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Quality and improvement of bearing capacity of sandy soil by grouting

 

Table Of Contents


Thesis Abstract

Abstract
Sandy soil is a common type of soil found in many regions worldwide, characterized by its low cohesion and poor load-bearing capacity. In construction projects, the weak bearing capacity of sandy soil can pose significant challenges and risks. Grouting, a technique of injecting a pumpable material into the soil to improve its properties, has been widely used to enhance the strength and stability of sandy soil. This research project aims to investigate the quality and improvement of the bearing capacity of sandy soil through grouting. The study will focus on understanding the mechanisms involved in the grouting process and how they contribute to strengthening the soil structure. Various types of grouting materials, including cementitious grouts, chemical grouts, and organic grouts, will be evaluated for their effectiveness in enhancing the bearing capacity of sandy soil. Laboratory testing will be conducted to assess the performance of different grouting materials in sandy soil samples. Tests such as unconfined compression tests, triaxial shear tests, and permeability tests will be carried out to measure the strength, deformation characteristics, and permeability of the grouted soil. The results of these tests will provide insights into the optimal grouting materials and techniques for improving the bearing capacity of sandy soil. In addition to laboratory testing, numerical modeling will be employed to simulate the behavior of grouted sandy soil under different loading conditions. Finite element analysis will be used to predict the response of the grouted soil to varying stress levels and consolidation processes. The modeling results will help in understanding the long-term performance of grouted sandy soil and optimizing the grouting design for practical applications. Furthermore, field studies will be conducted to validate the findings from laboratory testing and numerical modeling. Pilot grouting projects will be implemented on actual sandy soil sites, and the performance of the grouted soil will be monitored over time. Field observations and measurements will provide valuable data on the effectiveness of grouting in real-world scenarios and allow for the refinement of grouting techniques for sandy soil improvement. Overall, this research project aims to contribute to the advancement of grouting technology for enhancing the bearing capacity of sandy soil in construction and geotechnical engineering applications. By improving the understanding of grouting mechanisms and optimizing grouting materials and techniques, this study seeks to provide practical solutions for strengthening sandy soil and mitigating the risks associated with its weak bearing capacity.

Thesis Overview

  1. INTRODUCTION

The construction of structure on weak ground often requires the soil to be improved in order to ensure the safety and the stability of surrounding buildings. The ground improvement in granular soils can be achieved by different methods such as vibro-floatation, compaction piles, and compaction with explosives, excavation and replacement, grouting e.t.c. The selective of the most suitable method depend on a variety of factors, such as: soil conditions, required degree of compaction, types of structure to be supported, as well as site specific considerations available time for completion of the project, availability of equipment and materials e.t.c. Soil compaction can offer effective solutions for many foundation problems and his especially useful for reducing total settlement in sand. Sandy soil means most of the soil particles are bigger than 2mm in diameter. It gives good water drainage and has a low capacity to hold nutrients. Sandy soil does not hold moisture very well. It is granular and consists of rock and mineral particle that are very small. Therefore, the texture is gritty and is formed by the disintegration and weathering of rocks such as limestone, granite, quartz and shale. Is also easier to cultivate it if it is rich in organic materials but then it allows drainage more than needed. This results in over drainage and dehydration of the plant in summer. It warms very fast in the spring season. Grouting on the other hand is a process whereby stabilizes either in the form of suspension or solution is injected into sub surface soil. Sandy soil is the largest particle in the soil when you rub it, if feels rough. This is because it has sharp edges and it does not hold many nutrients.

    1. HISTORICAL BACKGROUND OF GROUTING

The development and history of compaction grouting over the last 30-40 years as been established by many distinguished researcher, design engineer and design contractor. Many technical papers are been published dealing physically with the issues surround compaction grouting design such as: β€œcompaction grouting, 1973”, β€œplanning and performing compaction grouting” 1974. These and other important reference are the main stream basis of knowledge for the highly specialize engineering and construction technique know as compaction grouting. The compaction grout method as some unique features which allow distinct advantages over other remedial method of geo-technical construction. In many distances growth is the only viable solution. Some of the advantages include: Economic: Many time compaction grouting is the only feasible solution to foundation settlement problems, other than demolishing the structure and re-building with expensive deep foundation technique. Minimal disturbance: During the grouting operation, destructure may remain occupied and in service. Minimal risk: Compaction grouting offers minimal risk of catastrophic structural failure while re-leveling structure. Other are: Minimal geotechnical exploration, provide greater support for structures, cost factor e.t.c.

    1. AIM AND OBJECTIVE
  1. To determine the nature of the sandy soil particles.
  2. To determine the degree of the sandy soil compatibility.
  3. To carry out the improvement of sandy soil through grouting.
  4. To carryout some laboratory test on sandy soil such as compaction test California bearing ration (CBR) test, atterberg LIMIT test, liquid limit test, Plastic limit test, sieve analysis test in comparing the effectiveness of grouting system.
    1. SCOPE OF THE STUDY

This research is focused on the quality and improvement of bearing capacity of sandy soil by grouting.

    1. LIMITATIONS OF THE STUDY

The limitations of this study are: TIME FACTOR: Limited time that does not permit to carryout many practical. AREA OF STUDY: This project is limited the technical study of sandy soil properties.



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