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COURSE INFORMATION
Course CodeCourse TitleL+P HourSemesterECTS
OTOM 503ENGINE THERMODYNAMICS3 + 01st Semester7,5

COURSE DESCRIPTION
Course Level Master's Degree
Course Type Elective
Course Objective 1. To give information about thermodynamics and basic concepts 2. To explain the first law of thermodynamics for closed systems 3. To give information about the second law of thermodynamics 4. To explain the four-stroke spark ignition engine cycles 5. To give information about engine performance, engine characteristics and performance curves
Course Content Thermodynamics and basic concepts, systems and control volumes, heat, work and the first law of thermodynamics, the first law of thermodynamics for closed systems, internal energy, enthalpy and specific heat relations of ideal gases, four-stroke compression ignition (diesel) engine cycles, differences between the ideal cycle and the actual cycle, applications, performance on engines, engine characteristics and performance curves, power, energy and efficiency relations, fuel, properties expected of fuel
Prerequisites No the prerequisite of lesson.
Corequisite No the corequisite of lesson.
Mode of Delivery Face to Face

COURSE LEARNING OUTCOMES

COURSE'S CONTRIBUTION TO PROGRAM
Data not found.

ECTS ALLOCATED BASED ON STUDENT WORKLOAD BY THE COURSE DESCRIPTION
ActivitiesQuantityDuration (Hour)Total Work Load (Hour)
Course Duration (14 weeks/theoric+practical)14342
Hours for off-the-classroom study (Pre-study, practice)14570
Assignments3515
Mid-terms12020
Final examination12828
Presentation / Seminar Preparation21020
Total Work Load

ECTS Credit of the Course






195

7,5
COURSE DETAILS
 Select Year   


 Course TermNoInstructors
Details 2020-2021 Spring1ŞENGÜL GÜVEN
Details 2019-2020 Fall1ŞENGÜL GÜVEN
Details 2018-2019 Fall1ŞENGÜL GÜVEN
Details 2017-2018 Spring1ŞENGÜL GÜVEN
Details 2014-2015 Fall1MUSTAFA GÖLCÜ
Details 2013-2014 Fall1MUSTAFA GÖLCÜ


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Course Details
Course Code Course Title L+P Hour Course Code Language Of Instruction Course Semester
OTOM 503 ENGINE THERMODYNAMICS 3 + 0 1 Turkish 2020-2021 Spring
Course Coordinator  E-Mail  Phone Number  Course Location Attendance
Assoc. Prof. Dr. ŞENGÜL GÜVEN sgacar@pau.edu.tr TEK A0007 %
Goals 1. To give information about thermodynamics and basic concepts 2. To explain the first law of thermodynamics for closed systems 3. To give information about the second law of thermodynamics 4. To explain the four-stroke spark ignition engine cycles 5. To give information about engine performance, engine characteristics and performance curves
Content Thermodynamics and basic concepts, systems and control volumes, heat, work and the first law of thermodynamics, the first law of thermodynamics for closed systems, internal energy, enthalpy and specific heat relations of ideal gases, four-stroke compression ignition (diesel) engine cycles, differences between the ideal cycle and the actual cycle, applications, performance on engines, engine characteristics and performance curves, power, energy and efficiency relations, fuel, properties expected of fuel
Topics
WeeksTopics
1 Introduction and basic concepts, thermodynamic and energy, dimensions and volumes, systems and control volume, heat and zero law of thermodynamics, pressure and manometer.
2 Energy conversions and general energy resolution, forms of energy, energy transition with heat, the first law of thermodynamic.
3 The properties of pure substances, phase-change process of pure substances.
4 T-V and P-V diagrams for phase-change process, state equation for ideal gas.
5 Applications related to pure substances
6 Closed systems energy analysis, energy balance for closed systems, specific temperatures.
7 Internal energy, enthalpy and specific temperatures of perfect gas, internal energy for solid and liquid, enthalpy and specific heat.
8 Applications related to the closed systems and perfect gas.
9 Midterm exam
10 Mass and energy analysis for control volume, conservation of mass
11 Energy analysis on continuous flow in open systems and some continuous-flow open systems.
12 Curls, spreaders, turbines, compressors, valve to be cut, heat exchangers.
13 2. law of thermodynamic, storage of heat energy, heat machines, cooling machines and heat pumps.
14 Reversible and irreversible condition changes, Carnot cycle, Carnot heat machine,
Materials
Materials are not specified.
Resources
Course Assessment
Assesment MethodsPercentage (%)Assesment Methods Title
Final Exam50Final Exam
Midterm Exam50Midterm Exam
L+P: Lecture and Practice
PQ: Program Learning Outcomes
LO: Course Learning Outcomes