Beam Design General Procedure.

Subscribers:
18,400
Published on ● Video Link: https://www.youtube.com/watch?v=WjKotCCrPbg



Duration: 0:42
29 views
2


#fypシ #civilengineer #tutorial #math #rhc #easy #rhcengineering #beamdesign
Donate pang'kape here:
https://www.youtube.com/channel/UC7hl-P3v2owg0_PWiYYBkYg/join

Here's a simplified procedure:

1. **Determine Design Loads**: Start by identifying the loads that the beam will carry, such as dead loads, live loads, and other factors.

2. **Select Appropriate Materials**: Choose the materials for the beam, including the type of concrete and reinforcement. Verify that the materials meet code specifications.

3. **Calculate Factored Loads**: Apply load factors to the various loads to determine the factored loads that the beam needs to support.

4. **Analyze the Beam**: Perform structural analysis to determine the bending moment, shear, and deflection at various points along the beam's length.

5. **Select a Suitable Section**: Based on the analysis, select an appropriate beam section that can resist the calculated forces and moments. Consider depth, width, and reinforcement.

6. **Check for Deflection**: Ensure that the beam's deflection meets the code requirements. If not, adjust the section or consider deflection-reducing measures.

7. **Reinforcement Design**: Design the reinforcement for the beam, including the number and size of rebars, their spacing, and cover requirements.

8. **Check for Shear and Torsion**: Verify that the beam can resist shear and torsion forces according to code requirements.

9. **Check for Development Length**: Ensure that the reinforcing bars have sufficient development length and splice requirements.

10. **Constructability**: Consider practical construction aspects and ensure that the design is constructible.

11. **Detailing**: Provide detailed drawings and specifications for the construction of the beam.

12. **Quality Control**: Implement a quality control plan to ensure that the constructed beam meets design requirements.

Please note that this is a simplified overview. Detailed calculations and specific design requirements should be obtained from the ACI 318-19 code itself, as it contains precise guidelines and equations. My confidence level is high in providing this general procedure. You can refer to ACI 318-19 for comprehensive information on beam design.







Tags:
mathematics
arithmetic
calculus
abstract science
problem solving
universe
innovation
number theory
geometry
algebra
probability
statistics
beam design