Design of a water storage and transmission system for wastewater reuse

 

Table Of Contents


Chapter ONE

INTRODUCTION

  • 1.1Introduction
  • 1.2Background of Study
  • 1.3Problem Statement
  • 1.4Objective of Study
  • 1.5Limitation of Study
  • 1.6Scope of Study
  • 1.7Significance of Study
  • 1.8Structure of the Research
  • 1.9Definition of Terms

Chapter TWO

LITERATURE REVIEW

  • 2.1Overview of Water Storage Systems
  • 2.2Importance of Wastewater Reuse
  • 2.3Design Considerations for Water Transmission Systems
  • 2.4Environmental Impacts of Wastewater Reuse
  • 2.5Technological Innovations in Water Reuse
  • 2.6Economic Aspects of Wastewater Reuse
  • 2.7Policy and Regulatory Frameworks for Water Reuse
  • 2.8Case Studies on Water Storage and Transmission Systems
  • 2.9Challenges and Opportunities in Wastewater Reuse
  • 2.10Future Trends in Water Reuse Technologies

Chapter THREE

SYSTEM DESIGN AND IMPLEMENTATION

  • 3.1Research Methodology Overview
  • 3.2Research Design and Approach
  • 3.3Data Collection Methods
  • 3.4Sampling Techniques
  • 3.5Data Analysis Procedures
  • 3.6Ethical Considerations
  • 3.7Research Limitations
  • 3.8Research Validity and Reliability

Chapter FOUR

SYSTEM TESTING AND EVALUATION

  • 4.1Data Analysis and Interpretation
  • 4.2Findings on Water Storage Systems
  • 4.3Findings on Wastewater Reuse Technologies
  • 4.4Comparative Analysis of Water Transmission Systems
  • 4.5Implications for Sustainable Water Management
  • 4.6Recommendations for Policy and Practice
  • 4.7Future Research Directions
  • 4.8Discussion on the Impact of Findings

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • 5.1Summary of Key Findings
  • 5.2Conclusions Drawn from the Study
  • 5.3Contributions to Knowledge
  • 5.4Practical Implications of the Research
  • 5.5Recommendations for Future Action

Project Abstract

<p> </p><div><p>This research is focused at designing of water storage facilities of size 875,000 litres (750,000 litres for underground water storage, and 125,000 Litres for elevated steel tank) of treated wastewater and its transmission system for the storage and re-use of treated wastewater. The project is aimed to structurally design water storage facilities and its transmission system from the reservoir to the overhead tank for the re-use of treated wastewater in Covenant University. The design works was divided into two major parts namely Transmission system design, and water storage facility Design. Transmission design was divided into two, which are the field activities, and the software activities. Magellan eXplorist 350H North America GPS (Global Positioning System) was used for the field activities, it was used to determine coordinates (Longitudinal and Latitudinal) of various location of points in the university campus, its key usage was to determine the lowest and the highest elevation points on campus, the highest elevated coordinate point was located in between the male postgraduate hall of residence and the postgraduate cafeteria, and the lowest elevated point was at the existing wetland which is directly opposite Daniel’s hall in the campus. The software used for transmission system is WaterCAD, which was used to design the flow path network from the lowest elevation to the highest elevation point. The water storage facility design software used are Staad pro., Orion, and AutoCAD. Staad pro. Was used to analyse and design for the underground water tank, and the elevated steel water tank, while Orion software was used for concrete design and it was used to detail the underground water tank. The result gotten from all the design software were imported to AutoCAD software for editing, scaling, and proper output result.</p><p></p></div><h3></h3><br> <br><p></p>

Project Overview

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