Fixed buik-in or encastré beams (see Figure.2) are usually used in structure due to their high stability and performance in resisting shear stress and bending moment. Your role in building and construction company is to analyse the shear foorce and bending moment in order te provide better design of such beams under Yaricty of loads. Your manager asked you to provide a complete analysis as well as to deliver a report including your design recommendations. 200 kN/m 140 kN 10 7.5 Figure.2: Encastré beam under variety of loads Your tasks are as follows: 1- Construct free-body diagram (FBD) to show the reaction forces and moments, and the oquivalent force of the distributed load, knowing that the upward reaction force on left side is 200 kN and the reaction moment is clockwise with a value of 1300 kN. m. 2- Show FBD for cach required section/cut and include the internal forces and moments. 3- Write the distribution functions of the shear force and bending moment for cach cut in the beam. 4- By hand construct diagrams for the shear force and bending moment distributions. 5 Datarmina the magnitude and pocitions of maximum chear force and banding momant. 6- Using appropriate software, produc a model for the fixed end beam and verify your results from Part.4.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Project 2:
Fixed/buit-in or encastré beams (see Figure.2) are usually used in structure due to their high stability and
performance in resisting shear stress and bending moment. Your role in building and construction company is to
analyse the shear forse and bending moment in order te provide bstter design of such beams under varisty of
loads. Your manager asked you to provide a complete analysis as well as to deliver a report including your design
recommendations.
200 kN/m
140 kN
10
7.5
Figure.2: Encastré beam under variety of loads
Your tasks are as follows:
1- Construct free-body diagram (FBD) to show the reaction forces and moments, and the equivalent force of the
distributed load, knowing that the upward reaction force on left side is 200 kN and the reaction moment is
clockwise with a value of 1300 kN. m.
2- Show FBD for each required section'cut and include the intermal forces and moments.
3- Write the distribution functions of the shear force and bending moment for each cut in the beam.
4. By hand construct diagrams for the shear force and bending moment distributions.
5. Datermine the magnitudes and positions of maximum choar force and banding moment.
6- Using appropriate software, produce a model for the fixed snd beam and verify your results from Part.4.
Transcribed Image Text:Project 2: Fixed/buit-in or encastré beams (see Figure.2) are usually used in structure due to their high stability and performance in resisting shear stress and bending moment. Your role in building and construction company is to analyse the shear forse and bending moment in order te provide bstter design of such beams under varisty of loads. Your manager asked you to provide a complete analysis as well as to deliver a report including your design recommendations. 200 kN/m 140 kN 10 7.5 Figure.2: Encastré beam under variety of loads Your tasks are as follows: 1- Construct free-body diagram (FBD) to show the reaction forces and moments, and the equivalent force of the distributed load, knowing that the upward reaction force on left side is 200 kN and the reaction moment is clockwise with a value of 1300 kN. m. 2- Show FBD for each required section'cut and include the intermal forces and moments. 3- Write the distribution functions of the shear force and bending moment for each cut in the beam. 4. By hand construct diagrams for the shear force and bending moment distributions. 5. Datermine the magnitudes and positions of maximum choar force and banding moment. 6- Using appropriate software, produce a model for the fixed snd beam and verify your results from Part.4.
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