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AulaGEO Academy and Juan Carlos Orozco Montoya

The objective of the course is to provide the participant with the basic and advanced tools of the modeling program, not only will a Design of the structural elements of the building be reached, the building will also be analyzed based on the detailed plans, using the tool most powerful in the market in the development of structural projects software

The internal spreadsheets of the Depending on the ACI 318-14 standard. The detailed structural elements (Cutting Walls) in the AUTOCAD software will be reached.

Content:

Lecture 1: Introduction

Lecture 2: Definition of grid and materials

Read more

The objective of the course is to provide the participant with the basic and advanced tools of the modeling program, not only will a Design of the structural elements of the building be reached, the building will also be analyzed based on the detailed plans, using the tool most powerful in the market in the development of structural projects software

The internal spreadsheets of the Depending on the ACI 318-14 standard. The detailed structural elements (Cutting Walls) in the AUTOCAD software will be reached.

Content:

Lecture 1: Introduction

Lecture 2: Definition of grid and materials

Lecture 3: Definition of cracked sections in columns

Lecture 4: Definition of cracked sections in beams

Lecture 5: Definition of cracked walls and factor system CD

Lecture 6: Drawing of columns, beams, walls and slabs

Lecture 7: Staircase drawing and assignment of escale loads

Lecture 8: Load assignment to the elevator and malled of wall

Lecture 9: Generalities of wall and assignment of rigid diaphragm

Lecture 10: NSR-10 Design spectrum

Lecture 11: NSR-10 P2 Design spectrum

Lecture 12: NSR-10 P3 Design spectrum

Lecture 13: Design spectrum in P1

Lecture 26: Detailed in drawings, wall of PB. P2

Lecture 27: Detailed in drawings, wall of P1

Lecture 28: Detailed in drawings, P2 wall

Lecture 29: Detailed in drawings, P3 wall

Lecture 30: Analysis of the walls P1 assigned to ETABS

Lecture 31: Analysis of the walls P2 assigned to ETABS

Lecture 32: Analysis of the walls assigned to ETABS

Lecture 33: Combination of walls with columns in ETABS

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The course is in English and contains subtitles in the following languages, German, Arabic, Chinese, Korean, Danish, French, Greek, Dutch, Hebrew, Indonesian, Italian, Japanese, Portuguese, Polish, Persian, Russian, Swedish, Thai, Turkish and Vietnamese.

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What's inside

Syllabus

Introduction
Design definitions
Definition of grid and materials
Definition of cracked sections in columns
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Traffic lights

Read about what's good
what should give you pause
and possible dealbreakers
Uses ETABS, a powerful software tool, to model and analyze buildings based on detailed plans, which is essential for structural engineering projects
Covers the ACI 318-14 standard, which is a crucial reference for structural concrete design and construction in the United States and other regions
Includes lectures on the NSR-10 design spectrum, which is relevant for structural engineers working with Colombian seismic design standards
Focuses on cracked section definitions for columns, beams, and walls, which is a key consideration in structural analysis and design
Requires familiarity with AutoCAD for detailing structural elements, which may pose a barrier for learners unfamiliar with this software
Uses ETABS, which may require a license or subscription, potentially adding to the overall cost of learning for some students

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Reviews summary

Etabs basics for structural design

According to learners, this course provides a solid foundation in using the ETABS software for structural engineering projects. Students appreciate the practical examples and the step-by-step guidance, which helps them apply the software to real-world scenarios and understand key structural design concepts based on standards like ACI and NSR. While the course is seen as an excellent introduction for beginners, some feedback indicates it lacks depth on more advanced topics and that the pacing or production quality could be improved in certain sections. Overall, it is considered a valuable resource for getting started with ETABS.
Includes relevant design standards (ACI, NSR)
"Good practical examples using ACI standard."
"Covers ACI and NSR which is good."
"Includes NSR-10 spectrum design"
Provides hands-on, step-by-step application
"Good practical examples using ACI standard."
"The step-by-step approach is very effective. Practical and applicable."
"The examples are practical."
Excellent for learning ETABS basics and fundamentals
"Great course for beginners in ETABS. Explains the basic modeling steps clearly."
"Solid introduction to ETABS. Covers the fundamentals well. Good foundation."
"Excellent course! Really helped me understand how to model and analyze simple structures in ETABS."
"Useful course for learning the basics of ETABS."
Reports of audio or video problems
"Instructor is knowledgeable, but audio quality is sometimes poor."
Some sections feel rushed or hard to follow
"Felt a bit rushed at times."
"Some parts were a bit hard to follow due to the pacing, but overall a valuable resource."
Could cover more advanced topics
"Could use more advanced topics or examples, but good foundation."
"Doesn't go into enough detail on seismic design aspects using NSR-10."
"Feels very basic despite the 'Level 1/2' title. Expected more advanced content."
"Expected more."

