A calculation method for mid-span vertical displacement of beam bridges as a function of temperature
A technology of vertical displacement and calculation method, applied in the direction of calculation, computer-aided design, elasticity test, etc., can solve the problems of troublesome application of the three-bending moment equation, difficult to meet the field application of engineers, poor versatility, etc., to avoid finite element numerical value Effects of simulation, avoidance of structural mechanics analysis, ease of parametric analysis
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Embodiment 1
[0212] A girder bridge is a 6-span continuous girder structure, each span is 110m long, the main girder is made of steel, and the girder height is 4.5m. Due to direct sunlight, the temperature difference between the top and bottom of the girder is 20°C. The vertical displacement of the bridge deck in the mid-spans of the first and third spans needs to be determined.
[0213] It can be seen from the above conditions that the number of spans n=6 is the case of a continuous beam with even spans, and the number of unknown independent joint angles u=3. The span diameters of the main span and the side span are equal, l 0 = l 1 =110m, the linear expansion coefficient of the main girder is α=1.2×10 -5 ℃ -1 , the beam height h=4.5m, the temperature difference between the top surface and the bottom surface of the main beam is ΔT=20℃. Substituting the above parameters into formula (36), it can be obtained that when k=1, ΔS 1 =-0.0295m; when k=3, ΔS 3 =-0.0016m. It can be seen tha...
Embodiment 2
[0215] Assuming that the number of spans of the girder bridge is n, the span of each span is 110m, the material of the main girder is steel, the girder height is 4.5m, and the temperature difference between the top and bottom of the main girder is 20°C. Calculate the mid-span vertical displacement of the main girder of the outermost side span of the girder bridge when n=1,2,...,10.
[0216] The following parameters can be known from the above conditions: l 0 = l 1 =110m, α=1.2×10 -5 ℃ -1 , h=4.5m, ΔT=20°C, k=1. Depending on whether n is odd or even, these parameters are substituted into formula (35) or formula (36), respectively, and let (that is, take the smallest one of the integers not less than n / 2), so as to obtain the mid-span vertical displacement of the main girder of the outermost side span of the girder bridge with different total spans n (in order of increasing number of spans): -0.0807m , -0.0202m, -0.0323m, -0.0288m, -0.0297m, -0.0295m, -0.0295m, -0.0295m, -...
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