PETROENG 4037 - Unconventional Resources & Recovery
North Terrace Campus - Semester 2 - 2014
General Course Information
Course Code PETROENG 4037 Course Unconventional Resources & Recovery Coordinating Unit Australian School of Petroleum Term Semester 2 Level Undergraduate Location/s North Terrace Campus Units 3 Contact Intensive short course (total of 48 hours over 6 days) Assumed Knowledge PETROENG 2010, PETROENG 3025, PETROENG 2009 Course Description This course will provide an overview of the key issues and methods relevant to the exploration, assessment and development of unconventional reservoirs. The course will focus on application of geomechanics in CSG, Tight gas and shale gas, reserve estimation and production forecasting of unconventional reservoirs including empirical production decline methods, alanytical reservoir models, and linear double porosity type curves and fractured reservoir simulation, field development and economics of unconventionals.
Course Coordinator: Associate Professor Manouchehr Haghighi
The full timetable of all activities for this course can be accessed from Course Planner.
Course Learning Outcomes
1 Fundamentals and overview of CSG and shale gas 2 Fundamentals of hydraulic fracturing 3 Practising reservoir engineering of CSG 4 Introduction to geological characteristics of unconventional 5 Application and practise of geo-mechanics in unconventional reservoirs including basic rock mechanics, earth stresses, fracturing and stress, well-bore stability and hydraulic fracturing in CSG, tight gas and shale gas 6 Reserve estimation and production forecasting using decline curve analysis 7 Reservoir and wellbore characterization using analytical methods and type curve matching 8 Reserve estimation, production forecasting, and reservoir characterization using multiple porosity reservoir simulation 9 Enhanced gas recovery by proppant injection in unconventional reservoirs.
University Graduate Attributes
This course will provide students with an opportunity to develop the Graduate Attribute(s) specified below:
University Graduate Attribute Course Learning Outcome(s) Knowledge and understanding of the content and techniques of a chosen discipline at advanced levels that are internationally recognised. 1, 3, 6, 9 The ability to locate, analyse, evaluate and synthesise information from a wide variety of sources in a planned and timely manner. 2, 4, 5 An ability to apply effective, creative and innovative solutions, both independently and cooperatively, to current and future problems. 9, 7 Skills of a high order in interpersonal understanding, teamwork and communication. 8 A proficiency in the appropriate use of contemporary technologies. 9
Coal-bed Methane: Principles and Practices, Halliburton
GRI CBM Production Operations, Vicki A. Hollub and Paul S. Schafer, 1992
Gas Reservoir Engineering, John Lee, SPE Textbook Series Vol. 5, 1996
Shale gas Production Processes, James G. Speight, Elsevier, 2013.
Some lecture materials and PowerPoint slides will be available through MyUni.
Learning & Teaching Activities
Learning & Teaching Modes
Lectures supported by problem-solving tutorials and in-class discussion.
The information below is provided as a guide to assist students in engaging appropriately with the course requirements.
Contact hours: 48 hours
Home study: 100 hours
Learning Activities Summary
Day Lecture 1
(16:30 - 17:00) Mon 22 Sept Day 1 Introduction (Manny) Geology of Unconventionals (Peter) Geology of Unconventionals (Peter) Geology of Unconventionals (Peter) Tues 23 Sept Day 2
Geomechanics in Unconventionals (Ray) Permeability Systems (Ray) Resource Estimation (Ray) Resource Estimation (Ray) Wed 24 Sept Day 3 Resource Estimation (Ray)
Field Appraisal & Well Planning (Ray) Field Appraisal & Well Planning (Ray) Tutorial (Ray) In-Class Quiz Thur 25 Sept Day 4
Well Testing (Ray)
Well Testing (Ray) Hydraulic Fracturing (Ray) Hydraulic Fracturing (Ray) Fri 26 Sept Day 5
Hydraulic Fracturing (Ray)
Hydraulic Fracturing (Ray)
Tutorial (Ray) In-Class Quiz Mon 29 Sept Day 6 Reservoir Engineering (Manny) Reservoir Engineering (Manny) Reservoir Engineering (Manny)
Tues 30 Sept Day7
Reservoir Simulation (Manny)
Field Development (Ray)
Field Development (Ray) In-Class Quiz
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- Assessment must encourage and reinforce learning.
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Assessment will be carried out based on 3 elements of class participation and in-class quiz, Homework assignment, and the final exam
Assessment Related Requirements
Compulsory attendance at tutorials
Class participation and In-class tests 20%
Final Exam 60%
All homework assignments need to be submitted at due date.
Home work assignments need a cover sheet with student’s signature.
Any late submission of homework will be marked zero.
Grades for your performance in this course will be awarded in accordance with the following scheme:
M10 (Coursework Mark Scheme) Grade Mark Description FNS Fail No Submission F 1-49 Fail P 50-64 Pass C 65-74 Credit D 75-84 Distinction HD 85-100 High Distinction CN Continuing NFE No Formal Examination RP Result Pending
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