Türkçe | English
FACULTY OF FORESTRY / DEPARTMENT of FOREST INDUSTRY ENGINEERING

Course Catalog
https://www.ktu.edu.tr/oem
Phone: +90 0462 +90 (462) 3773248
ORF
FACULTY OF FORESTRY / DEPARTMENT of FOREST INDUSTRY ENGINEERING /
Katalog Ana Sayfa
  Katalog Ana Sayfa  KTÜ Ana Sayfa   Katalog Ana Sayfa
 
 

OREN1000Technical Physics2+1+0ECTS:4
Year / SemesterSpring Semester
Level of CourseFirst Cycle
Status Compulsory
DepartmentDEPARTMENT of FOREST INDUSTRY ENGINEERING
Prerequisites and co-requisitesNone
Mode of Delivery
Contact Hours14 weeks - 2 hours of lectures and 1 hour of practicals per week
LecturerDr. Öğr. Üyesi Kemal ÜÇÜNCÜ
Co-Lecturer
Language of instructionTurkish
Professional practise ( internship ) None
 
The aim of the course:
The aim of this course; students thermodynamics, heat transfer and fluid to understand the terminology and concepts and principles of mechanics, communicate in this area, apply analyzes and develop their ability to think of engineers, math related problems, be able to be solved using the science and engineering and this information is to enable use to produce solutions to the forest industry engineering problems .
 
Learning OutcomesCTPOTOA
Upon successful completion of the course, the students will be able to :
LO - 1 : understand the basic concepts and terminology of thermodynamics, interdisciplinary able to communicate these issues.1,2
LO - 2 : understand the basic concepts and terminology of the heat transfer can communicate across disciplines on these issues.1,2
LO - 3 : understand the basic concepts and terminology of fluid mechanics can communicate across disciplines on these issues.1,2
LO - 4 : understand the basic principles of thermodynamics, define problems, you can use the solution of equations establishes and forest industry engineering problems.1,2
LO - 5 : understand the basic principles of heat transfer, identifies problems, you can use the solution of equations establishes and forest industry engineering problems.1,2
LO - 6 : understand the basic principles of fluid mechanics, identifying problems, you can use the solution of equations establishes and forest industry engineering problems.1,2
CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome

 
Contents of the Course
Thermodynamics: thermodynamics Subject and Basic Concepts, Systems and System Characteristics, pure substances, Gas Mixtures, Equation of State, Status Changes, the first law of thermodynamics, the second law of thermodynamics, thermal power cycles and efficiency, recirculation equipment and irreversibility, water vapor, moist air , fuels and combustion. Heat Transfer: Conduction Heat Transfer; Fourier Heat Conduction Law, Thermal Resistance, United Plane Wall Heat Transmission, Radial Heat Conduction in Cylindrical and Spherical Surfaces, Convection Heat Transfer; Newton's Law of Cooling, Forced Convection in the Plate, Convection in Flow Through Pipe, Heat Radiation, Heat Exchangers. Fluid Mechanics: Basic Principles of Fluid Mechanics, Properties of fluids, hydrostatic, surface tension and capillarity, Buoyancy, hydrodynamics, frictionless flow, Bernoulli equation, flow friction in pipes.
 
Course Syllabus
 WeekSubjectRelated Notes / Files
 Week 1Course contents, introduction, purpose; thermodynamics, heat transfer, fluid mechanics
 Week 2Thermodynamics: basic concepts, thermodynamic systems, energy, work, heat, pressure, pure substance and phase changes
 Week 3Gas mixtures, gas laws, the ideal gas law, Zeroth law of thermodynamics; Example problems
 Week 4The first law of thermodynamics; indoor and outdoor systems, changes in the ideal gas state; Example problems
 Week 5The second law of thermodynamics and entropy, thermodynamic cycle and efficiency, Carnot cycle, the third law of thermodynamics; Example problems
 Week 6Gas-vapor mixture, water vapor, moist air; Fuels and combustion; Example problems
 Week 7Example problems
 Week 8Heat transfer: private law of heat transfer; Fourier, Newton's Law of Cooling and Stefan-Boltzman, heat conduction, heat conduction in single and multi-layer sheet, radial heat conduction; Example problems
 Week 9MIDTERM
 Week 10Convection heat transfer; heat transfer natural moved on, moved on forced heat transfer, heat radiation; Example problems
 Week 11Heat transfer, heat exchangers, Sample problems
 Week 12Fluid Mechanics; Hydrostatic, properties of fluids, surface tension and capillarity, the basic equations and Pascal law, hydrostatic, hydrostatic pressure; Example problems
 Week 13Hydrodynamics: Flow types and Reynolds number, continuity equation, Bernoulli equation, flow measurement, flow in pipes, flooding the pump; Example problems
 Week 14Student presentations and evaluation
 Week 15Excuse exam, completion of missing; Example problems
 Week 16FINAL EXAM
 
Textbook / Material
 
Recommended Reading
 
Method of Assessment
Type of assessmentWeek NoDate

Duration (hours)Weight (%)
Mid-term exam 10 15/06/2021 1 30
Homework/Assignment/Term-paper 13 24/05/2021 8 20
End-of-term exam 16 30/06/2021 1 50
 
Student Work Load and its Distribution
Type of workDuration (hours pw)

No of weeks / Number of activity

Hours in total per term
Yüz yüze eğitim 2 14 28
Sınıf dışı çalışma 1 14 14
Laboratuar çalışması 0 0 0
Arasınav için hazırlık 2 6 12
Arasınav 2 1 2
Uygulama 1 14 14
Klinik Uygulama 0 0 0
Ödev 1 8 8
Proje 0 0 0
Kısa sınav 0 0 0
Dönem sonu sınavı için hazırlık 2 5 10
Dönem sonu sınavı 2 1 2
Diğer 1 0 0 0
Diğer 2 0 0 0
Total work load90