in the future - u will be able to do some more stuff here,,,!! like pat catgirl- i mean um yeah... for now u can only see others's posts :c
Even though the load is the same, is less reinforcement (rebar) needed in the beam on the upper floor compared to the lower floor?
3 - 0
#Overall_Structural_Design_Checklist :
### **Model Setup**
1. **Units**:
- Verify the units are correct throughout the model (e.g., kip, kN, ft, m).
2. **Grid and Layout**:
- Define grids according to architectural/structural drawings.
- Check the alignment of elements with grids.
3. **Story Definition**:
- Properly define each floor and roof as stories.
- Ensure correct elevation inputs and spacing.
4. **Material Properties**:
- Define appropriate material properties (concrete, steel, etc.).
- Verify concrete strength (f'c) and yield strength of steel (fy).
5. **Section Properties**:
- Assign proper section properties for columns, beams, slabs, walls, and foundations.
- Double-check that the orientation and dimensions match drawings.
6. **Load Definitions**:
- Define all relevant load types (dead, live, wind, seismic, snow, etc.).
- Ensure the load magnitudes and directions are correctly assigned.
### **Structural Elements**
1. **Beams**:
- Assign appropriate beam sections.
- Ensure correct beam end releases for bending/shear connections.
2. **Columns**:
- Assign appropriate column sections.
- Ensure proper orientation and fixity at bases and connections.
3. **Slabs**:
- Define slab thickness and material properties.
- Check mesh density for accurate analysis.
- Assign appropriate diaphragm constraints for floors.
4. **Walls**:
- Define walls as either shell or membrane elements.
- Ensure thickness and reinforcement are correctly modeled.
5. **Foundations**:
- Model foundation elements correctly (footings, piles, or mat foundations).
- Assign correct soil stiffness or support conditions.
### **Load Application**
1. **Dead Load**:
- Ensure self-weight of structure is automatically calculated.
- Add any additional dead loads such as finishes, partitions, etc.
2. **Live Load**:
- Apply live loads according to code requirements (use appropriate reduction factors if necessary).
3. **Wind Load**:
- Define wind load cases per local code.
- Input wind pressure, direction, and height correctly.
4. **Seismic Load**:
- Apply seismic load cases per local code (e.g., UBC, ASCE).
- Define the seismic load patterns, mass source, and damping ratios.
- Check the model's center of mass and rigidity.
5. **Surcharge Load** (for basements or retaining walls):
- Apply surcharge loads as per geotechnical or architectural inputs.
6. **Temperature Effects**:
- Consider temperature loads or expansion for large structures if needed.
### **Load Combinations**
1. **Load Combinations**:
- Generate load combinations according to design codes (strength and service combinations).
- Ensure all applicable combinations (gravity, wind, seismic) are considered.
2. **Code-Specific Requirements**:
- Check code-specific factors for load combinations (strength reduction factors, importance factors).
### **Analysis Settings**
1. **Solver Settings**:
- Check the solver settings and ensure the proper method is selected (linear, nonlinear, buckling analysis, etc.).
2. **P-Delta Effect**:
- Enable P-Delta effect if applicable for the structure.
3. **Modal Analysis**:
- Perform modal analysis for seismic design.
- Check the number of modes considered and ensure the participation factor is acceptable.
4. **Meshing**:
- Review meshing of elements (especially walls, slabs, and shells).
- Ensure proper mesh refinement for stress concentration areas.
### **Design Settings**
1. **Design Preferences**:
- Set design code preferences (ACI, Eurocode, etc.).
- Ensure the proper concrete and steel design parameters are selected.
2. **Reinforcement Settings**:
- Define minimum and maximum rebar percentages for design.
- Check rebar arrangement settings for beams, columns, slabs, and walls.
3. **Deflection Limits**:
- Set deflection limits for beams, slabs, and cantilevers as per code requirements.
4. **Design Checks**:
- Run preliminary design to check if members pass strength and serviceability limits.
### **Post-Analysis**
1. **Review Deformed Shape**:
- Check deformed shape of the structure under different load cases.
2. **Reaction Forces**:
- Verify reaction forces at supports or foundation level.
3. **Member Forces**:
- Check forces in beams, columns, and walls (shear, moment, axial).
4. **Deflection**:
- Ensure deflections are within permissible limits for serviceability.
5. **Drift Checks**:
- Check story drifts for lateral loads to ensure they are within code limits.
6. **Design Review**:
- Ensure all members pass strength and serviceability requirements.
