Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect Evaluation

In view of the deficiency of the split grouting theory for the filling area, a 3D simulated grouting test system was designed to explore the slurry diffusion law, reinforcement mechanism of split grouting in a filling soil, and effect of grouting reinforcement. The test system included an experiment...

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Main Authors: Jiandong Niu, Zewei Li, Weiheng Gu, Kang Chen
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/11/3088
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spelling doaj-30aa7fd63e4d42a8ac170c6c95f2c9ae2020-11-25T03:10:41ZengMDPI AGSensors1424-82202020-05-01203088308810.3390/s20113088Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect EvaluationJiandong Niu0Zewei Li1Weiheng Gu2Kang Chen3School of Civil Engineering, Central South University, Changsha 410075, ChinaSchool of Civil Engineering, Central South University, Changsha 410075, ChinaSchool of Civil Engineering, Central South University, Changsha 410075, ChinaSchool of Civil Engineering, Central South University, Changsha 410075, ChinaIn view of the deficiency of the split grouting theory for the filling area, a 3D simulated grouting test system was designed to explore the slurry diffusion law, reinforcement mechanism of split grouting in a filling soil, and effect of grouting reinforcement. The test system included an experiment bench system, grouting system, and information monitoring system, using which experimental research on split grouting in a filling soil was conducted. The grouting model experiment procedure was introduced first, following which the diffusion rule of slurry in the filling medium and the reinforcement mechanism of split grouting were analyzed according to the properties and distribution characteristics of grouting veins after grouting reinforcement. Finally, a uniaxial compression test, light dynamic contact test, permeability test, and laboratory geotechnical test were conducted on the soil before and after grouting. The relationship between the zoning characteristics of different properties of veins and the mechanical properties of filling soil were discussed. The results showed that there were three types of grouting veins: trunk grouting, branch grouting, and permeable grouting. The injected soil body was strengthened by the three-stage grouting vein network of the mentioned vein types and the compaction between soils. After the grouting, the uniaxial compressive strength of the filling soil increased by an average of 186%, and the permeability coefficient decreased by an average of 47 times. The cohesion and internal friction angle increased by 45.3% and 44.9%, respectively. Additionally, density, water content, and other indicators of filling were improved. The bearing characteristics reflected by a dynamic contact test were consistent with the distribution of grouting veins. The research results offer significant guidance for the reinforcement mechanism of split grouting and the evaluation of the grouting effect.https://www.mdpi.com/1424-8220/20/11/3088effect evaluationexperimentfillinggrouting veinsmechanismreinforcement
collection DOAJ
language English
format Article
sources DOAJ
author Jiandong Niu
Zewei Li
Weiheng Gu
Kang Chen
spellingShingle Jiandong Niu
Zewei Li
Weiheng Gu
Kang Chen
Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect Evaluation
Sensors
effect evaluation
experiment
filling
grouting veins
mechanism
reinforcement
author_facet Jiandong Niu
Zewei Li
Weiheng Gu
Kang Chen
author_sort Jiandong Niu
title Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect Evaluation
title_short Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect Evaluation
title_full Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect Evaluation
title_fullStr Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect Evaluation
title_full_unstemmed Experimental Study of Split Grouting Reinforcement Mechanism in Filling Medium and Effect Evaluation
title_sort experimental study of split grouting reinforcement mechanism in filling medium and effect evaluation
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-05-01
description In view of the deficiency of the split grouting theory for the filling area, a 3D simulated grouting test system was designed to explore the slurry diffusion law, reinforcement mechanism of split grouting in a filling soil, and effect of grouting reinforcement. The test system included an experiment bench system, grouting system, and information monitoring system, using which experimental research on split grouting in a filling soil was conducted. The grouting model experiment procedure was introduced first, following which the diffusion rule of slurry in the filling medium and the reinforcement mechanism of split grouting were analyzed according to the properties and distribution characteristics of grouting veins after grouting reinforcement. Finally, a uniaxial compression test, light dynamic contact test, permeability test, and laboratory geotechnical test were conducted on the soil before and after grouting. The relationship between the zoning characteristics of different properties of veins and the mechanical properties of filling soil were discussed. The results showed that there were three types of grouting veins: trunk grouting, branch grouting, and permeable grouting. The injected soil body was strengthened by the three-stage grouting vein network of the mentioned vein types and the compaction between soils. After the grouting, the uniaxial compressive strength of the filling soil increased by an average of 186%, and the permeability coefficient decreased by an average of 47 times. The cohesion and internal friction angle increased by 45.3% and 44.9%, respectively. Additionally, density, water content, and other indicators of filling were improved. The bearing characteristics reflected by a dynamic contact test were consistent with the distribution of grouting veins. The research results offer significant guidance for the reinforcement mechanism of split grouting and the evaluation of the grouting effect.
topic effect evaluation
experiment
filling
grouting veins
mechanism
reinforcement
url https://www.mdpi.com/1424-8220/20/11/3088
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AT zeweili experimentalstudyofsplitgroutingreinforcementmechanisminfillingmediumandeffectevaluation
AT weihenggu experimentalstudyofsplitgroutingreinforcementmechanisminfillingmediumandeffectevaluation
AT kangchen experimentalstudyofsplitgroutingreinforcementmechanisminfillingmediumandeffectevaluation
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