The main cables of a suspension bridge [see part (a) of the figure] follow a curve that

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The main cables of a suspension bridge [see part (a) of the figure] follow a curve that is nearly parabolic because the primary load on the cables is the weight of the bridge deck, which is uniform in intensity along the horizontal. Therefore, let us represent the central region AOB of one of the main cables [see part (b) of the figure] as a parabolic cable supported at points A and B and carrying a uniform load of intensity q along the horizontal. The span of the cable is L, the sag is h, the axial rigidity is EA, and the origin of coordinates is at midspan.
(a) Derive the following formula for the elongation of cable AOB shown in part (b) of the figure:
The main cables of a suspension bridge [see part (a)
The main cables of a suspension bridge [see part (a)

(b) Calculate the elongation δ of the central span of one of the main cables of the Golden Gate Bridge, for which the dimensions and properties are L = 4200 ft, h = 470 ft, q = 12,700 lb/ft, and E = 28,800,000 psi. The cable consists of 27,572 parallel wires of diameter 0.196 in.

The main cables of a suspension bridge [see part (a)
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Mechanics of Materials

ISBN: 978-0495438076

7th edition

Authors: James M. Gere, Barry J. Goodno

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