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 ETABS Level 1/2 - for Structural Engineering - AulaGEO with these activities:
Review ACI 318-14 Standard
Refresh your understanding of the ACI 318-14 standard, which is heavily referenced in the course for structural element design.
Show steps
  • Review the key sections of ACI 318-14 related to concrete design and structural analysis.
  • Work through example problems to reinforce your understanding of the code provisions.
Review 'Structural Concrete: Theory and Design' by M. Nadim Hassoun and Akthem Al-Manaseer
Deepen your understanding of concrete design principles using a widely recognized textbook.
Show steps
  • Read the chapters relevant to beam, column, and wall design.
  • Solve example problems from the book to practice applying the design principles.
Practice ETABS Modeling Exercises
Reinforce your ETABS modeling skills by completing practice exercises that simulate real-world structural design scenarios.
Show steps
  • Find or create sample structural plans.
  • Model the structure in ETABS, applying loads and boundary conditions.
  • Analyze the model and interpret the results.
  • Compare your results with hand calculations or other software.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Develop a Structural Design Report
Consolidate your knowledge by creating a comprehensive structural design report for a sample building, documenting your modeling assumptions, analysis results, and design decisions.
Show steps
  • Select a building plan or create a simplified version.
  • Model the structure in ETABS, following the course guidelines.
  • Perform structural analysis and design according to ACI 318-14.
  • Prepare a detailed report summarizing your design process and results.
Review 'Seismic Design of Concrete Buildings' by Jack Moehle
Expand your knowledge of seismic design principles for concrete structures, especially in relation to the NSR-10 standard.
Show steps
  • Read the chapters on seismic analysis and design of concrete elements.
  • Compare the design approaches presented in the book with the NSR-10 standard.
Explore Advanced ETABS Tutorials
Refine your ETABS skills by exploring advanced tutorials that cover topics such as nonlinear analysis, staged construction, and performance-based design.
Show steps
  • Search for advanced ETABS tutorials on YouTube or other online platforms.
  • Follow the tutorials to learn new techniques and features.
  • Apply the learned techniques to your own structural models.
Contribute to an Open Source Structural Analysis Project
Deepen your understanding of structural analysis by contributing to an open-source project related to structural engineering software or analysis tools.
Show steps
  • Find an open-source project related to structural analysis or design.
  • Review the project's documentation and code base.
  • Identify areas where you can contribute, such as bug fixes, new features, or documentation.
  • Submit your contributions to the project.

