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Course Description |
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Course Name |
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Well Hydrulics and Design |
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Course Code |
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J 434 |
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Course Type |
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Optional |
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Level of Course |
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First Cycle |
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Year of Study |
: |
4 |
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Course Semester |
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Spring (16 Weeks) |
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ECTS |
: |
3 |
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Name of Lecturer(s) |
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Prof.Dr. ŞAZİYE BOZDAĞ |
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Learning Outcomes of the Course |
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Proposes well location for extracting groundwater. Plans for water well design. Determines aquifers characteristics using well hydraulics methods. ComprehendS the ground-water interactions and development.
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Mode of Delivery |
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Face-to-Face |
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Prerequisites and Co-Prerequisites |
: |
None |
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Recommended Optional Programme Components |
: |
None |
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Aim(s) of Course |
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To teach assimilating subjects about practical water well designing. |
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Course Contents |
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Well drilling methods, Well screens, Water well design,Developing and completing water wells, Water well specifications, Selection of pumps for water well, well hydaulics methods, Monitoring water wells. |
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Language of Instruction |
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Turkish |
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Work Place |
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Classroom |
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Course Outline /Schedule (Weekly) Planned Learning Activities |
| Week | Subject | Student's Preliminary Work | Learning Activities and Teaching Methods |
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1 |
Introduction + History |
Reading the related resources |
Lecture |
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2 |
Principle of groundwater management |
Reading the related resources |
Lecture |
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3 |
Types of well |
Reading the related resources |
Lecture |
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4 |
Main Well and equipments |
Reading the related resources |
Lecture |
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5 |
Observation wells and equipments |
Reading the related resources |
Lecture |
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6 |
Wells developments |
Reading the related resources |
Lecture |
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7 |
Pumping tests in the wells |
Reading the related resources |
Lecture |
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8 |
Mid-term exam |
Exam Preparation |
Written exam |
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9 |
Steady flow to a well |
Reading the related resources and web reserach |
Lecture + Problem solving |
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10 |
Steady flow hydraulics |
Reading the related resources and web reserach |
Lecture + Problem solving |
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11 |
Unsteady flow to a well |
Reading the related resources and web reserach |
Lecture + Problem solving |
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12 |
Unsteady flow hydraulics |
Reading the related resources and web reserach |
Lecture + Problem solving |
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13 |
Multiple well systems and well interferences |
Reading the related resources and web reserach |
Lecture + Problem solving |
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14 |
Jeophysical logging in the well |
Reading the related resources and web reserach |
Lecture + Problem solving |
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15 |
Methods of Water sampling |
Reading the related resources and web reserach |
Lecture + Problem solving |
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16/17 |
Final exam |
Exam Preparation |
Written exam |
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Required Course Resources |
| Resource Type | Resource Name |
| Recommended Course Material(s) |
Hidrojeoloji, 1998, B. Canik
Uygulamalı Hidrojeoloji, 2001, Afşin, M. ve Kayabalı K., (Translated from C.W. Fetter)
Yeraltısuyu jeolojisi ve Hidroliği, Orhan Dumlu,H.Tolga Yalçın ve E.Bozkurtoğlu
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| Required Course Material(s) | |
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Assessment Methods and Assessment Criteria |
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Semester/Year Assessments |
Number |
Contribution Percentage |
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Mid-term Exams (Written, Oral, etc.) |
1 |
70 |
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Homeworks/Projects/Others |
3 |
30 |
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Total |
100 |
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Rate of Semester/Year Assessments to Success |
40 |
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Final Assessments
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100 |
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Rate of Final Assessments to Success
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60 |
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Total |
100 |
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| Contribution of the Course to Key Learning Outcomes |
| # | Key Learning Outcome | Contribution* |
|
1 |
Thinks, interprets, analyzes and synthesizes geological events in 3D. |
5 |
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2 |
Chooses and applies necessary methods and instruments for engineering applications |
4 |
|
3 |
Uses the information technology effectively. |
5 |
|
4 |
Designs and performs experiments, collects data and interprets the results. |
3 |
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5 |
Works and undertakes responsibility in solving geological problems both individually and in multidiciplinary working groups |
5 |
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6 |
Investigates to obtain scientific information, and uses data bases and other data sources actively. |
3 |
|
7 |
Has an awareness of life long learning; follows developments in science and technology to keep up to date |
4 |
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8 |
Uses Fundamental Geological information, having necessary information in Mathematical and Natural sciences and employs theoretical and applied information in these areas in engineering solutions. |
4 |
|
9 |
Knows job related and ethical responsibilities, project management, office applications and safety, and realizes juridical responsibilities of engineering applications |
5 |
|
10 |
Knows the universal and societal effects of engineering solutions and applications. |
4 |
|
11 |
Has an awareness of entrepreneuring and innovative subjects; knows and finds solutions for the new century |
4 |
|
12 |
Identifies, formulizes and solves geological problems. |
3 |
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13 |
Realizes the social effects of identified solutions for geological problems. |
4 |
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14 |
Identifies, defines, formulizes and solves engineering problems. Chooses and applies the appropriate analytical and modelling techniques for this purpose. |
3 |
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15 |
Investigates and reports all kinds of natural resources and geological hazards |
5 |
|
16 |
Initiates effective interactions in Turkish both orally and in written form, and speaks at least one foreign language |
5 |
|
17 |
Uses necessary techniques and instruments for geological applications |
4 |
|
18 |
Identifies rock types, draws geological maps and cross sections. |
4 |
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19 |
Defines necessities in learning in scientific, social, cultural and artistic areas and improves himself/herself continuously. |
3 |
| * Contribution levels are between 0 (not) and 5 (maximum). |
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| Student Workload - ECTS |
| Works | Number | Time (Hour) | Total Workload (Hour) |
| Course Related Works |
|
Class Time (Exam weeks are excluded) |
14 |
2 |
28 |
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Out of Class Study (Preliminary Work, Practice) |
14 |
2 |
28 |
| Assesment Related Works |
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Homeworks, Projects, Others |
3 |
3 |
9 |
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Mid-term Exams (Written, Oral, etc.) |
1 |
2 |
2 |
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Final Exam |
1 |
2 |
2 |
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Total Workload: | 69 |
| Total Workload / 25 (h): | 2.76 |
| ECTS Credit: | 3 |
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