# VTU B.TECH AERONATICAL-Engineering 3rd SEM Syllabus For Aero thermodynamics PDF 2022

### Get Complete Lecture Notes for Aero thermodynamics on Cynohub APP

You will be able to find information about Aero thermodynamics along with its Course Objectives and Course outcomes and also a list of textbook and reference books in this blog.You will get to learn a lot of new stuff and resolve a lot of questions you may have regarding Aero thermodynamics after reading this blog. Aero thermodynamics has 5 units altogether and you will be able to find notes for every unit on the CynoHub app. Aero thermodynamics can be learnt easily as long as you have a well planned study schedule and practice all the previous question papers, which are also available on the CynoHub app.

All of the Topic and subtopics related to Aero thermodynamics are mentioned below in detail. If you are having a hard time understanding Aero thermodynamics or any other Engineering Subject of any semester or year then please watch the video lectures on the official CynoHub app as it has detailed explanations of each and every topic making your engineering experience easy and fun.

### Aero thermodynamics Unit One

#### Module-1

Fundamental Concepts & Definitions: Thermodynamics definition and scope, Microscopic and Macroscopic approaches. Some practical applications of engineering thermodynamic Systems, Characteristics of system boundary and control surface, examples. Thermodynamic properties; definition and Modules, intensive and extensive properties. Thermodynamic state, state point, state diagram, path and process, quasi-static process, cyclic and non-cyclic processes; Thermodynamic equilibrium; definition, mechanical equilibrium; diathermic wall, thermal equilibrium, chemical equilibrium. Zeroth law of thermodynamics, Temperature; concepts, scales, fixed points and measurements. Work and Heat: Mechanics-definition of work and its limitations. Thermodynamic definition of work; examples, sign convention. Displacement work; as a part of a system boundary, as a whole of a system boundary, expressions for displacement work in various processes through p-v diagrams. Shaft work; Electrical work. Other types of work. Heat; definition, units and sign convention. Problems.

### Aero thermodynamics Unit Two

#### Module-2

Joules experiments, equivalence of heat and work. Statement of the First law of thermodynamics, extension of the First law to non – cyclic processes, energy, energy as a property, modes of energy, pure substance; definition, two-property rule, Specific heat at constant volume, enthalpy, specific heat at constant pressure. Extension of the First law to control volume; steady state-steady flow energy equation, important applications, analysis of unsteady processes such as film and evacuation of vessels with and without heat transfer.

### Aero thermodynamics Unit Three

#### Module-3

Second Law of Thermodynamics: Devices converting heat to work; (a) in a thermodynamic cycle, (b) in a mechanical cycle. Thermal reservoir. Direct heat engine; schematic representation and efficiency. Devices converting work to heat in a thermodynamic cycle; reversed heat engine, schematic representation, coefficients of performance. Kelvin – Planck statement of the Second law of Thermodynamics; PMM I and PMM II, Clausius statement of Second law of Thermodynamics, Equivalence of the two statements; Reversible and Irreversible processes; factors that make a process irreversible, reversible heat engines, Carnot cycle, Carnot principles. Entropy: Clasius inequality; Statement, proof, application to a reversible cycle. Entropy; definition, a property, change of entropy, principle of increase in entropy, entropy as a quantitative test for irreversibility, calculation of entropy using Tds relations, entropy as a coordinate. Available and unavailable energy.

### Aero thermodynamics Unit Four

#### Module-4

Pure Substances & Ideal Gases: Mixture of ideal gases and real gases, ideal gas equation, compressibility factor use of charts. P-T and P-V diagrams, triple point and critical points. Sub-cooled liquid, Saturated liquid, mixture of saturated liquid and vapour, saturated vapour and superheated vapour states of pure substance with water as example. Enthalpy of change of phase (Latent heat). Dryness fraction (quality), T-S and H-S diagrams, representation of various processes on these diagrams. Thermodynamic relations Maxwell’s equations, Tds relations, ratio of heat capacities, evaluation of thermodynamic properties from an equation of state.

### Aero thermodynamics Unit Five

#### Module-5

Gas Power Cycles: Efficiency of air standard cycles, Carnot, Otto, Diesel cycles, P-V & T-S diagram, calculation of efficiency. Vapour power cycle: Simple Rankine cycle, Analysis and performance of Rankine Cycle, Ideal and practical regenerative Rankine cycles –Reheat and Regenerative Cycles, Binary vapour cycle.

### Aero thermodynamics Course Objectives

Understand various concepts and definitions of thermodynamics. •Comprehend the I-law and II-law of thermodynamics. •Acquire the knowledge of various types of gas cycles

### Aero thermodynamics Course Outcomes

At the end of the course the student will be able to:•CO1: Apply the concepts and definitions of thermodynamics. •CO2: Differentiate thermodynamic work and heat and apply I law and II law of thermodynamics to different process. •CO3: Apply the principles of various gas cycles.

### Aero thermodynamics Text Books

Basic and Applied Thermodynamics -P K Nag

Basic Engineering ThermodynamicsA Venkatesh

### Aero thermodynamics Reference Books

Thermodynamics: An Engineering Approach
Engineering Thermodynamics
Fundamentals of Classical Thermodynamics
An Introduction to Thermodynamics
Basic Thermodynamics

### Scoring Marks in Aero thermodynamics

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Information about VTU B.Tech Aero thermodynamics was provided in detail in this article. To know more about the syllabus of other Engineering Subjects of JNTUH check out the official CynoHub application. Click below to download the CynoHub application.

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