Trace the loads through the 2-story structure and show all of the appropriate FBD's of the major structural members. Loads: Roof DL = 5 psf Snow Load = 25 psf Floor DL = 10 psf Floor LL = 40 psf Roof Beam- Joists @ 16" o.c. Exterior beam 18⁰ Decking 12₁ Joists @ 2° 0.c.
Trace the loads through the 2-story structure and show all of the appropriate FBD's of the major structural members. Loads: Roof DL = 5 psf Snow Load = 25 psf Floor DL = 10 psf Floor LL = 40 psf Roof Beam- Joists @ 16" o.c. Exterior beam 18⁰ Decking 12₁ Joists @ 2° 0.c.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:**Title: Load Distribution in a Two-Story Structure**
**Introduction:**
This diagram illustrates the distribution of various loads through a two-story structural framework. It provides a visual representation of the major structural components and how the specified loads are handled within the structure.
**Loads:**
- **Roof Dead Load (DL):** 5 pounds per square foot (psf)
- **Snow Load:** 25 psf
- **Floor Dead Load (DL):** 10 psf
- **Floor Live Load (LL):** 40 psf
**Structural Components:**
1. **Roof Beam:** Supports the roof structure and distributes loads to the columns.
2. **Decking:** Placed on top of roof joists, providing the surface layer of the roof.
3. **Joists at 16 inches on center (o.c.):** Spacing of joists providing structural support across shorter spans.
4. **Joists at 2 feet o.c.:** Larger spacing of joists used in floor construction to support loads.
5. **Exterior Beam:** Supports outer parts of the structure, connecting columns.
**Column Sections:**
- Column A, B, C: Vertical supports transferring loads from the beams and joists to the foundation.
**Diagram Explanation:**
The partial framing scheme shows the relationship between various parts of the structure:
- **Dimensions:** The diagram provides dimensions for the structure: the lower floor has a width of 18 feet, a length of 14 feet, and the section between columns has a length of 12 feet.
- **Load Path:** Arrows may indicate the direction of load transfer from the roof, through beams and joists, to columns, and eventually to the ground.
This visualization helps in understanding the mechanics of load distribution and structural integrity within a building framework, making it a useful educational tool for civil engineering and architecture students.
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