. The stress–strain curve of added solid after deterioration was obtained by designing an indoor grouting reinforcement test and an accelerated deterioration test. Finally, the constitutive model of the sand layer plus solid deterioration in a seawater environment was determined. This research is of great importance for improving the deterioration theory under a seawater environment and ensuring the long term safety of tunnel operations.https://www.mdpi.com/2073-4441/12/9/2495sand layergrouted bodyseawater environmentdamage model
collection DOAJ
language English
format Article
sources DOAJ
author Hongbo Wang
Quanwei Liu
Shangqu Sun
Qingsong Zhang
Zhipeng Li
Pengfei Zhang
spellingShingle Hongbo Wang
Quanwei Liu
Shangqu Sun
Qingsong Zhang
Zhipeng Li
Pengfei Zhang
Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater Environment
Water
sand layer
grouted body
seawater environment
damage model
author_facet Hongbo Wang
Quanwei Liu
Shangqu Sun
Qingsong Zhang
Zhipeng Li
Pengfei Zhang
author_sort Hongbo Wang
title Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater Environment
title_short Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater Environment
title_full Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater Environment
title_fullStr Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater Environment
title_full_unstemmed Damage Model and Experimental Study of a Sand Grouting-Reinforced Body in a Seawater Environment
title_sort damage model and experimental study of a sand grouting-reinforced body in a seawater environment
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2020-09-01
description A water-rich sand layer is a common stratum in marine underground engineering. Grouting is a technology for soil or rock sealing, a method to solve the water seepage problem, and can be used to solve geological challenges in water-rich sand layers. A grouting-reinforced body deteriorates by the long-term erosion of seawater, resulting in attenuation of the performance of the solid. Obtaining the decay law of the performance of the grouting-reinforced body can guarantee the safe operation of the underground structure over a long life cycle. To this end, by describing the solid damage after seawater erosion, the stress–strain curve and the relationship between the damage variable and the internal micro-cracks and pores in the grouting-reinforced body were analyzed. Then, a constitutive model of the solid damage in the seawater environment was established. The stress–strain curve of added solid after deterioration was obtained by designing an indoor grouting reinforcement test and an accelerated deterioration test. Finally, the constitutive model of the sand layer plus solid deterioration in a seawater environment was determined. This research is of great importance for improving the deterioration theory under a seawater environment and ensuring the long term safety of tunnel operations.
topic sand layer
grouted body
seawater environment
damage model
url https://www.mdpi.com/2073-4441/12/9/2495
work_keys_str_mv AT hongbowang damagemodelandexperimentalstudyofasandgroutingreinforcedbodyinaseawaterenvironment
AT quanweiliu damagemodelandexperimentalstudyofasandgroutingreinforcedbodyinaseawaterenvironment
AT shangqusun damagemodelandexperimentalstudyofasandgroutingreinforcedbodyinaseawaterenvironment
AT qingsongzhang damagemodelandexperimentalstudyofasandgroutingreinforcedbodyinaseawaterenvironment
AT zhipengli damagemodelandexperimentalstudyofasandgroutingreinforcedbodyinaseawaterenvironment
AT pengfeizhang damagemodelandexperimentalstudyofasandgroutingreinforcedbodyinaseawaterenvironment
_version_ 1724733015770267648