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Introduction
This unit analyses how the characteristics of earth materials may influence the design, construction, stability and life of engineering structures and consists of two components: engineering geology and soil mechanics. The engineering geology component will serve as an introduction to geology, engineering geology, rock evaluation and geophysical methods and impact of geology on design and stability of engineering structures such as slopes, cuttings, quarries, tunnels, dams and bridges. The soil mechanics part will introduce soil classification, soil phase relationships, soil compaction, Darcy's law and water seepage through soils, Terzaghi's effective stress principle, and soil consolidation theory and test. Students will prepare to achieve the stated learning outcomes in this unit through attending a series of lectures, tutorials, field trip and laboratory practicals.
Summary
| Unit name | Engineering Geology and Soil Mechanics |
| Unit code | ENG221 |
| Credit points | 12.5 |
| College/School | Sciences and Engineering School of Engineering |
| Discipline | Earth Sciences|Engineering |
| Coordinator | Doctor Hong Liu |
| Available as an elective? | Yes |
| Delivered By | University of Tasmania |
| Level | Intermediate |
Sustainable Development Goals
The Unit Coordinator has identified that this unit aligns with the following UN Sustainable Development Goals. We welcome your thoughts and feedback on the alignment of the unit with these goals.
Learning Outcomes
- Identify earth materials and geological processes in laboratory and in the field on the basis of their characteristic properties.
- Apply geological and geophysical methods to discover essential information on distributions and properties of the earth materials.
- Classify engineering soils in a systematic and unified manner according to Australian and international standards.
- Apply Darcy's law and Terzaghi's effective stress principle to evaluate soil permeability, deformation, and strength properties during the processes of water seepage through soils and soil consolidation.
Fee Information
| Field of Education | Commencing Student Contribution 1,3 | Grandfathered Student Contribution 1,3 | Approved Pathway Course Student Contribution 2,3 | Domestic Full Fee 4 |
|---|---|---|---|---|
| not applicable |
1 Please refer to more information on student contribution amounts.
2 Please refer to more information on eligibility and Approved Pathway courses.
3 Please refer to more information on eligibility for HECS-HELP.
4 Please refer to more information on eligibility for FEE-HELP.
If you have any questions in relation to the fees, please contact UniConnect or more information is available on StudyAssist.
Please note: international students should refer to What is an indicative Fee? to get an indicative course cost.
Requisites
Prerequisites
KAA110 OR ENG103 OR JEE135Mutual Exclusions
You cannot enrol in this unit as well as the following:
KNE273Teaching
| Teaching Pattern | 3 x 1-hour lectures per week 1 x 1-hour tutorial per week 7 x 3-hour geology practicals from weeks 1 to 7 1 whole-day engineering geology field trip 4 x 3-hour soil mechanics practicals from weeks 8 to 12
|
|---|---|
| Assessment | Soil Mechanics Quizzes (4%)|Soil Mechanics Project - Soil Consolidation (6%)|A whole-day engineering geology field trip (10%)|Engineering Geology Online Quizzes (10%)|Soil Mechanics Practicals (12.5%)|Soil Mechanics Tutorials (12.5%)|Geology Practicals and Quizzes (15%)|Final Exam (30%) |
| Timetable | View the lecture timetable | View the full unit timetable |
Textbooks
| Required |
For Engineering Geology part:
For Soil Mechanics part: Any textbooks about soil mechanics or foundation engineering such as the following textbook |
|---|---|
| Recommended | For Engineering Geology part:
|
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