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Multistory Office Building

Multistory Office Building. ET 494 Professor: Dr . Cris Koutsougeras Advisor: R. Edward Rode ’ Students: Michael Rebstock and Zac Venable Construction Concentration. Objective / Deliverables.

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Multistory Office Building

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  1. Multistory Office Building ET 494 Professor: Dr. CrisKoutsougeras Advisor: R. Edward Rode’ Students: Michael Rebstock and Zac Venable Construction Concentration

  2. Objective / Deliverables • The purpose of our project is to display skills learned throughout the ET curriculum specifically dealing with: • Surveying • Scheduling/Planning (Primavera) • Estimating • Engineering Calculations • Design Building using AutoCAD • Complete Load Calculations • Finalize Working Drawings • Quantity Take-Off • Complete Project Estimate • Complete Project Schedule (Primavera)

  3. Introduction • The goal is to design-build a multistory commercial office building • The building will have specific design requirements • The investigation of a LEED certified building will be analyzed

  4. Selected Location • More land for a cheaper price • Centered in an Industrial area • Close to US 190, I-12, I-55

  5. Site Layout

  6. Building Codes International Code Council 2012 • Permits • Occupancy Classification • High-Rise Buildings • Means of Egress • Accessibility • Interior Environment • Exterior Walls • Roof Assemblies and Rooftop Structures • Structural Design • Soils and Foundation • Glass and Glazing • Electrical • Mechanical Systems • Plumbing Systems • Elevators • Special Construction (Awnings/Canopies) • Concrete • Steel

  7. Building Materials • Building will be constructed using: • Steel Beams/Columns/Joists • Precast Concrete Wall Panels • Composite Metal Flooring Deck • (2nd,3rd,Roof Slab) Constructed using Autodesk Revit

  8. LEED Investigation • Precast Concrete Panels for Exterior/Interior Walls • Metal Stud Crete (MSC) • Benefits • Conventional Panels 100-140 lbs per square foot • MSC Panels 35-40 lbs per square foot • Lighter Dead Loads on Beams/Columns • Exterior Concrete/ Interior Steel in one assembly

  9. LEED Investigation • Aluminum Door Framing/Assembly • Exterior/Interior Doors • Curtain Walls • Interior Office Partitions • Benefits • Optimize Energy Performance • Recycled Content • Regional Material • Lighter than Steel which reduces loads on columns/beams

  10. Floor Plan 1st Floor

  11. Floor Plan 2nd Floor

  12. Floor Plan 3rd Floor

  13. Overview of Building

  14. Elevation of Building-North

  15. Elevation of Building-West

  16. Building Layout

  17. Design Loads • The dead loads Include the weight of the structure itself and all immovable objects • Live loads are variable loads • Rain load for this building is 10.4psf : ASCE7-2 minimum of 20psf • Floor Live Load 100psf

  18. Structural Takeoff

  19. Structural Takeoff

  20. Structural Takeoff

  21. Estimate

  22. Estimate

  23. Total Projected Cost • Site Work / Foundation: $ 299,571.89 • Structural: $ 366,690.47 • Electrical: $ 206,937.50 • Plumbing: $ 96,000.00 • Interior Components: $815,500.40 • Total Cost: $ 1,784,700.26

  24. Project Schedule

  25. Timeline

  26. Questions?

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