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New matrix-energy method for analyzing all stresses in rigidly connected highway bridge trusses
Theoretical development of proposed matrix-energy method and examples for orientation of its exact and simplified versions are set forth; method of panel-load superposition is advanced as substitute for influence lines; three-span continuous highway bridge truss was selected for objective analysis; proposed method yields maximum axial stresses and simultaneous end moments and transverse shears, and maximum end moments and simultaneous axial stresses and transverse shears; larger requirement of two constitutes absolute maximum stress state that should govern design.
New matrix-energy method for analyzing all stresses in rigidly connected highway bridge trusses
Theoretical development of proposed matrix-energy method and examples for orientation of its exact and simplified versions are set forth; method of panel-load superposition is advanced as substitute for influence lines; three-span continuous highway bridge truss was selected for objective analysis; proposed method yields maximum axial stresses and simultaneous end moments and transverse shears, and maximum end moments and simultaneous axial stresses and transverse shears; larger requirement of two constitutes absolute maximum stress state that should govern design.
New matrix-energy method for analyzing all stresses in rigidly connected highway bridge trusses
Nat Research Council -- Highway Research Board -- Research Rec
Li, S.T. (Autor:in) / Jong, I.C. (Autor:in) / Russell, J.E. (Autor:in) / Samra, M. (Autor:in)
1965
59 pages
Aufsatz (Zeitschrift)
Englisch
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