Course Coordinator:Thuy Chu (tchu@usc.edu.au) School:School of Science, Technology and Engineering
UniSC Sunshine CoastUniSC Moreton Bay |
Blended learning | Most of your course is on campus but you may be able to do some components of this course online. |
Please go to usc.edu.au for up to date information on the
teaching sessions and campuses where this course is usually offered.
Heat transfer studies the mechanisms of conduction, convection, radiation and their applications through an engineering perspective. Proficient engineers require a good fundamental understanding of heat transfer. In this course, you will learn and apply fundamental concepts of heat transfer for a variety of engineering systems and processes.
Activity | Hours | Beginning Week | Frequency |
Blended learning | |||
Learning materials – Asynchronous weekly learning material | 1hr | Week 1 | 13 times |
Seminar – On campus | 1hr | Week 2 | 2 times |
Tutorial/Workshop 1 – On campus | 2hrs | Week 1 | 13 times |
Laboratory 1 – On campus | 2hrs | Week 9 | 3 times |
Topics may include:
400 Level (Graduate)
12 units
Course Learning Outcomes On successful completion of this course, you should be able to... | Graduate Qualities Mapping Completing these tasks successfully will contribute to you becoming... | Professional Standard Mapping * Engineers Australia Stage 1 Professional Engineer Competency Standards | |
1 | Explain heat transfer theories and the principles and concepts which govern the methods of utilisation of energy and heat. | Knowledgeable |
1, 1.1.a, 1.1 |
2 | Critically evaluate and transform established theories and concepts to generate and transmit solutions to complex problems in the area of heat transfer. | Creative and critical thinker |
2, 2.1.a, 2.1.f, 2.1 |
3 | Exercise critical thinking and judgement in developing new understanding in the area of heat transfer. | Creative and critical thinker |
2, 2.1.d, 2.1 |
4 | Apply initiative and judgement in professional practice scholarship in relation to the area of heat transfer. |
Ethical Engaged |
3, 3.5.b, 3.5 |
5 | Demonstrate responsibility for own learning and professional development and collaborate with others on technical and analytical engineering projects. | Engaged |
3, 3.5.a, 3.5.b, 3.6.a, 3.5, 3.6 |
6 | Explain the importance of efficiency and its impact on economy and sustainability. | Sustainability-focussed |
1, 1.6.c, 1.6 |
CODE | COMPETENCY |
Engineers Australia Stage 1 Professional Engineer Competency Standards | |
1 | Elements of competency: Knowledge and Skill Base |
1.1.a | Knowledge and Skill Base - Comprehensive, theory based understanding of the underpinning natural and physical sciences and the engineering fundamentals applicable to the engineering discipline: Engages with the engineering discipline at a phenomenological level, applying sciences and engineering fundamentals to systematic investigation, interpretation, analysis and innovative solution of complex problems and broader aspects of engineering practice. |
1.6.c | Knowledge and Skill Base - Understanding of the scope, principles, norms, accountabilities and bounds of sustainable engineering practice in the specific discipline: Appreciates the social, environmental and economic principles of sustainable engineering practice. |
1.1 | Knowledge and Skill Base: Comprehensive, theory based understanding of the underpinning natural and physical sciences and the engineering fundamentals applicable to the engineering discipline. |
1.6 | Knowledge and Skill Base: Understanding of the scope, principles, norms, accountabilities and bounds of sustainable engineering practice in the specific discipline. |
2 | Elements of competency: Engineering Application Ability |
2.1.a | Engineering Application Ability - Application of established engineering methods to complex engineering problem solving: Identifies, discerns and characterises salient issues, determines and analyses causes and effects, justifies and applies appropriate simplifying assumptions, predicts performance and behaviour, synthesises solution strategies and develops substantiated conclusions. |
2.1.f | Engineering Application Ability - Application of established engineering methods to complex engineering problem solving: Conceptualises alternative engineering approaches and evaluates potential outcomes against appropriate criteria to justify an optimal solution choice. |
2.1.d | Engineering Application Ability - Application of established engineering methods to complex engineering problem solving: Investigates complex problems using research-based knowledge and research methods. |
2.1 | Engineering Application Ability: Application of established engineering methods to complex engineering problem solving. |
3 | Elements of competency: Professional and Personal Attributes |
3.5.b | Professional and Personal Attributes - Orderly management of self, and professional conduct: Understands the importance of being a member of a professional and intellectual community, learning from its knowledge and standards, and contributing to their maintenance and advancement. |
3.5.a | Professional and Personal Attributes - Orderly management of self, and professional conduct: Demonstrates commitment to critical self-review and performance evaluation against appropriate criteria as a primary means of tracking personal development needs and achievements |
3.6.a | Professional and Personal Attributes - Effective team membership and team leadership: Understands the fundamentals of team dynamics and leadership. |
3.5 | Professional and Personal Attributes: Orderly management of self, and professional conduct. |
3.6 | Professional and Personal Attributes: Effective team membership and team leadership. |
Refer to the UniSC Glossary of terms for definitions of “pre-requisites, co-requisites and anti-requisites”.
