Category | Assignment | Subject | civil engineering |
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University | Module Title | CVE2323: Structural Analysis 2 |
Assessment Title | Report |
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Consider the following structural system shown in Figure 1.
Use the Matrix analysis method to analyse the structural response of the portal frame.
E=4500ksi, I=3500in4, Poisson Ratio=0.1 and Area=180 in2.
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Order Non Plagiarized Assignment1) Use Matrix analysis method and STAAD. PRO to determine internal force diagrams (bending moments, shear and axial forces), reaction forces and sway (horizontal displacement of beam) of the following four systems:
B.1 uniform frame and offset load (Figure 2)
B.2 nonuniform frame and offset load (Figure 3)
B.3 nonuniform frame and centric load (Figure 4)
B.4 uniform frame and centric load (Figure 5).
Sectional properties 1: Solid rectangular cross-section with a depth of 2 mm and an out of plane thickness of 15 mm (Calculate the corresponding A1 and I1).
Sectional properties 2: Solid rectangular cross-section with a depth of 1.5 mm and an out of plane thickness of 15 mm (Calculate the corresponding A2 and I2).
Load: Force F = 4.9 N
Material properties: Young’s modulus E = 100,000 N/mm2
Figure 5: System B.4: uniform frame and centric load.
2) Discuss differences in internal force distributions (axial force, shear force and bending moment diagrams) and reaction forces for the systems B.1 to B.4
3) Discuss how the sway of the frame (sway is the horizontal displacement of the horizontal beam) is influence by position of the load and the nonuniform properties of the frame.
4) Investigate the importance of the axial stiffness on the STAAD.PRO results for the system with the largest sway. Would it acceptable to assume that the members are inextensible?
5) Summarise the key results in the form of all reactions and the sway for all 4 systems in a table
The report should contain the following minimum contents:
Description of the problem
Summary of the results in the form of a comparison of reaction forces and internal force diagrams (BMD, AFD, SFD) of the reference solution and the solution of the force method. Comment on any differences in the solution.
Description of calculation steps, intermediate internal force diagrams and reaction forces for the auxiliary systems.
Description of the problem.
You are very welcome to include hand written calculations and hand drawn internal force diagrams in your report.
Please note that standard rules for late submission of coursework apply.
The marking will take into account in equal weights the presentation of the results and the understanding.
Concerning the presentation, aim for the following:
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