Campus North Terrace Campus
Degree Type Combined Degree
Duration
5 years
full-time
or
part-time
equiv.
SATAC Code 324211
2011
ATAR
81.9
Petroleum Engineers seek to recover oil and gas on a sustainable basis at minimum financial and environmental cost. Their tasks focus on extracting the maximum possible amounts of oil and gas from underground rock formations or reservoirs. This requires the practical application of exacting science, beginning with advanced mathematical modelling of the size and nature of the reservoir, optimum well locations to be drilled, the planned implementation of suitable surface facilities, and finally the prediction of liquid and gas flows during the recovery process. By way of example, the oil may need to be forced out of reservoir rocks by pumping water or gas under pressure into wells drilled for that purpose. Hydraulic or chemical techniques are often required to fracture formations to induce higher flow rates. One of the current challenges is to produce hydrocarbon and energy from unconventional resources such as deepwater reservoirs, coal gas seam, and geothermal reservoirs.
A key feature of this program is the integration of traditional petroleum engineering topics with topics in petroleum geo-science and management, leading to a skill set that matches both the current needs of the industry and the way it operates. The Petroleum Engineering degree builds a strong foundation of mathematics, chemistry, physics, geology/geophysics, computer applications and engineering. Over the course of the program, the emphasis of the subjects studied changes from more general engineering topics to specific petroleum-related topics. It also has a strong focus on management and business related aspects. These are a particular focus of the School and make its teaching curricula unique. Many staff members have had recent industry experience, further enhancing the relevance of the curriculum to the modern petroleum industry.
Chemical engineering involves the systematic design, development and operation of process systems for the extraction, transformation and recovery of materials. It is a key engineering discipline, which combines knowledge of basic chemistry and mathematics with engineering principles and real world economic considerations. The scale of operation varies from small to very large, and a principal feature of chemical engineering is the translation of laboratory-scale research results to large-scale commercial production.
Chemical engineering is the discipline that sustains and improves a range of industries as diverse as food processing, petrochemicals, ceramics, petroleum refining, primary metals, plastics, biotechnology, pharmaceuticals, glass and specialty chemicals.
Choose your applicant type to view the relevant admissions
information for this program.
I am a:
| SATAC Code | 324211 |
| 2011 CSP ATAR | 81.9 |
| Adelaide Approved Score |
80 |
| 2011 CSP IB | 28 |
| Annual tuition fees |
Commonwealth-supported place: $8,050
|
| Mid-year entry? | Only if prerequisites to core subjects have been completed |
| Deferment? | Yes - 2 year |
| Enquiries | University Contact Centre |
IB: either Mathematics (HL grade 3) and Physics (SL grade 4/HL grade 3); or, Chemistry (SL grade 4/HL grade 3), Physics (SL grade 4/HL grade 3) & Mathematics (SL grade 4/HL grade 3).
Not an international applicant? ![]()
| International ATAR | 80 |
| IELTS Overall | 6 [more info] |
| Annual tuition fees |
International student place: $27,500 |
| Mid-year entry? | Yes |
| Enquiries | University Contact Centre |
| International ATAR | 80 |
IELTS
Overall
Reading
Listening
Speaking
Writing
|
6
5.5
5.5
6
6 |
Not an international applicant applying with Australian year 12 results? ![]()
| International ATAR | 80 |
| Annual tuition fees |
International student place: $27,500 |
| Mid-year entry? | Yes |
| Enquiries | University Contact Centre |
IB: either Mathematics (HL grade 3) and Physics (SL grade 4/HL grade 3); or, Chemistry (SL grade 4/HL grade 3), Physics (SL grade 4/HL grade 3) & Mathematics (SL grade 4/HL grade 3).
The study plans
given are examples of pathways through this degree for students that commenced their program in 2012 (refer to the program rules).
Students that commenced in previous years should refer to the tabs above(referring to years) or consult their Faculty for advice.
| Level I |
|---|
Semester 1
Semester 2
*Students who have undertaken SACE Stage 2 Specialist Mathematics (or equivalent) will be required to enrol in MATHS 1011 Mathematics IA followed by MATHS 1012 Mathematics IB. Students who have not undertaken SACE Stage 2 Specialist Mathematics will be required to enrol in MATHS 1013 Mathematics IM, then MATHS 1011 Mathematics IA in the following semester followed by MATHS 1012 Mathematics IB in Summer Semester, in order to complete the level I Mathematics requirement. The satisfactory completion of MATHS 1013 Mathematics IM is in addition to the normal requirements for the Bachelor of Engineering. International Students |
| Level II |
Semester 1
Semester 2
|
| Level III |
Semester 1
Semester 2
|
| Level IV |
Semester 1
Semester 2
*to be replaced in 2013 with CHEM ENG 3024 Professional Practice III |
| Level V |
Semester 1
Semester 2
|
| Electives |
|
Petroleum Engineering
Chemical Engineering
|
This program is accredited by Engineers Australia.
Students are required to complete 12 weeks of approved work experience.
Please direct enquiries to the University Contact Centre
Phone: +61 8 8313 7335 (toll free 1800 061 459)
The annual Open Day and Information Night events provide an excellent opportunity to see our campus, meet with academics, and discuss your study options.
The University of Adelaide is committed to regular reviews of the courses and programs it offers to students. The University of Adelaide therefore reserves the right to discontinue or vary programs and courses without notice. Please read the important information contained in the disclaimer.
Last updated: Tuesday, 1 May 2012