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Dr. Mohammed Hasan Almughalles

In this course I would like to teach you simple method of Sanitary Sewage Collection Network design. After this course you will be able to confidently use excel sheets in design of accurate and economic Sanitary Sewage Collection Network.

The course consists of 4 sections:

Section 1: Introduction about Sanitary Sewage Collection Sewers, and about the structures and components of the course.

Section 2: Basic Considerations in the Design of Sewers includes:

1. Project area

2. Design Period

3. Population Density

4. Field Work

5. Final Connection Point

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In this course I would like to teach you simple method of Sanitary Sewage Collection Network design. After this course you will be able to confidently use excel sheets in design of accurate and economic Sanitary Sewage Collection Network.

The course consists of 4 sections:

Section 1: Introduction about Sanitary Sewage Collection Sewers, and about the structures and components of the course.

Section 2: Basic Considerations in the Design of Sewers includes:

1. Project area

2. Design Period

3. Population Density

4. Field Work

5. Final Connection Point

6. The Manholes 6.1 Manhole structure 6.2 Drop Manhole 6.3 Manhole Locations and Spacing

7. The Trench

8. Alignments and Flow Directions

9. Numbering of Lines and Manholes

10. Pipe Materials

11. Design Sewage Flows

12. Flow Formulas

13. Partial Flow

Section 3: Design Criteria includes:

1. Minimum Size

2. Minimum and Maximum Velocities

3. Minimum and Maximum Slop

4. Sewer Depth

5. Minimum Cover

Section 4: Design of Sanitary Sewers by Excel Sheet includes:

1. Location

2. Population

3. Design Flow

4. Sewer Size & Slop

5. Full Velocity (Vf) & Full Flow (Qf)

6. Partial Flow Percentages (Q/Qf, V/Vf, d/D)

7. Actual Velocity (V)

8. Sewer Layout (Ground Surface Elevations & Sewer Invert Elevations)

9. Manhole Depths

In this course the excel sheet will be used in the design, because excel sheet simplify the calculation due to the relationships between the cells are by equations so when you change any value, all calculations of design will be automatically changed. You can use the same excel sheet of design, just you have to insert your input data of and you will get the results, but just you have to check the standard ranges and the criteria that explained in the course.

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What's inside

Learning objectives

  • Define and knowing all basic considerations for sewage collection network design
  • Define and knowing all criteria for sewage collection network design
  • Knowing the structures and installation of the almost of sewage collection network components and appartances
  • Design sewage collection network for any area or city anywhere in the world

Syllabus

Introduction
Basic Considerations in the Design of Sanitary Sewers
Project Area, Design Period, Population Density, and Field Work
Final Connection Point
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Traffic lights

Read about what's good
what should give you pause
and possible dealbreakers
Uses Excel sheets to simplify calculations, which is a practical skill for civil engineers in designing accurate and economic sanitary sewage collection networks
Covers essential design considerations such as project area, population density, and flow formulas, which are fundamental for designing sewage collection networks
Explores manhole structures, trench design, and pipe materials, which are important components in the construction and maintenance of sewage collection systems
Focuses on design criteria like minimum size, velocity, and slope, which are crucial for ensuring efficient and compliant sewage collection network operation
Requires learners to check standard ranges and criteria, which may require access to external resources and engineering standards
Relies on Excel for design calculations, which may not be suitable for advanced engineering projects that require specialized software

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Reviews summary

Design of sanitary sewage network using excel

Based on the course description, this course aims to teach a simple method for Sanitary Sewage Collection Network design using Excel sheets. It covers basic considerations and design criteria before focusing on the practical application with the spreadsheet. The stated goal is to enable learners to confidently use excel sheets and simplify the calculation process, allowing for automatic updates when inputs change. As there are currently no student reviews available, this summary is based solely on the course information provided. Potential students should evaluate the syllabus to ensure it meets their specific needs for designing sewage networks.
Focused specifically on sewage network design.
"This course seems perfect if you specifically need to learn how to design sanitary sewage networks."
"The topic is very niche, directly applicable to specific engineering roles."
"It appears to provide the targeted skills needed for this type of infrastructure project."
Introduces a straightforward design approach.
"The promise of a 'simple method' is appealing for learning the basics quickly."
"While simple, I would need to check if it covers sufficient detail for complex real-world scenarios."
"The simplicity could be a strength for those new to this specific type of design calculation."
Covers basic considerations and design criteria.
"The syllabus indicates coverage of essential considerations like population, flow, and design period."
"It appears the course clearly explains criteria for slopes, velocities, and sewer depths."
"Understanding the basics laid out in the early sections seems helpful for the practical design."
Learn design calculation with an Excel sheet.
"The excel sheet approach seems like it would simplify the calculation process significantly for design tasks."
"Using the spreadsheet makes changing inputs and seeing results easy and efficient."
"I anticipate I could confidently use the Excel method taught for designing networks after taking this course."

Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Design of Sanitary Sewage Collection Network with these activities:
Review Fluid Mechanics Principles
Refresh your understanding of fluid mechanics principles, especially those related to flow in pipes and open channels, to better grasp the concepts of flow formulas and partial flow in sewer design.
Browse courses on Fluid Mechanics
Show steps
  • Review textbook chapters on fluid mechanics.
  • Solve practice problems related to flow velocity and discharge.
  • Familiarize yourself with different flow regimes (laminar, turbulent).
Review 'Wastewater Engineering: Treatment and Resource Recovery'
Study this book to gain a deeper understanding of wastewater characteristics, treatment processes, and the overall context of sanitary sewer systems within the broader wastewater management framework.
Show steps
  • Read chapters related to wastewater characteristics and flow estimation.
  • Review sections on sewer system design and materials.
  • Take notes on key concepts and formulas.
Excel Sheet Practice
Practice using Excel to perform calculations related to sewer design, such as flow estimation, velocity calculations, and slope determination, to become proficient with the tool used in the course.
Show steps
  • Create an Excel sheet to calculate sewer flow based on population and design flow rates.
  • Implement flow formulas (e.g., Manning's equation) in Excel.
  • Practice calculating partial flow percentages using Excel functions.
  • Test the sheet with different input values to observe the changes in the results.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Review 'Urban Hydrology and Sewer Design'
Consult this book to deepen your understanding of the hydrological principles underlying sewer design, including rainfall-runoff relationships and their impact on sewer flow rates.
Show steps
  • Read chapters related to rainfall-runoff modeling and sewer design.
  • Review sections on stormwater management and its impact on sewer systems.
  • Take notes on key concepts and formulas related to urban hydrology.
Create a Design Report Template
Develop a template for a sanitary sewer design report, including sections for project area description, design criteria, calculations, and sewer layout, to solidify your understanding of the design process and create a reusable resource.
Show steps
  • Outline the sections of a typical sanitary sewer design report.
  • Create placeholders for data input and calculation results.
  • Include sections for sewer layout and manhole details.
  • Add a section for design considerations and justifications.
Tutor a classmate
Help a classmate who is struggling with the course material, particularly the Excel sheet design or flow calculations, to reinforce your own understanding and develop your teaching skills.
Show steps
  • Identify a classmate who needs help with the course material.
  • Schedule a tutoring session to review the concepts and calculations.
  • Explain the concepts in a clear and concise manner.
  • Provide examples and practice problems to reinforce understanding.
Design a Sewer System for a Hypothetical Subdivision
Apply the concepts learned in the course to design a complete sanitary sewer system for a hypothetical subdivision, including determining pipe sizes, slopes, and manhole locations, to demonstrate your ability to apply the design principles.
Show steps
  • Define the project area and population density.
  • Estimate design sewage flows based on population data.
  • Determine pipe sizes and slopes using Excel calculations.
  • Create a sewer layout plan showing pipe locations and manhole depths.
  • Document all design assumptions and calculations in a report.