- Review reinforcement requirements and adjust as needed.
### **Reporting**
1. **Generate Reports**:
- Prepare design summary and detailed reports for submission.
2. **Model Validation**:
- Review model inputs and outputs with design team for validation.
Hopefully, This checklist will help you a lot.
14 - 2
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Video Sequence:
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8 - 8
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26 - 1
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Complete Structural Design of Building ( A to Z)
EATBS āĻāĻ° āĻŽāĻžāĻ§ā§āĻ¯āĻŽā§ Super Structure(Beam, Column, Shear Wall, Slab) āĻĄāĻŋāĻāĻžāĻāĻ¨
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đAnytime Anywhere
đāĻā§āĻ°ā§āĻ¸ā§ āĻ¯āĻž āĻ¯āĻž āĻĨāĻžāĻāĻŦā§āĻ
đ1)15 hours+ on-demand Video.
106 Video Lecture(ETABS 64 + SAFE 42)
đ2)ETABS v16, v18, v19 Software, & SAFE v16& v20 Software
đ3)15+ Excel Sheet (Load Calculation, Check, design, Detailing Related)
đ4)ETABS & BNBC Manual
đ5)Foundation Design Manual
đ6)Manual Design Pdf
đ7)All ETABS Load Combination Template as Per BNBC 2020
đ8)BNBC 2020 Pdf (Enhanced Version)
đ9)10+ Design Code
đ10)10+ structural Design Book
đ11)Soil Test Report Sample
đ12)10+ AutoCAD Floor Plan
đ13)One Complete Structural Design AutoCAD Project
Video Sequence:
đModeling
đLoad Calculation
đLoad Application.
đAnalysis
đDesign
đDetailing
Project: 6 Story R.C.C Building Real Project āĻāĻŽā§āĻĒā§āĻ˛āĻŋāĻ āĻāĻ°āĻž āĻšā§ā§āĻā§ āĻāĻ āĻā§āĻ°ā§āĻ¸ā§
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Phoneđ˛: 01756725904
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Professional Structural Analysis, Design & Detailing āĻļāĻŋāĻā§āĻ¨ ETABS āĻāĻŦāĻ SAFE Pre-recordrd āĻā§āĻ°ā§āĻ¸ā§āĻ° āĻŽāĻžāĻ§ā§āĻ¯āĻŽā§ BNBC 2020 āĻ
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Complete Structural Design of Building ( A to Z)
EATBS āĻāĻ° āĻŽāĻžāĻ§ā§āĻ¯āĻŽā§ Super Structure(Beam, Column, Shear Wall, Slab) āĻĄāĻŋāĻāĻžāĻāĻ¨
āĻāĻŦāĻ SAFE āĻāĻ° āĻŽāĻžāĻ§ā§āĻ¯āĻŽā§ Sub Structure(All Kind of Foundation) āĻĄāĻŋāĻāĻžāĻāĻ¨
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Pre-recorded Course
đAnytime Anywhere
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đ1)15 hours+ on-demand Video.
106 Video Lecture(ETABS 64 + SAFE 42)
đ2)ETABS v16, v18, v19 Software, & SAFE v16& v20 Software
đ3)15+ Excel Sheet (Load Calculation, Check, design, Detailing Related)
đ4)ETABS & BNBC Manual
đ5)Foundation Design Manual
đ6)Manual Design Pdf
đ7)All ETABS Load Combination Template as Per BNBC 2020
đ8)BNBC 2020 Pdf (Enhanced Version)
đ9)10+ Design Code
đ10)10+ structural Design Book
đ11)Soil Test Report Sample
đ12)10+ AutoCAD Floor Plan
đ13)One Complete Structural Design AutoCAD Project
Video Sequence:
đModeling
đLoad Calculation
đLoad Application.
đAnalysis
đDesign
đDetailing
Project: 6 Story R.C.C Building Real Project āĻāĻŽā§āĻĒā§āĻ˛āĻŋāĻ āĻāĻ°āĻž āĻšā§ā§āĻā§ āĻāĻ āĻā§āĻ°ā§āĻ¸ā§
đ Level: Beginner to Advanced
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Phoneđ˛: 01756725904
āĻŦāĻŋāĻ¸ā§āĻ¤āĻžāĻ°āĻŋāĻ¤ āĻā§āĻ°ā§āĻ¸ āĻāĻāĻāĻ˛āĻžāĻāĻ¨āĻ https://youtu.be/atwcRdtXXkA
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All kinds of Civil, Structural and Architectural videos available here