208MAE - Analytical Modelling & Practical Finite Element Analysis, Engineering Problems - Engineering Assignment Help

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Assignment Task


Module Learning Outcomes Assessed: 
1.Develop and appraise knowledge and understanding of the mathematical principles necessary to underpin their education in their engineering discipline and to enable them to apply mathematical methods, tools, and notations proficiently in the analysis and solution of engineering problems.  
2.Demonstrate the ability to extract data pertinent to an unfamiliar problem and apply its solution using computer-based engineering tools when appropriate.  
3.Appraise and understand the capabilities of computer-based models for solving problems in engineering, and assess the limitations of particular cases.  
4.Demonstrate engineering workshop and laboratory skills 

1.0 Aim & Outcomes 

The purpose of this coursework is to give you hands-on experience using professional finite element analysis (FEA) software. For this task, you will be given a problem to solve investigate. 

1. Demonstrate the ability to extract data pertinent to an unfamiliar problem, and apply its solution using computer-based engineering tools when appropriate. 2. Appraise and understand the capabilities of computer-based models for solving problems in engineering, and assess the limitations of particular cases. 

This project will be formally introduced in 208MAE lectures where the aims, objectives, and assessment brief will be described and discussed. However, we strongly advise that you  START THE COURSEWORK NOW. It is important for you to attend all lectures and tutorials where you will be able to discuss and review your progress and seek feedback, advice, and clarification.  

This is individual coursework. The work that you submit must be your own. Plagiarism and collusion will be dealt with very strictly in accordance with the University Rules and  Regulations. 

2.0 Assessment

For this coursework, we would like you to construct a model of a truss frame using a Finite  Element Analysis (FEA) package, analyse its behaviour and compare your results with theoretical analysis (i.e. hand calculations).

  • Construct an FEA model which allows you to investigate the behaviour of the truss.  It is expected that your FEA model will allow you to calculate the following: • X- and Y- displacements for all nodes; 
  •  Forces at all nodes (think about what this means); 
  •  Forces in all elements; 
  •  Stress in all elements  
  •  Reaction forces at supports; and, 
  •  The factor of safety (think carefully about possible failure mechanisms!) 
  • . Construct the mathematical FE equations {F}=[K]{U} for this system and solve them using suitable software (e.g. Excel,. Matlab, etc.). It is expected that your model will allow you to calculate the displacements and forces at each of the nodes – these should be compared with the results from your FEA model.  
  •  You will need to analyse the behaviour of your models and compare this with an appropriate theoretical method (e.g. hand calculations of static equilibrium). Show your equilibrium equation at Point E. Present results for element forces and stresses and compare these with the results from your FEA model.  
  •  Explain the structural significance of bar BE 
  • You can use any FEA software you wish. We strongly recommend that you use ABAQUS to construct your FEA model. We will be able to assist you with any queries you may have regarding ABAQUS during the tutorials and theta sessions. You can download ABAQUS on the University PCs using AppsAnywhere. Alternatively, you can download a student copy for your own laptops via the ABAQUS website. 
  • You can use any coding software you wish for your mathematical model. You can obtain access to MATLAB, Python, C++ and MS Excel on the University PCs. 

 


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