Structural Engineering Spreadsheet |
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Design of rectangular RC sections under bi-axial shear, bending, compression or tension |
http://www.technouk.com/Programs/Beam-Column-Tie_20120804-.zip |
Applied axial load Column dimensions Area of reinforcement Cover Rebar arrangement Shear links Option of singly or doubly reinforced section |
Biaxial bending check Shear checks Reinforcement requirement checks Stress and strain of steel above x and y axis |
BS 8110-1 |
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Design of concrete structures that retain aqueous liquids |
http://www.technouk.com/Programs/RC8007010108-.zip |
Reinforcement type Concrete grade Depth of section Concrete cover Reinforcement size Reinforcement spacing Crack width |
Serviceability limit state checks Max moment capacity Max shear capacity Crack requirement checks Reinforcement requirement checks Steel ratio required for control of thermal and shrinkage cracking
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BS 8007 BS 8110 |
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Design of RC rectangular beam |
http://www.technouk.com/Programs/RC981220p.zip |
Concrete grade Reinforcement grade Concrete section dimensions Area of reinforcement Area of stirrups Design moment |
Span/depth ratio design and limit Max bending capacity Max shear capacity of concrete Max shear capacity of stirrups Torsion capacity |
BS 8110: Part 1&2 |
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Design of RC columns |
http://www.technouk.com/Programs/Rect-Column_20091211-.zip |
Braced or unbraced conditions Applied axial load Concrete grade Steel grade Section size Support condtiions Effective length Reinforcement size Reinforcement arranagement |
Column slenderness check Max axial capacity Reinforcement reinforcement checks Max bending capacity |
BS 8110 |
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Design for rectangular, T-shaped, or circular RC columns |
http://www.yakpol.net/ShortColEC2_down.html |
Material properties Section properties Reinforcement sizes Number of reinforcement Reinforcement spacing Reinforcement position based on coordinates Applied loads |
Crack width control analysis Capacity checks against axial load and moment Static equilibrium checks Interaction diagram of P vs M |
Eurocode 2 |
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Design of RC circular columns |
http://www.technouk.com/Programs/RoundCol000104-.zip |
Concrete grade Steel grade Section diameter Applied axial load Applied moment Braced or unbraced conditions Effective length Cover |
Max axial capacity Reinforcement requirement checks Column slenderness check Min diameter checks |
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Design of Retaining Wall due to Lateral and Verigcal LOads |
http://www.technouk.com/Programs/RetWall20150415-.zip |
Surcharge loads Wall height Wall thickness Base thickness Heel and toe length Wall density Earth density Angle of repose Coefficient of friction Ground pressures in vertical or horizontal direction Water Lloads Water table level Applied point or line loads Option of including passive earth pressure |
Stability checks for sliding and overturning Checks for restoring and eccentric moment Ground bearing checks |
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