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Vibration patterns for suspension bridges were subject of analysis during University of Washington studies; vertical and torsional, symmetric and asymmetric vibrations considered; formulas developed to explain behavior of original Tacoma Narrows Bridge and to predict that of new design; results given were checked against scale models of both original and proposed new design in wind tunnel tests.
Vibration patterns for suspension bridges were subject of analysis during University of Washington studies; vertical and torsional, symmetric and asymmetric vibrations considered; formulas developed to explain behavior of original Tacoma Narrows Bridge and to predict that of new design; results given were checked against scale models of both original and proposed new design in wind tunnel tests.
Suspension bridge vibration formulas
Eng News -- Rec
Vincent, G.S. (author)
Engineering News-Record ; 146
1951
3 pages
Article (Journal)
English
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