Develop a MATLAB program for solving the problem

Assignment Help Simulation in MATLAB
Reference no: EM132296977 , Length: word count:3000

Advanced Computational Fluid Dynamics Assignment -

Instruction - Develop CFD programs to solve simple problems in this project. There are two parts in this project, each student needs to complete the work assigned in each part and submit a written report.

Part one: Simple initial value problem

Assignment (please read the problem description in attached file before doing the assignment)

(1) Find out the equation of motion of the cylinder. The derivation procedure of the equation must be included in the report.

(2) Develop a numerical method for predicting the vibration of the cylinder. The procedure of deriving the FDM formula must be included in the report.

(3) Develop a MATLAB program for solving the problem. The MATLAB program code must be included in the report.

(4) Keeping the damping coefficient of c = 100 N·m/s, conduct numerical simulations for KC=2 to 20 with an interval of 2 and find out the variation of the power with the KC number.

(5) Keeping the KC number to be constant of KC=10, conduct numerical simulations for c=0 to 2000 N·m/s with an interval of 50 and find the variation of the power with c.

(6) In the report, show the time histories of the vibration for all the calculated cases.

(7) Discuss how KC and c affects the power generation.

Part two: One-dimensional convection diffusion problem

Assignment (please read the problem description in attached file before doing the assignment)

(1) Develop a finite difference method (FDM) formula for solving the equation. The procedure of deriving the FDM formula must be included in the report.

(2) Develop a MATLAB program and use this program to do the simulation and answer the following questions. Divide the soil depth into 200 cells when solving the problem numerically. You must attach the MATLAB program in your report.

(3) If α=0.0002 m2/s, find out when the temperature at the depth of 1.5 m reaches 25oC.

(4) If the temperature at the depth of 1.5 m reaches 25oC is defined as T1.5, do the simulations for α in the range of 0.0002 m2/s to 0.001 m2/s with an interval of 0.0001 m2/s and discuss how α on T1.5 and why.

Attachment:- Assignment File.rar

Reference no: EM132296977

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Reviews

len2296977

4/30/2019 10:47:10 PM

Problems in MATLAB and 3000 words. Submission: online submission through vUWS. Format: Microsoft Word document. Length: 3000 word written report. Curriculum Mode: Applied Project.The ability of developing numerical method for solving practical problems will be assessed through this project report. A project instruction document will be available on vUWS before the project starts. Resources: MATLAB Software.

len2296977

4/30/2019 10:47:02 PM

Marking Criteria: Each student must complete the report and submit it by the due date. Late submission will lead to a deduction in the marks. The student shows a strong ability of writing excellent engineering reports. The numerical method is described clearly and accurately. Enough numerical results are presented in a logical way to support the conclusions.

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