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THIRD CYCLE - DOCTORATE DEGREE
THE GRADUATE SCHOOL OF NATURAL AND APPLIED SCIENCES
CIVIL ENGINEERING DEPARTMENT
1131 Civil Engineering
Course Information
Course Learning Outcomes
Course's Contribution To Program
ECTS Workload
Course Details
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COURSE INFORMATION
Course Code
Course Title
L+P Hour
Semester
ECTS
INS 510
COMPUTATIONAL FLUID DYNAMICS
3 + 0
1st Semester
7,5
COURSE DESCRIPTION
Course Level
Doctorate Degree
Course Type
Elective
Course Objective
Hesaplamalı akışkanlar dinamiği ve onun uygulamaları konusunda temel kavram ve yöntemleri öğretmek ve lisansüstü öğrencisine konuyla ilgili kendini geliştirebileceği becerileri kazandırmaktır.
Course Content
Basic equations of fluid dynamics; Analytic aspects of partial differential equations; Introduction to finite difference and finite volume discretization; Steady convection-diffusion equation; Unsteady convection-diffusion equation; The incompressible Navier-Stokes equations; Iterative solution methods; Scalar conservation laws; The Euler equations in one space dimension; Numerical solution of the Euler equaitons in general domains; Unified methods for incompressible and compressible flow computations. Review of conservation equations. Special forms of conservation equations. Flow kinematics: Streamlines, circulation, stream and vortex tubes. Ideal flows. Two-dimensional potential flows. Complex functions. Source-sink. Vortex. Complex flows. Flow over a cylinder. Blasius Integral laws. Conformal transformations. Schwarz-Christoffel transformation. Jet and currents. Three-dimensional potential flows. Wave theory. .
Prerequisites
No the prerequisite of lesson.
Corequisite
No the corequisite of lesson.
Mode of Delivery
Face to Face
COURSE LEARNING OUTCOMES
1
Will be able to known CFD calculation methods,
2
Will be able to solve steady incompressible flows,
3
Will be able to solve unsteady compressible flows,
COURSE'S CONTRIBUTION TO PROGRAM
PO 01
PO 02
PO 03
PO 04
PO 05
PO 06
PO 07
PO 08
PO 09
PO 10
PO 11
LO 001
4
4
4
4
5
3
4
4
5
5
4
LO 002
4
4
5
4
5
4
4
4
4
4
4
LO 003
4
4
5
5
4
4
4
4
5
5
4
Sub Total
12
12
14
13
14
11
12
12
14
14
12
Contribution
4
4
5
4
5
4
4
4
5
5
4
ECTS ALLOCATED BASED ON STUDENT WORKLOAD BY THE COURSE DESCRIPTION
Activities
Quantity
Duration (Hour)
Total Work Load (Hour)
Course Duration (14 weeks/theoric+practical)
14
3
42
Hours for off-the-classroom study (Pre-study, practice)
14
3
42
Assignments
2
30
60
Mid-terms
1
25
25
Final examination
1
26
26
Total Work Load
ECTS Credit of the Course
195
7,5
COURSE DETAILS
Select Year
All Years
2023-2024 Spring
2019-2020 Fall
2018-2019 Spring
2018-2019 Fall
2017-2018 Spring
2017-2018 Fall
2015-2016 Fall
2014-2015 Spring
2014-2015 Fall
2013-2014 Spring
2013-2014 Fall
2012-2013 Spring
2012-2013 Fall
2011-2012 Fall
2010-2011 Spring
2009-2010 Fall
Course Term
No
Instructors
Details
2023-2024 Spring
1
GÜRHAN GÜRARSLAN
Details
2019-2020 Fall
1
HALİL KARAHAN
Details
2018-2019 Spring
1
FATİH DİKBAŞ
Details
2018-2019 Fall
1
HALİL KARAHAN
Details
2017-2018 Spring
1
HALİL KARAHAN
Details
2017-2018 Fall
1
HALİL KARAHAN
Details
2015-2016 Fall
1
HALİL KARAHAN
Details
2014-2015 Spring
1
HALİL KARAHAN
Details
2014-2015 Fall
1
HALİL KARAHAN
Details
2013-2014 Spring
1
HALİL KARAHAN
Details
2013-2014 Fall
1
HALİL KARAHAN
Details
2012-2013 Spring
1
HALİL KARAHAN
Details
2012-2013 Fall
1
HALİL KARAHAN
Details
2011-2012 Fall
1
HALİL KARAHAN
Details
2009-2010 Fall
1
HALİL KARAHAN
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Course Details
Course Code
Course Title
L+P Hour
Course Code
Language Of Instruction
Course Semester
INS 510
COMPUTATIONAL FLUID DYNAMICS
3 + 0
1
Turkish
2023-2024 Spring
Course Coordinator
E-Mail
Phone Number
Course Location
Attendance
Prof. Dr. GÜRHAN GÜRARSLAN
gurarslan@pau.edu.tr
MUH B0105
%80
Goals
Hesaplamalı akışkanlar dinamiği ve onun uygulamaları konusunda temel kavram ve yöntemleri öğretmek ve lisansüstü öğrencisine konuyla ilgili kendini geliştirebileceği becerileri kazandırmaktır.
Content
Basic equations of fluid dynamics; Analytic aspects of partial differential equations; Introduction to finite difference and finite volume discretization; Steady convection-diffusion equation; Unsteady convection-diffusion equation; The incompressible Navier-Stokes equations; Iterative solution methods; Scalar conservation laws; The Euler equations in one space dimension; Numerical solution of the Euler equaitons in general domains; Unified methods for incompressible and compressible flow computations. Review of conservation equations. Special forms of conservation equations. Flow kinematics: Streamlines, circulation, stream and vortex tubes. Ideal flows. Two-dimensional potential flows. Complex functions. Source-sink. Vortex. Complex flows. Flow over a cylinder. Blasius Integral laws. Conformal transformations. Schwarz-Christoffel transformation. Jet and currents. Three-dimensional potential flows. Wave theory. .
Topics
Weeks
Topics
1
2
3
4
5
6
7
8
9
10
11
12
13
14
Materials
Materials are not specified.
Resources
Resources
Resources Language
Çevresel Dispersiyon, Orhan USLU
Türkçe
Principles of surface water quality modeling and control , THOMANN and MUELLER
English
Course Assessment
Assesment Methods
Percentage (%)
Assesment Methods Title
Final Exam
50
Final Exam
Midterm Exam
50
Midterm Exam
L+P:
Lecture and Practice
PQ:
Program Learning Outcomes
LO:
Course Learning Outcomes
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Home Page
About University
Name And Address
Acedemic Authorities
General Discription
Academic Calendar
General Admission Requirements
Recognition of Prior Learning
General Registration Procedures
ECTS Credit Allocation
Academic Guidance
Information For Students
Cost Of Living
Accommodation
Meals
Medical Facilities
Facilities for Special Needs Students
Insurance
Financial Support for Students
Student Affairs
Learning Facilities
International Programs
Language Courses
Internships
Sports Facilities and Leisure Activities
Student Associations
Practical Information for Mobile Students
Degree Programmes