Deflection theory — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
Also named here as stiffening girder, suspension bridge — the same set of essays touches all of them, so they are one junction rather than several.
The tension that was left out
A suspension bridge's deck sits on a cable pulling hard along it, and a member with a large tension in it is stiffened by that tension. Leaving the term out of the deck's own equilibrium is what elastic theory does, and on a long span it asks for fourteen times the girder.
The bridge that pays for its own anchorage
A suspension bridge's deck is light because the cable's tension works on its deflected shape and stiffens it. Tie the cable to the ends of the deck instead of to the ground and the deck must carry the same pull as a compression — which acts on the same deflected shape with the opposite sign and cancels the stiffening exactly. A self-anchored bridge is designed by the theory the long suspension bridge was invented to escape, and the price grows as the square of the span.
Named alongside it
The objects these essays reach for when they reach for this one.
CompatibilityGeometric stiffnessSecond-orderStiffening girderSuspension bridgeBending momentBucklingCable stiffnessDeckFunicularLive loadSpan