Title, Student Name and ID (You do not need a title and
contents page) MANDATORY
• Abstract (Very brief summary of what you did and yourfindings)
• Introduction:
Aims, Objectives, Problem Description, Formulation and Hypothesis
4
• Static Equilibrium Calculations:
✓ Explain your method and include the equation of equilibrium at
Point F.
✓ Present your calculated values for the Support Reactions and
Forces in all elements.
8
12
• Finite Element Calculations (“Mathematical Model”):
✓ Describe your mathematical model with enough detail for
someone else to replicate your method. Include any the code you
have written to perform the calculations as an appendix (it will
not count towards the page limit).
✓ Present your results for the displacements and forces at the
nodes in a suitable format.
3
12
• Numerical (FEA) Model:
✓ Describe your FEA model with enough detail (geometry, properties,
mesh density, elements, loads and boundary conditions, analysis
type, type of solver etc.)) for someone else to replicate your
results.
✓ Present an overview of the results with an appropriate diagram,
along with tabulated values for:
1. Nodal Displacements
2. Nodal Forces
3. Support Reactions
4. Forces in all elements
5. Stress in all elements
5
5
5
5
5
5
5
• Analysis & Discussion
✓ Make suitable comparison, critique and discuss your theoretical
and FEA results, methods and appropriateness.
✓ Calculate the factor of safety, and identify how the structure would
eventually fail if the load was gradually increased.
✓ What is the purpose of element BE?
9
5
3
• Conclusions
Summarise your main findings and provide recommendations for
future work.
4
• Bibliography (References) MANDATORY
• Appendix: Coding Transcript
Please include a transcript of the annotated code you have developed
for your FE calculations (mathematical model) and your static
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