Engineers Australia Accreditation Requirements - Self-Weight and Pedestrian Load - Engineering Assignment Help

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Assignment Task :

1. General Information 

This group assignment consists of 30% of your final mark. You should also participate in the peer  assessment activity in Engineering Communication using SPARK to assess the performance of yourself  and your peers. Participation in peer assessment will be 10% of your total mark. In addition, the report  mark will be multiplied by the peer assessment multiplier to give an individual mark out of 30.  

  • The intent of the group project is to introduce role play and scenario-based learning frameworks  to students to work in a team environment, which is a feature of professional practice and is  required as part of Engineers Australia accreditation requirements. 

 

2. Project Instruction 

Step 1. Select your group (5-6 students in each group) by Sunday 16th August 23:59. If you do not  choose group by the reported deadline, you will be assigned to groups. 

Step 2. Analyse the problem: Your team has been asked to design a steel beam bridge with 6m length  as a simple supported beam   The beam weight  is 6000N distributed over the beam length. In addition, in the worst case, two bushwalkers with 900N weight each will be on the bridge, they can pass the bridge together or individually. You only need to  take the self-weight and pedestrian load into account in your calculations. Hint: you can consider two  

loads on the beam for each person or one load including the weight of both people.

Step 3. Consider the proposed loading condition. 

Step 4. As a group of design engineers, you need to solve problems and answer questions in  collaboration with your team members rather than individually! Make sure to work as a team to  achieve the best result. 

Step 5. Examine the requirements for the project and assign a lead engineer & a support engineer for  each requirement:  

(a) Determine the scenario that will create the maximum shear force and bending moment on the  beam.  

(b) Draw the shear force diagram and bending moment diagram based on the loading condition.

(c) Determine the size of steel I beam with specifications shown below with the smallest possible  section that can carry the bending moment. Maximum allowable stress is 100MPa.

(d) Decide on an alternative steel rectangle section as shown below that can also carry the moment  and discuss its difference with previous section in detail. Which section is your preference? Explain your reason. 

 

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