Assessfy Pvt. Ltd Moderate 6 milestones 50 marks

Earthquake Vibration Control Using Modified Frame-Shear Wall

Real-world project · AICTE-aligned · AI-graded · Audit-ready certificate

6
Milestones
1
Available mentors
0
Enrolled students
4
Core skills
About this project

Earthquake Vibration Control Using Modified Frame-Shear Wall

Objective: Analyze and optimize earthquake vibration control using modified frame-shear wall systems.

Context: Earthquake resilience is critical for Indian infrastructure, where conventional building designs often fail under seismic loads.

What you'll build: Using AutoCAD and STAAD Pro/ETABS, you'll model structural systems, perform seismic load analysis, and compare modified frame-shear wall designs with traditional approaches. Simulations and material models will support your findings.

Deliverables: Structural models, simulation results, comparative analysis report, and final presentation.

Milestones
1.
Acknowledge your understanding of the project scope and objectives by submitting a brief project plan outlining your intended approach, key tasks, and timeline. Ensure your plan references the use of modified frame-shear wall systems for earthquake vibration control.
2. Literature review of shear wall systems
10 marks 6d
Summarize and synthesize at least 10 recent peer-reviewed articles or technical papers on shear wall systems, focusing on their design, performance in seismic events, and innovations. Submit a written review highlighting key findings, gaps, and relevance to your modified frame-shear wall approach.
3. Structural model development
10 marks 6d
Develop a detailed structural model of a building incorporating your proposed modified frame-shear wall system using structural analysis software (e.g., ETABS, SAP2000). Submit model files and a document describing geometry, material properties, boundary conditions, and assumptions. Ensure the model is ready for seismic load application.
4. Seismic load analysis
10 marks 6d
Apply appropriate seismic loading scenarios to your structural model based on relevant codes (e.g., IS 1893, ASCE 7). Submit a report detailing the load cases, analysis procedures, and resulting structural responses (displacements, forces, etc.), including annotated output from your modeling software.
5. Comparative study with conventional systems
10 marks 6d
Conduct a side-by-side comparison of your modified frame-shear wall system with a conventional frame-shear wall system under identical seismic loads. Submit a comparative analysis report with quantitative results (e.g., drift, base shear, stress distribution) and clear visualizations (tables, graphs) highlighting performance differences.
6. Final report and presentation
10 marks 6d
Compile a comprehensive final report including all previous milestone outputs, discussion of results, conclusions, and recommendations for future work. Prepare a 10-minute presentation summarizing your methodology, findings, and the advantages of your modified system. Submit both the written report (PDF) and presentation slides (PPT or PDF).
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Upcoming sessions
SessionWindowEnrolled
Earthquake Vibration Control Using Modified Frame-Shear Wall 11 Jun 2026 to 10 Jun 2028 0
Skills you'll learn
Structural analysisEarthquake engineeringAutoCAD/STAAD ProLoad and stress calculations
Tools used
STAAD Pro/ETABS AutoCAD Simulation software Building material models
Prerequisites
Basics of structural design Seismic forces and load combinations Material strength concepts
Available mentors
Priyang Kumar
Free
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You'll earn — Certificate (PDF)

AICTE-aligned Project Completion Certificate

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Certificate of Project Completion

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Earthquake Vibration Control Using Modified Frame-Shear Wall

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