MEC200 and (MEC305 or MEC302)
Not applicable
Not applicable
Not applicable
Standard Grading (GRD)
High Distinction (HD), Distinction (DN), Credit (CR), Pass (PS), Fail (FL). |
Early feedback will be provided through completion of weekly activities in workshops. Furthermore, feedback on each assessment will be provided which will be used to help with the following assessment.
Delivery mode | Task No. | Assessment Product | Individual or Group | Weighting % | What is the duration / length? | When should I submit? | Where should I submit it? |
All | 1 | Oral and Written Piece | Group | 30% | 1500-word written report (group) and 10-minute oral presentation |
Week 7 | Online Assignment Submission with plagiarism check |
All | 2 | Practical / Laboratory Skills, and Written Piece | Individual | 30% | Two lab sessions. Pre-lab quiz questions and individual laboratory reports (1200 word equivalent) |
Week 12 | Online Assignment Submission with plagiarism check |
All | 3 | Examination - Centrally Scheduled | Individual | 40% | 3 hours |
Exam Period | Online Assignment Submission with plagiarism check |
All - Assessment Task 1:Group Report and Presentation | |
Goal: | The goal of this task is to investigate and apply principles of heat transfer through a given engineering context. You will be required analyse, discuss and present a heat-transfer-related topic. |
Product: | Oral and Written Piece |
Format: | The written group report will be approximately 1500 words while the corresponding group oral presentation will be approximately 10 minutes followed by a Q&A time. |
Criteria: |
|
All - Assessment Task 2:Laboratory Reports | |
Goal: | The goal of this task is to investigate fundamental principles of heat transfer through experimental applications and subsequent analyses. |
Product: | Practical / Laboratory Skills, and Written Piece |
Format: | Prior to each session, you will complete a series of pre-lab questions online. During the lab session, you will conduct an experiment and start working on a report. The experimental work will be conducted in a group format, however the pre-lab questions and the lab reports are to be submitted individually by all students. |
Criteria: |
|
All - Assessment Task 3:Examination | |
Goal: | The goal of this task is to evaluate your knowledge of concepts of heat transfer and to demonstrate the use of standard methods to analyse problems within the subject area. |
Product: | Examination - Centrally Scheduled |
Format: | Centrally scheduled 3-hour examination. |
Criteria: |
|
A 12-unit course will have total of 150 learning hours which will include directed study hours (including online if required), self-directed learning and completion of assessable tasks. Student workload is calculated at 12.5 learning hours per one unit.
Please note: Course information, including specific information of recommended readings, learning activities, resources, weekly readings, etc. are available on the course Canvas site– Please log in as soon as possible.
Please note that you need to have regular access to the resource(s) listed below. Resources may be required or recommended.
Required? | Author | Year | Title | Edition | Publisher |
Required | Yunus A. Çengel, Afshin J. Ghajar | 0 | Heat And Mass Transfer, 6th Edition, Si Units | 5th Edition or later | McGraw-Hill |
Recommended | Cengel,John M. Cimbala,Robert H. Turner | 0 | Fundamentals of Thermal-Fluid Sciences (SI Units) | 5th Edition or later | McGraw-Hill |
Not applicable
Academic integrity is the ethical standard of university participation. It ensures that students graduate as a result of proving they are competent in their discipline. This is integral in maintaining the value of academic qualifications. Each industry has expectations and standards of the skills and knowledge within that discipline and these are reflected in assessment.
Academic integrity means that you do not engage in any activity that is considered to be academic fraud; including plagiarism, collusion or outsourcing any part of any assessment item to any other person. You are expected to be honest and ethical by completing all work yourself and indicating in your work which ideas and information were developed by you and which were taken from others. You cannot provide your assessment work to others. You are also expected to provide evidence of wide and critical reading, usually by using appropriate academic references.
In order to minimise incidents of academic fraud, this course may require that some of its assessment tasks, when submitted to Canvas, are electronically checked through Turnitin. This software allows for text comparisons to be made between your submitted assessment item and all other work to which Turnitin has access.
Eligibility for Supplementary Assessment Your eligibility for supplementary assessment in a course is dependent of the following conditions applying: - The final mark is in the percentage range 47% to 49.4% - The course is graded using the Standard Grading scale - You have not failed an assessment task in the course due to academic misconduct
Late submission of assessment tasks will be penalised at the following maximum rate (the rates are cumulative): - 5% (of the assessment task’s identified value) per day for the first two days from the date identified as the due date for the assessment task - 10% (of the assessment task’s identified value) for the third day - 20% (of the assessment task’s identified value) for the fourth day and subsequent days up to and including seven days from the date identified as the due date for the assessment task - A result of zero is awarded for an assessment task submitted seven days from the date identified as the due date for the assessment task. Weekdays and weekends are included in the calculation of days late. To request an extension, you must contact your Course Coordinator and supply the required documentation to negotiate an outcome. Refer to the Assessment: Courses and Coursework Programs – Procedures
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