Hobart
Introduction
The unit extends students skills and knowledge of advanced fluid mechanics. The governing equations for fluid dynamics are introduced in differential form and are used to solve complex fluid mechanics problems for both laminar and turbulent flows involving boundary layers, internal and external flow, aerodynamics and compressible gas flow. The theory and methodology of Computational Fluid Dynamics is explored through a major design project that utilises parametric optimisation. Laboratory projects in aerodynamics and compressible flow further extends students’ experience in fluid flow measurement and analysis techniques. Sustainability aspects are addressed through an emphasis on efficiency and loss minimisation for fluid systems.
Summary
| Unit name | Advanced Fluid Mechanics |
| Unit code | ENG425 |
| Credit points | 12.5 |
| College/School | Sciences and Engineering School of Engineering |
| Discipline | Engineering |
| Coordinator | Associate Professor Alan Henderson |
| Delivered By | University of Tasmania |
| Level | Honours |
Availability
Specific information on 2027 unit availability will be available in August
Key Dates
| Study Period | Start date | Census date | WW date | End date |
|---|---|---|---|---|
| Semester 1 | 21/2/2027 | 15/3/2027 | 18/4/2027 | 12/6/2027 |
* The Final WW Date is the final date from which you can withdraw from the unit without academic penalty, however you will still incur a financial liability (refer to How do I withdraw from a unit? for more information).
Unit census dates currently displaying for 2027 are indicative and subject to change. Finalised census dates for 2027 will be available from the 1st October 2026. Note census date cutoff is 11.59pm AEST (AEDT during October to March).
Learning Outcomes
- Derive analytical solutions to laminar fluid flow problems using continuum theory based-methods.
- Solve complex fluid flow problems for laminar and turbulent flow using established approximate and empirical methods.
- Parametrically optimise a fluid related design problem using computational fluid dynamics to formally accepted standards for verification and validation.
- Measure the performance of aerodynamic devices using experimental techniques in incompressible and compressible flow.
Fee Information
2027 fee information will be available in August.
Requisites
Prerequisites
ENG313Teaching
| Teaching Pattern | Weeks 1-6: Weekly 3 hour lecture + 1 hour tutorial. Weeks 7-12: Weekly 2 hour lecture + 2 hr workshops in computer lab Weeks 4 and 6 : Laboratory sessions
|
|---|---|
| Assessment | In-Class Test (10%)|Laboratory Reports (20%)|Computational Fluid Dynamics Design Optimisation (30%)|Final Examination (40%) |
| Timetable | View the lecture timetable | View the full unit timetable |
Textbooks
| Required |
Required readings will be listed in the unit outline prior to the start of classes. |
|---|---|
| Recommended | Cengel and Cimbala, Fluid Mechanics. Fundamentals and Applications, Fourth Edition in SI units, McGraw-Hill, New York, 2019 E-Book |
The University reserves the right to amend or remove courses and unit availabilities, as appropriate.