The floor system of a gymnasium consists of a 130-mm-thick concrete slab resting on four steel beams (A = 9100 mm²) that, in turn, are supported by two steel girders (A = 25600 mm²), as shown in Fig. 2.3. Determine the dead loads acting on beam BF and girder AD. 2.3 Beam BF Uniformly distributed load ㅋㅋ =28.6 (5) (180) + 77 (100) = 16.04 kN/m 16.04 kN/m B 80.2 kN F 80.2 kN.
The floor system of a gymnasium consists of a 130-mm-thick concrete slab resting on four steel beams (A = 9100 mm²) that, in turn, are supported by two steel girders (A = 25600 mm²), as shown in Fig. 2.3. Determine the dead loads acting on beam BF and girder AD. 2.3 Beam BF Uniformly distributed load ㅋㅋ =28.6 (5) (180) + 77 (100) = 16.04 kN/m 16.04 kN/m B 80.2 kN F 80.2 kN.
Steel Design (Activate Learning with these NEW titles from Engineering!)
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Chapter10: Plate Girders
Section: Chapter Questions
Problem 10.7.9P
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
Transcribed Image Text:The floor system of a gymnasium consists of a 130-mm-thick concrete slab resting on
four steel beams (A = 9100 mm²) that, in turn, are supported by two steel girders (A =
25600 mm²), as shown in Fig. 2.3. Determine the dead loads acting on beam BF and
girder AD.
2.3 Beam BF
Uniformly distributed load
ㅋㅋ
=28.6 (5) (180) + 77 (100) = 16.04 kN/m
16.04 kN/m
B
80.2 kN
F
80.2 kN.
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