A structural continuous beam at an intermediate floor level is shown in Figure I below. You are required to analyze the three spans continues beams for shear force and bending moment diagram. The beam is subjected to loads as shown in Figure 2. 6 m 6 m 6 m Figure 1: Continuous beam 27 kN/m 6m 6m 6m Figure 2: Loads By implementing the displacement methods of analysis that you have learnt in Structural Analysis I, calculate the maximum shear and moment of the beam by developing the shear force and moment diagram. (a) By implementing the slope-deflection method. (b) By implementing the moment distribution method., (c) Write down a conclusive remark on each method and justify a comparison. (d) If the supports at A and D have been changed to pin and rocker, predict the value of the maximum moment for the beam.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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A structural continuous beam at an intermediate floor level is shown in Figure I below.
You are required to analyze the three spans continues beams for shear force and bending
moment diagram. The beam is subjected to loads as shown in Figure 2.
6 m
6 m
6 m
Figure 1: Continuous beam
27 kN/m
6 m
6 m
6 m
Figure 2: Loads
By implementing the displacement methods of analysis that you have learnt in Structural
Analysis I, calculate the maximum shear and moment of the beam by developing the shear
force and moment diagram.
(a)
By implementing the slope-deflection method.
(b) By implementing the moment distribution method.,
(c) Write down a conclusive remark on each method and justify a comparison.
(d)
If the supports at A and D have been changed to pin and rocker, predict the value
of the maximum moment for the beam.
Transcribed Image Text:A structural continuous beam at an intermediate floor level is shown in Figure I below. You are required to analyze the three spans continues beams for shear force and bending moment diagram. The beam is subjected to loads as shown in Figure 2. 6 m 6 m 6 m Figure 1: Continuous beam 27 kN/m 6 m 6 m 6 m Figure 2: Loads By implementing the displacement methods of analysis that you have learnt in Structural Analysis I, calculate the maximum shear and moment of the beam by developing the shear force and moment diagram. (a) By implementing the slope-deflection method. (b) By implementing the moment distribution method., (c) Write down a conclusive remark on each method and justify a comparison. (d) If the supports at A and D have been changed to pin and rocker, predict the value of the maximum moment for the beam.
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