Career center

Learners who complete ETABS Level 1/2 - for Structural Engineering - AulaGEO will develop knowledge and skills that may be useful to these careers:
Structural Engineer
A structural engineer designs and oversees the construction of buildings and other structures, ensuring their safety and stability. This often involves using software to model and analyze structural designs. The ETABS course helps structural engineers by familiarizing them with ETABS software for structural project development, internal spreadsheets based on the ACI 318-14 standard, and detailed structural elements. The course covers definitions of cracked sections in columns and beams, as well as drawing columns, beams, walls, and slabs. The lectures analyzing walls assigned to ETABS help structural engineers to get a detailed understanding of the software. For any structural engineer, the ETABS course can unlock new approaches and skills in their field.
Structural Engineering Consultant
Structural engineering consultants provide expert advice and analysis on structural designs for various projects. They assess the safety and efficiency of structures, often using specialized software tools. The ETABS course is particularly useful for structural engineering consultants, as it provides hands-on experience with a widely used software in the field. The course modules on NSR-10 Design spectrum and combinations of walls with columns in ETABS prepare the consultant for real-world scenarios. A structural engineering consultant is able to refine their skills and stay up-to-date with the new software.
Structural Engineering Technician
Structural engineering technicians assist structural engineers in the design, analysis, and testing of structures. The ETABS course provides the technician with practical skills in modeling and analyzing structural components. The modules on cracked sections as well as drawing structural elements with ETABS help structural engineering technicians to analyze structural designs and provide informed insights. The ETABS course will help a structural engineering technician to apply this knowledge to practical engineering projects.
Civil Engineer
Civil engineers are responsible for the design, construction, and maintenance of infrastructure projects like roads, bridges, and buildings. Software proficiency, especially in structural analysis, is often required. A civil engineer will find that the ETABS course builds skills in modeling and analyzing structural elements. With lectures covering the definition of grids, materials, and cracked sections as well as drawing structural elements, this course provides a solid foundation for using ETABS in real-world civil engineering projects. By understanding the interplay between structural elements and the overall design, a civil engineer can ensure the safety and efficiency of infrastructure projects.
University Professor
A university professor in civil or structural engineering teaches courses, conducts research, and mentors students. This role typically requires a PhD. The ETABS course improves their understanding of structural design and analysis. The topics in the course on the drawing of structural elements, load assignments, spectral design, and ETABS software are helpful in this role. A professor is able to refine their skills and stay up-to-date with the new software.
CAD Technician
CAD technicians use computer-aided design software to create technical drawings and models for engineers and architects. The ETABS course helps CAD technicians gain skills to develop detailed structural drawings. CAD technicians can benefit from the course's focus on structural elements drawing, staircase drawings, and load assignments. The ability to prepare detailed structural drawings is crucial for communicating design ideas and ensuring accurate construction. The ETABS course will help a CAD technician who wants to develop their knowledge about structural designs.
Research Scientist
Research scientists in structural engineering conduct research to develop new materials, methods, and technologies for improving the design and construction of structures. This role requires a master's degree or a doctorate. The ETABS course helps research scientists by helping them develop skills in building design and structural analysis. The course modules on drawing structural elements, load assignments, and spectral design in ETABS software are helpful for research. A research scientist is able to refine their skills and stay up-to-date with the new software.
Seismic Analyst
Seismic analysts assess the potential impact of earthquakes on structures and infrastructure. They use specialized software to simulate seismic events and evaluate structural performance. The ETABS course may benefit seismic analysts by building their skills in structural design as well as analysis, allowing for a more careful analysis. The seismic analyst gains skills to analyze structural designs more deeply and to provide useful assistance.
Facade Engineer
Facade engineers specialize in the design, engineering, and construction of building facades, including curtain walls, cladding systems, and glazing. The ETABS course may benefit facade engineers by teaching them about design and analysis to better the safety of a building. The knowledge from the course can provide the skills to analyze structural designs more deeply and to provide useful assistance.
Construction Manager
A construction manager plans, coordinates, and oversees construction projects from start to finish. They work closely with engineers and architects to ensure projects are completed on time and within budget. The construction manager will find that the ETABS course may be helpful in understanding the structural aspects of the project. While the course focuses on the software used for structural design, it also gives an understanding of the elements that make up a building. This understanding is very important to the construction manager. A construction manager gains critical insights into the structural integrity of buildings, which is vital for effective project oversight.
Architect
Architects design buildings and spaces, focusing on both aesthetics and functionality. They often collaborate with structural engineers to ensure their designs are structurally sound. The ETABS course may allow an architect to visualize the structural impact of their designs as well as collaborate with structural designers. While architects may not perform the detailed structural analysis themselves, understanding the basics helps them to communicate effectively with engineers and make informed design decisions. By understanding the underlying principles, the architect can create more innovative and structurally efficient designs.
Bridge Engineer
Bridge engineers specialize in the design, construction, and maintenance of bridges. They need a strong understanding of structural analysis and design principles. The ETABS course may be insightful for a bridge engineer due to the course covering structural design, and building analysis. The focus in the course on structural elements drawing, load assignments, and the use of ETABS software are helpful in this role. By getting an understanding of the structural drawing process, the bridge engineer can optimize bridge designs for safety and durability.
Geotechnical Engineer
Geotechnical engineers investigate subsurface conditions and materials to assess their suitability for construction projects. While their primary focus is on soil and rock mechanics, a basic understanding of structural engineering principles is beneficial. The ETABS course may be relevant for geotechnical engineers who collaborate with structural engineers on building projects. It provides a foundation for understanding how structural loads are transferred to the ground. This understanding is important for foundation design and soil stabilization. This is helpful for the geotechnical engineer.
Building Inspector
Building inspectors examine buildings and structures to ensure compliance with building codes and safety regulations. The ETABS course helps building inspectors to understand structural design better. Building inspectors who understand structural design can better assess the safety and integrity of buildings. This is helpful for the building inspector.
Sustainability Consultant
Sustainability consultants advise clients on how to design, construct, and operate buildings in an environmentally responsible manner. The ETABS course is somewhat applicable to sustainability consultants who work on building projects. The sustainability consultant must have an understanding of the structural elements of a building. This is helpful for the sustainability consultant.

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 ETABS Level 1/2 - for Structural Engineering - AulaGEO.
Provides a comprehensive overview of structural concrete theory and design principles. It valuable resource for understanding the underlying concepts behind the ACI 318 code provisions. It offers detailed explanations and numerous examples, making it suitable for both students and practicing engineers. This book can be used as a reference text to supplement the course material.
Focuses on the seismic design of concrete buildings, providing in-depth coverage of relevant code provisions and design methodologies. Given the course's emphasis on the NSR-10 design spectrum, this book offers valuable insights into seismic analysis and design considerations. It is particularly useful for understanding the behavior of concrete structures under seismic loads. This book is more valuable as additional reading than as a current reference.

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