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Structural Systems of Residential Projects

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Free Download Structural Systems of Residential Projects
Published 4/2026
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 4h 39m | Size: 7.57 GB
Place columns, create structural plans, and develop professional sheets


What you'll learn


Read and understand the architectural plans of a project
Distribute columns effectively and correctly in the architectural plans
Create structural plans for the project's slabs
Place drop beams and hidden beams effectively in the structural plans for the slabs
Study hollow-block slabs in detail and discuss key aspects
Examine the statical system for staircases
Create the structural plan for the ground beams
Discuss important aspects of ground beams using detailed drawings
Create the structural plan for the project's foundation
Explore different types of foundations
Place column axes for the project
Arrange the project layout effectively
Create a professional sheet for each structural plan
Learn and use AutoCAD effectively

Requirements


Some knowledge of AutoCAD
Basic structural analysis
Some knowledge about reinforced concrete

Description


The course will focus on the structural system of the project. First, I will outline the steps involved in the structural system. Then, I will discuss our project in detail, along with the important topics we will cover in this course. The structural system will mainly focus on the following
• Choosing the appropriate slab system for the project (hollow block slab, flat slab, or solid slab).
• Distributing columns effectively in the architectural plans.
• Creating structural plans for the slabs of the project.
• Creating the structural plan for the ground beams.
• Creating the structural plan for the foundation.
• Placing column axes for the project.
In the structural system, our objective is to develop professional structural plans for the project. We aim to convert the architectural plans into detailed structural drawings used for construction.
In my opinion, what distinguishes a structural design engineer from another is their ability to create and develop an excellent structural system for the project that meets the client's desires, while ensuring safety and cost-effectiveness.
This course consists of 54 lessons divided into 4 sections
• First Section: Read the architectural plans and distribute the columns.
• Second Section: Create the structural plans for the slabs.
• Third Section: Develop the structural plans for the ground beams and the foundation.
• Fourth Section: Place the column axes, arrange the project, and prepare a professional sheet for each structural plan.
Our project is a residential building comprising three floors: the ground floor, the first floor, and the top floor. The architect will provide you with the architectural plans for the project. As a structural design engineer or civil engineer, your task is to create professional structural plans.
To begin, it's essential to carefully analyze and understand the architectural plans. In this course, we will cover the following topics
• Learning how to read the architectural plans of the project.
• Discussing the details presented in the architectural plans.
Next, we will focus on distributing the columns effectively in the architectural plans. Effective column distribution is key to creating a professional structural system for the project and is the initial step influencing subsequent stages. The ability to distribute columns effectively distinguishes one structural design engineer from another. Throughout the course, we will
• Use the powerful AutoCAD tool, the "Edit Block In - place" window, for column distribution and highlight its advantages.
• Discuss important rules for column distribution with detailed drawings to illustrate these rules.
• Place columns that will support the building.
• Distribute columns along the outer walls, which separate your property from neighboring properties.
• Discuss important considerations related to the outer walls using detailed drawings.
After distributing the columns in the architectural plans, our next step will be to construct the slabs of the project. We will create
• The structural plan for the ground floor slab.
• The structural plan for the first floor slab.
• The structural plan for the top floor slab.
In this course, the slab system chosen for our project is the hollow-block slab for several reasons
• The hollow-block slab is widely used in residential buildings.
• Designing the structural system of a hollow-block slab requires effective planning due to its complex structural system, which includes various components such as hidden beams, drop beams, solid parts connected with drop beams, ribs (including one-way ribs in x-direction, one-way ribs in y-direction, and two-way ribs), a thin slab on top, and blocks filling the gaps between the ribs.
• Hidden beams in hollow-block slabs can be inclined in the plan, providing flexibility and design advantages.
During the course, we will
• Discuss the components of the hollow-block slab using detailed drawings.
• Cover important aspects related to the solid parts with detailed drawings.
• Develop professional structural plans for the slabs.
During the process of creating the structural plans for the slabs, we will discuss several important topics. For example, we will study the structural system of the staircase, covering the following points
• The types of stairs.
• How the staircase will be supported.
• How loads are transferred in the staircase.
• How the architect represents the staircase in the plan.
• How the structural engineer represents the staircase in the plan.
• The type of slab used in the staircase.
• Other relevant topics related to the staircase.
We will illustrate all these important aspects of the staircase with detailed drawings.
We will also discuss all important aspects related to drop beams and hidden beams, including their differences, the rigidity of drop beams versus hidden beams, criteria for using hidden and drop beams, reasons for the inclination of hidden beams, preferred locations for both types, methods for calculating hidden beam widths, and other relevant topics. Detailed drawings will be used to cover these aspects comprehensively.
Additionally, we will study the structural system of the slabs for bathrooms and kitchens. These areas will use solid slab systems instead of hollow block slabs. The solid slab is thinner, and adjustments are needed to lower the slab level for accommodating pipes. We will discuss how the solid slab will connect with the hollow-block slab and cover all important points related to the solid slab for bathrooms and kitchens using detailed drawings.
After creating the structural plans for the slabs, our next step will be to construct the ground beams of the project. We will outline the uses of ground beams and discuss important considerations with detailed drawings. We will develop a professional structural plan for the ground beams.
After creating the structural plans for the ground beams, our next step will be to develop the foundation plan for the project. We will cover important topics related to the foundation, including
• Different types of foundations: shallow foundations and deep foundations.
• Key types of shallow foundations such as isolated footings, combined footings, and raft foundations.
• Differences between these types and their appropriate usage.
• Review of some shop drawings related to footings.
• Additional relevant topics.
We will explain these important aspects of the foundation using detailed drawings. Additionally, we will discuss points related to the soil report. We will create a professional structural plan for the foundation.
Once the structural plan for the foundation is complete, we will place the column axes for the project. We will learn how to draw the column axes using the edit block-in-place window, discuss important rules regarding column axes, and understand the reasons for their placement in the project.
After completing all the structural plans for the project, we will proceed to the final step of creating a complete structural system by preparing professional sheets. Each sheet will include
• The structural plan.
• The reinforcement schedule related to the structural plan.
• Shop drawings related to reinforced concrete elements in the structural plan.
• Notes and specifications related to the structural plan.
• The company logo.
• Basic project information such as the owner's name, the engineer's name, and the project name.
We will learn how to construct each component of these sheets.
At the end of the course, we will prepare professional sheets for the structural plans, including
• A professional sheet for the structural plan of the ground floor slab.
• A professional sheet for the structural plan of the first floor slab.
• A professional sheet for the structural plan of the top floor slab.
• A professional sheet for the structural plan for the ground beams.
• A professional sheet for the structural plan for the foundation.

Who this course is for


Civil engineers interested in designing structural buildings

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