Engineering Thermodynamics : Fundamental and Advanced Topics

Title: Engineering Thermodynamics : Fundamental and Advanced Topics
Author: Kavati Venkateswarlu
ISBN: 0367646285 / 9780367646288
Format: Hard Cover
Pages: 487
Publisher: CRC Press
Year: 2021
Availability: 2 to 3 weeks

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This textbook comprehensively covers the fundamentals and advanced concepts of thermodynamics in a single volume.

It provides a detailed discussion of advanced concepts that include energy efficiency, energy sustainability, energy security, organic Rankine cycle, combined cycle power plants, combined cycle power plant integrated with organic Rankine cycle and absorption refrigeration system, integrated coal gasification combined cycle power plants, energy conservation in domestic refrigerators, and next-generation low-global warming potential refrigerants. Pedagogical features include solved problems and unsolved exercises interspersed throughout the text for better understanding.

This textbook is primarily written for senior undergraduate students in the fields of mechanical, automobile, chemical, civil, and aerospace engineering for courses on engineering thermodynamics/thermodynamics and for graduate students in thermal engineering and energy engineering for courses on advanced thermodynamics. It is accompanied by teaching resources, including a solutions manual for instructors.

FEATURES

  • Provides design and experimental problems for better understanding
  • Comprehensively discusses power cycles and refrigeration cycles and their advancements
  • Explores the design of energy-efficient buildings to reduce energy consumption

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Preface

Chapter 1 : Introduction and Basic Concepts
Chapter 2 : Temperature : Zeroth Law of Thermodynamics
Chapter 3 : Energy and the First Law of Thermodynamics
Chapter 4 : Properties of Pure Substances
Chapter 5 : First Law Analysis of Control Volumes
Chapter 6 : Second Law of Thermodynamics
Chapter 7 : Entropy
Chapter 8 : Properties of Gases and Gas Mixtures
Chapter 9 : Concept of Available Energy (Exergy)
Chapter 10 : Vapor and Advanced Power Cycles
Chapter 11 : Gas Power Cycles
Chapter 12 : Refrigeration Cycles
Chapter 13 : Thermodynamic Relations
Chapter 14 : Psychrometry
Chapter 15 : Chemical Potential of Ideal Fermi and Bose Gases
Chapter 16 : Irreversible Thermodynamics

Index