Steel Frame Sections
Slab on Grade Load Diagram
Load Diagram of Steel FrameĀ
This project involved the design of a steel frame for a Reverse Osmosis (RO) station using STAAD Pro software. The design adhered to the National Structural Code of the Philippines (NSCP) to ensure structural integrity and compliance with local regulations. My responsibilities included:
Structural analysis and design: Using STAAD Pro to analyze loads, design steel members, and ensure code compliance.
Steel frame design: Creating detailed specifications for the fabrication and assembly of the steel structure.
Collaboration: Working with the client to understand their specific requirements and ensure the design met their needs.
This project allowed me to demonstrate my skills in:
Structural engineering software: Utilizing STAAD Pro for structural analysis and design.
Steel structure design: Applying engineering principles to design a safe and efficient steel frame.
Building code compliance: Ensuring adherence to relevant building codes and regulations.
Client communication: Effectively communicating technical concepts and design considerations.
Foundation Design
Column Design
Beam Design
Structural Concrete Frame
This project involved the complete structural design of a three-story residential building using STAAD Pro software. I utilized STAAD Pro for both:
Structural analysis: Evaluating the building's response to various loads (dead, live, etc.) to ensure its stability and safety.
RCDC (Advanced Concrete Design): Designing the concrete elements (beams, columns, slabs, foundations) using STAAD's advanced concrete design module. This encompassed specifying:
Dimensions and material properties
Reinforcement layout
Compliance with relevant building codes
Through this project, I demonstrated proficiency in:
Structural engineering software: Utilizing STAAD Pro for comprehensive structural analysis and design.
Concrete design: Applying engineering principles to design safe and efficient concrete elements.
Building code compliance: Ensuring adherence to applicable building codes and regulations.
Structure Frame Analysis
Structural Steel Frame and Tie Beam
This project involved designing a three-story steel building with an attic using STAAD Pro software. The design adhered to the standards set by the American Institute of Steel Construction (AISC) for structural integrity and best practices. This served as a practical application of my training in STAAD Pro.
My responsibilities included:
Modeling: Creating a digital representation of the building in STAAD Pro.
Load analysis: Defining and applying various loads (dead, live, wind, etc.) on the structure.
Steel member design: Selecting and designing steel members (beams, columns, etc.) that met AISC standards and could efficiently carry the applied loads.
Connection detailing: Specifying how different steel members would be connected during construction.
Hip Roof Analysis
Hip Roof Steel Frame
This project involved designing a hip roof steel frame using STAAD Pro software. The design followed the American Institute of Steel Construction (AISC) standards to ensure structural integrity and adherence to industry best practices. It served as a practical application of my training in STAAD Pro.
My responsibilities encompassed:
Modeling: Creating an accurate digital representation of the hip roof steel frame within STAAD Pro.
Load analysis: Defining and applying various loads (dead, live, wind, etc.) specific to the roof structure.
Steel member design: Selecting and designing steel members (trusses, rafters, purlins, etc.) that complied with AISC standards and efficiently resisted the applied loads.
Connection detailing: Specifying how different steel members would be interconnected during construction.