INTRODUCTION
SQVE STRUCTURAL SUMMIT
Importance of Wind Tunnel Testing for Tall Buildings
Wind tunnel testing plays a crucial role in ensuring the structural integrity and safety of tall buildings, which are highly susceptible to wind loads due to their height and slenderness. As buildings grow taller, traditional static wind load calculations may not be sufficient to capture the complex aerodynamic forces acting on the structure. Wind tunnel testing helps simulate real-world wind conditions, providing critical data on wind pressure distribution, vortex shedding, and potential aeroelastic effects like dynamic response and acceleration, which can significantly impact occupant comfort and structural safety. Accurate wind load data from these tests allows for optimized design solutions, ensuring safety without over-conservative designs that increase costs.
Image: Windtech Consultants
Key Discussion Points for the Upcoming Session:
- Preparation of Terms of Reference (TOR) for Wind Tunnel Testing Agency
- Defining the scope of testing and performance criteria.
- Incorporating specific building design requirements (shape, height, terrain).
- Outlining necessary parameters such as wind speed, pressure coefficients, and dynamic response.
- Selection of Wind Tunnel Testing Agency
- Criteria for choosing a credible and experienced testing agency.
- Agency accreditation and past project experience.
- Ensuring proper equipment and methodologies suitable for the scale and location of the building.
- Coordination with Wind Tunnel Testing Agency
- Establishing effective communication channels and timelines.
- Sharing detailed design models and ensuring proper representation of the project in wind simulations.
- Addressing iterative processes and revisions based on intermediate results.
- Interpretation of Wind Tunnel Test Results
- Understanding critical outputs such as wind pressure distribution, base shear, and torsional moments.
- Collaboration between consultants and the testing agency to analyze the results and make necessary adjustments to the structural design.
- Using test data for comfort assessments, façade design, and aerodynamic modifications to the building.
- Application of Results in Structural and Serviceability Design
- Utilizing wind tunnel data for structural load determination and comparison with code-based values.
- Analyzing serviceability aspects such as building sway, acceleration limits for occupant comfort, and façade cladding performance.
- Challenges and Lessons from Real-World Wind Tunnel Testing Projects
- Common challenges faced during wind tunnel testing and how they were resolved.
- Practical advice for ensuring accurate test conditions and avoiding potential pitfalls.
This structured discussion should help structural consultants navigate the technical and procedural challenges associated with wind tunnel testing for tall buildings.
You may share specific queries or doubts related to wind tunnel testing for tall buildings which you would like to get it addressed in the session. We will attempt to include the same in the discussion.
Image: Windtech Consultants
Expert – Er. Dr. Abhay Gupta
Er. Dr. Abhay Gupta has obtained his BE(Civil) in 1981 & subsequently ME(Structures) from SGSITS Indore; and Ph.D. from University of Roorkee, Roorkee (now IIT Roorkee) in the area of “Aerodynamic Interference in Tall Rectangular Buildings: Wind Tunnel Studies” in 1996. He has more than 35 years of experience in the field of Civil Engineering construction and Structural design. Dr. Abhay Gupta is one of the Directors of Skeleton Consultants Pvt. Ltd. Noida. Dr Gupta has also worked as Principal consultant for establishment of Wind tunnel facility at Guna MP.
Schedule
We plan to record the session offline and will notify registered participants once the video is published.
HOW TO REGISTER ?
Registration is FREE.
In the following registration form, you may mention specific queries related to wind tunnel testing for tall buildings . We will attempt to address the same in the upcoming session.
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RCC-STR-002: Design of Liquid Retaining Structures | IS 3370 |
The course will begin with detailed discussions on IS 3370 (Part 1):2021 & IS 3370 (Part 2):2021 along with crack width calculations. Thereafter, we will perform analysis of individual plates, rectangular tanks and circular tanks using design tables of IS 3370 (Part 4/1/2/3):2021. For the similar geometries, we will generate computer model in STAAD Pro using plate elements. The analysis results from the software will be compared with the design table results. In the process, we will highlight do’s and don’ts related to software applications for FEM. Subsequently, we will discuss in detail regarding seismic loads as per IS 1893 (Part 2):2014 along with amendment of 2022. Manual calculations will be performed to get more insight about seismic loads for LRS. Towards end of the course, we will take up couple of case studies for analysis and design of liquid retaining structures. We will also explore usage of STAAD Pro + RCDC and compare the results with the manual calculations. The entire course will be useful for preparation of in-house work procedure, check list, do’s and don’ts for liquid retaining structures.
The course will commence from 19-DEC-24.
For more details, you may visit link: https://sqveconsultants.com/rcc-str-002
You may download brochure of the course: Download now
ONG-STR-001: Design of Pipe Rack | Online course
A process pipe rack in the oil and gas industry is a critical structural framework that supports and organizes process pipelines, utility pipelines, electrical cable tray, instrument cable tray, etc. The course will begin with an overview of refinery processes, various process units, function of pipe rack, etc. We will also highlight important interface areas with different disciplines, including process, piping, electrical, instrumentation, electrical and equipment, ensuring a holistic understanding of multidisciplinary coordination for the pipe rack. We will cover details of each step for structural design of the pipe rack, starting from understanding functional requirements, important points to be checked in input documents, preparation of structural system, generating computer model, load calculations and application in the software, analysis & design of pipe rack, connection design, foundation design of pipe rack, etc. Throughout the program, we will cover important provisions of American codes such as ASCE 7-16, AISC 360-16, AISC 341-16, ACI 318-19, etc. along with software applications in STAAD Pro, RAM Connection & RCDC.
You can purchase access to the recorded sessions. Please connect as at email address: steel @sqveconsultants.com for the same.
For more details, you may visit link: https://sqveconsultants.com/ong-str-001
You may download brochure of the course: Download now
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