Task
Aerodynamic Design Report
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An abstract summarizes (in one paragraph) the major aspects of the entire report in a prescribed sequence that includes: 1) the overall purpose of the study and the problem(s) you investigated; 2) the basic design of the study; 3) major findings or trends found as a result of your analysis; and, 4) a brief summary of your interpretations and conclusions.
1 – Introduction
The introduction leads the reader from a general subject area to a particular topic of inquiry. It establishes the scope, context, and significance of the research being conducted by summarizing current understanding and background information about the topic, stating the purpose of the work in the form of the engineering problem, explaining briefly the methodological approach used to examine the engineering problem, highlighting the potential outcomes your project will can reveal, and outlining the remaining structure and organization of the paper.
A well-written introduction is important because, quite simply, you never get a second chance to make a good first impression. The opening paragraphs of your paper will provide your readers with their initial impressions about the logic of your argument, your writing style, the overall quality of your research, and, ultimately, the validity of your findings and conclusions. A vague, disorganized, or error-filled introduction will create a negative impression, whereas, a concise, engaging, and well-written introduction will lead your readers to think highly of your analytical skills, your writing style, and your research approach. All introductions should conclude with a brief paragraph that describes the organization of the rest of the paper.
2 – Airfoil Analysis
In this section you must shortlist a few (2-5) different airfoils as potentially suitable ones for your glider with justification. You need to conduct an analytical estimation of airfoil performance using knowledge you learnt in the course (thin airfoil theory and boundary layer equations). You will also need to conduct a computational analysis on the airfoils selected using XFLR5 and or Xfoil. You will need to compute the lift/drag variation with angle of attack, ?, (for your selected airfoils). You will then need to find published experimental results of your selected airfoils in a similar flow regime (you must use scientific references). And then compare and discuss any differences in the results (analytical vs numerical vs experimental) and explain why. Finally, you should identify the airfoil you will choose for your wings and identify why.
3 – Wing Analysis
In this section you must discuss your wing design parameters (chord, wing area, sweep, dihedral, etc…) and justify them. Discuss any practical/ functional considerations in your design such as maintenance, robustness. Discuss your material selection and justify it. Finally you will need to conduct a lifting line analysis on 10 control points of your wing. You will need to fill out the parameters of Table 1 to Table 3 and also provide a plot of the lift distribution.
4 – Glider Design
In this section you can describe the design of your full glider and how you fabricated it. You can also describe the materials used and include photos of the glider. Make sure you justify your design choices.
5 – Flight Testing the Prototype
In this section describe your methodology for assessing the glider’s performance. Detail and Describe how you obtained the glide polar plots. This includes describing your launch mechanism, how you measured its velocity and glide distance. Show screenshots showing how you used video analysis tool to assess the velocity. You then need to plot your glide polar and identify your best glide angle and corresponding L/D ratio. Describe any sources of error in your methodology and describe the differences in results between your flight tests and the Total Lift / Total Drag ratio computed through the lifting line theory.
6 – Concluding Remarks
The conclusion is intended to help the reader understand why the content described should matter to them after they have finished reading. A conclusion is not merely a summary of the main topics covered or a re-statement of your research problem, but a synthesis of key points.
References
Insert your references here using IEEE referencing style.
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