Gordon's formula: Difference between revisions

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(Based on Glossary of Bridge Terminology; Chapter LXXX of J.A.L. Waddell's Bridge Engineering (New York: Wiley, 1916))
 
m (Text replacement - "<tex>" to "<math>")
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A column formula. Also called [[Rankine's formula]]:
A column formula. Also called [[Rankine's formula]]:


<tex>
<math>
P = \frac{s}{1+a\frac{l^2}{r^2}}
P = \frac{s}{1+a\frac{l^2}{r^2}}
</tex>
</tex>
Line 7: Line 7:
where:
where:


<tex>P</tex> = the [[allowable stress|allowable unit stress]] for the column  
<math>P</tex> = the [[allowable stress|allowable unit stress]] for the column  


<tex>s</tex> = the allowable unit stress for blocks  
<math>s</tex> = the allowable unit stress for blocks  


<tex>a</tex> = a constant depending on end conditions, etc.  
<math>a</tex> = a constant depending on end conditions, etc.  


<tex>l</tex> = the unsupported length of the column  
<math>l</tex> = the unsupported length of the column  


<tex>r</tex> = the least radius of gyration in reference to an axis normal to the plane in which flexure takes place
<math>r</tex> = the least radius of gyration in reference to an axis normal to the plane in which flexure takes place


[[Category:Glossary]]
[[Category:Glossary]]
[[Category:Formulas]]
[[Category:Formulas]]
[[Category:Column]]
[[Category:Column]]

Revision as of 02:14, 22 October 2024

A column formula. Also called Rankine's formula:

<math> P = \frac{s}{1+a\frac{l^2}{r^2}} </tex>

where:

<math>P</tex> = the allowable unit stress for the column

<math>s</tex> = the allowable unit stress for blocks

<math>a</tex> = a constant depending on end conditions, etc.

<math>l</tex> = the unsupported length of the column

<math>r</tex> = the least radius of gyration in reference to an axis normal to the plane in which flexure takes place