Career center

Learners who complete Design of Sanitary Sewage Collection Network will develop knowledge and skills that may be useful to these careers:
Sanitary Engineer
A Sanitary Engineer specializes in the design and implementation of systems for water and wastewater treatment and distribution. This course provides targeted knowledge in sanitary sewage collection network design, essential for safely and efficiently managing wastewater. The course is of use in the calculation of sewage flows, sewer sizing, and layout using Excel, which are critical skills for sanitary engineering projects. Any individual with a masters degree who wants to be a Sanitary Engineer may consider this course.
Environmental Engineer
An Environmental Engineer develops solutions to environmental problems. This course helps build a foundation in the design of sanitary sewage collection networks, which is crucial for preventing water pollution and protecting public health. The course offers knowledge of flow formulas and design criteria, which are essential for designing effective and sustainable wastewater management systems. Understanding manhole structures, trench design, and pipe materials will be useful for Environmental Engineers. This course may be helpful for anyone considering this career.
Civil Engineer
A Civil Engineer plans, designs, and oversees construction and maintenance of building and infrastructure projects. This course helps build a foundation in the specific area of sanitary sewage collection network design, a critical aspect of civil engineering related to public health and environmental protection. The course provides skills in using Excel for efficient design calculations, which are essential for civil engineers to ensure accuracy and cost-effectiveness in their projects. Knowing about project areas, design periods, population densities, and flow formulas are all essential to the role of Civil Engineer. This course may be useful to anyone who desires to enter this career.
Water Resource Specialist
Water Resource Specialists analyze and manage water resources. This course helps build a foundation in the efficient and environmentally sound design of sanitary sewage collection networks. The course would be of use to any individual who wishes to gain knowledge of the water needs of a community, essential for effective resource management. Knowing about the design sewage flows is key for a Water Resource Specialist. Individuals may be interested in this career.
Public Health Engineer
A Public Health Engineer focuses on protecting communities from environmental risks. This course helps build a foundation in designing sanitary sewage collection networks, which are vital for preventing waterborne diseases and safeguarding public health. The course will be of use in the understanding of design flows and partial flow percentages, which are important factors in ensuring effective and safe wastewater management. Learning the basic considerations in the design of sanitary sewers helps Public Health Engineers provide safe water to communities.
Environmental Consultant
An Environmental Consultant helps organizations comply with environmental regulations and improve their environmental performance. This course helps build a foundation for the construction of sanitary sewage collection networks. The course emphasizes the importance of proper design and maintenance of these networks to prevent environmental contamination. Learning about flow formulas and partial flow percentages may be helpful for any Environmental Consultant.
Wastewater Technician
A Wastewater Technician operates and maintains equipment used in wastewater treatment plants. This course may be helpful in understanding the design and function of sanitary sewage collection networks, which feed into these treatment plants. The course enhances knowledge of sewer layouts, manhole depths, and flow characteristics, enabling technicians to better monitor and troubleshoot the system. Technicians will be grateful to have insight into the considerations of project area, design period, population density, and field work. Knowing the structures and installation of sewage collection network components sets up Wastewater Technicians for success.
Sustainability Consultant
A Sustainability Consultant advises organizations on how to operate in a more environmentally responsible manner. This course may be useful in the design and creation of more sustainable sanitary sewage collection networks. The course improves knowledge of efficient design practices and the use of appropriate materials that minimize environmental impact. Knowing about pipe materials and design sewage flows sets up Sustainability Consultants for success.
Construction Manager
A Construction Manager plans, coordinates, and oversees construction projects from start to finish. Learning practical knowledge of sanitary sewage collection network design provides value for efficient management of infrastructure projects. The course covers essential design considerations and Excel-based calculations that are applicable to the construction phase. Understanding of the final connection point is key. Any Construction Manager may find this course to be of use.
Geotechnical Engineer
A Geotechnical Engineer investigates subsurface conditions and materials to assess risks associated with construction projects. This course may be useful in helping Geotechnical Engineers understand the soil and groundwater conditions affecting the design and installation of sanitary sewage collection networks. The course includes instruction on the trench. Knowing the structure of manholes is essential.
Urban Planner
An Urban Planner develops plans and programs for land use. This course may be useful in understanding the infrastructure needs of a community, particularly regarding sanitary sewage collection networks. The course sheds light on the design considerations and spatial requirements for these networks, informing decisions about land use and infrastructure development. Knowing about population density and project areas may be helpful for an Urban Planner. This course is a nice introduction to this career.
CAD Technician
A CAD Technician creates technical drawings from engineers' and architects' designs. This course may be helpful in understanding the design considerations for sanitary sewage collection networks, allowing them to translate these designs accurately into CAD drawings. Understanding the numbering of lines and manholes may be helpful. This course sets up success for anyone who wants to be a CAD Technician.
Surveyor
A Surveyor establishes official land, air, and water boundaries. The locations that are specified in this course may provide helpful context. This course may be useful to anyone who wants to know about land, air, and water boundaries. Knowing the alignments and flow directions may be helpful for a Surveyor. Understanding locations and numberings of lines and manholes will also be beneficial. This course is a good introduction to this career.
Hydrologist
A Hydrologist studies the distribution, circulation, and physical properties of the earth's underground and surface waters. The sanitary sewage collection networks mentioned in this course may be helpful to Hydrologists. This course provides hands-on experience with sewage locations, population, and design flows. Hydrologists will appreciate this course.
Project Manager
A Project Manager oversees specific projects, ensuring that they are completed on time and within budget. This course may be useful in designing sanitary sewage collection networks. The course will be of use to anyone who wants to learn about project area, design period, population density, and field work. Any Project Manager could benefit from this course.

Reading list

We've selected two books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Design of Sanitary Sewage Collection Network.
Comprehensive resource on wastewater engineering principles and practices. It provides detailed information on the design of wastewater collection and treatment systems. It valuable reference for understanding the underlying principles of sanitary sewer design. It is commonly used as a textbook in environmental engineering programs.
Provides a comprehensive overview of urban hydrology and sewer design principles. It covers topics such as rainfall-runoff modeling, sewer system design, and stormwater management. It valuable resource for understanding the hydrological aspects of sanitary sewer systems. It is often used as a reference by practicing engineers.

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