Static and Dynamic Loading of Aircraft Structures - Engineering Assignment Help

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Assignment Task

 


Mark range Themes
Critique and application to aerospace (30%) Pressure/Flow measurement (35%) Stress/Strain experiment (35%)

  • 90%+ Of professional standard. Far exceeds all the criteria below
  • 80-89?ull and thorough critique with information sourced from numerous valid sources
  • The impact and application to the aerospace industry is thoroughly presented
  • Referenced using CU Harvard style with no errors
  • Presented in well written UK English with no errors Experiment(s) have been accurately designed using the most appropriate protocol
  • Comparison to virtual techniques is thorough and robust
  • The types of experiment(s) are wholly appropriate for the application and results required
  • Instructions to laboratory users are presented in well written UK English with no errors
  • 70-79?ull and thorough critique with information sourced from numerous valid sources
  • The impact and application to the aerospace industry is well presented
  • Referenced using CU Harvard style with minor errors
  • Presented in well written UK English with minor errors Experiment(s) have been designed using the most appropriate protocol
  • Comparison to virtual techniques is thorough
  • The types of experiment(s) are appropriate for the application and results required.

 

Fluid dynamics
• surface pressure measurement, hot wire anemometry (HWA), pressure transducer measurement (DSA), phase Doppler anemometry (PDA).

Aerospace structural performance
• static and dynamic loading of aircraft structures - strain/stress measurement.
• heat transfer and thermal analysis - temperature measurement.

There are some fundamental questions to answered at the planning stage of any experiment:
• What am I looking for?
• What problem am I trying to solve?
• Is the objective clear? (Write it down…clearly…)
• What variables need to be measured?
• What does the measurement mean
• How will the measurements be translated to outcomes?
• Why is an experiment needed?
• What primary variable shall be investigated?
• What control must be exerted on the experiment?
• What ranges of the primary variable will be necessary to describe the phenomena under study?
• How many data points should be taken to ensure good data sample?
• What instrument accuracy is required for each measurement?
• If a dynamic measurement is involved, what frequency response must the instruments have?
• Are the instruments available commercially, or must they be custom constructed?
• What safety precautions are necessary?
• What financial resources are available to perform the experiment?
• What provisions have been made for recording the data?
• What provisions have been made for either on-line or subsequent computer reduction of dat

    

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