Fundamentals Of Engineering Thermodynamics By V Babu
- Publisher: ENGINEERING
- Availability: In Stock
- SKU: 49428
- Number of Pages: 440
Rs.920.00
Rs.1,295.00
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"Fundamentals of Engineering Thermodynamics" by V. Babu provides a comprehensive introduction to the principles and applications of thermodynamics in engineering. The book covers essential concepts such as energy, heat, work, and the laws governing their interactions, focusing on both theoretical foundations and practical applications. Designed for engineering students and professionals, it includes detailed explanations, real-world examples, and problem-solving techniques to help readers grasp the subject thoroughly and apply it in various engineering contexts.
Key Points
1. Basic Concepts of Thermodynamics Thermodynamics is the study of energy, its transformations, and its relationship to matter. Key concepts include systems, surroundings, and the different forms of energy such as kinetic, potential, and internal energy.
2. First Law of Thermodynamics The First Law of Thermodynamics, also known as the Law of Energy Conservation, states that energy cannot be created or destroyed, only transferred or converted from one form to another.
3. Second Law of Thermodynamics The Second Law of Thermodynamics introduces the concept of entropy, stating that the total entropy of an isolated system can never decrease over time, implying that natural processes increase disorder.
4. Entropy and its Significance Entropy is a measure of the disorder or randomness in a system. It plays a crucial role in determining the feasibility and direction of thermodynamic processes.
5. Pure Substances and Phase Equilibria This point covers the behavior of pure substances, including phase changes and equilibrium states, which are essential for understanding thermodynamic properties and processes.
6. Thermodynamic Cycles Thermodynamic cycles, such as the Carnot cycle, are theoretical models that describe the conversion of heat into work and vice versa, serving as benchmarks for real-world engines and refrigerators.
7. Gas Power Cycles Gas power cycles, including the Otto and Brayton cycles, describe the operation of internal combustion engines and gas turbines, focusing on the efficiency and work output of these systems.
8. Refrigeration and Heat Pump Cycles These cycles are used in systems designed for cooling or heating, such as refrigerators and heat pumps, and involve principles like the refrigeration effect and coefficient of performance.
9. Thermodynamic Property Relations Understanding the relationships between different thermodynamic properties, such as temperature, pressure, volume, and entropy, is critical for analyzing and designing thermodynamic systems.
10. Applications of Thermodynamics in Engineering Thermodynamics has numerous applications in engineering, including power generation, HVAC systems, aerospace, automotive engines, and environmental control, illustrating its broad impact and importance.
Conclusion
"Fundamentals of Engineering Thermodynamics" by V. Babu is a vital resource for anyone involved in the field of engineering. It lays a strong foundation in the principles of thermodynamics, enriched with practical applications and problem-solving techniques. By mastering the concepts presented in this book, students and professionals can better understand and design efficient engineering systems, contributing to advancements in technology and industry.
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Writer ✤ V Babu