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Gas dynamics is a science in the branch of fluid dynamics, concerned with the study of motion of gases and its effects on physical systems. Based on the principles of fluid mechanics and thermodynamics, gas dynamics arises from the studies of gas flows in transonic and supersonic flights. To distinguish itself from other sciences in fluid dynamics, the studies in gas dynamics are often defined with gases flowing around or within physical objects at speeds comparable to or exceed the speed of sound and causing a significant change in temperature and pressure. Some examples of these studies include but not limited to choked flows in nozzles and valves, shock waves around jets, aerodynamic heating on atmospheric reentry vehicles and flows of gas fuel within a jet engine. At the molecular level, gas dynamics is a study of the kinetic theory of gases, often leading to the study of gas diffusion, statistical mechanics, chemical thermodynamics and non-equilibrium thermodynamics. Gas dynamics is synonymous with aerodynamics when the gas field is air and the subject of study is flight. It is highly relevant in the design of aircraft and spacecraft and their respective propulsion systems.
This text investigates the fundamental principles of gas dynamics by bridging the gap between macroscopic fluid mechanics and microscopic molecular behavior. The authors, Jasper A. Welch Jr., John W. Bond Jr., and Kenneth M. Watson, utilize a rigorous mathematical framework to explain how kinetic theory informs the behavior of gases under extreme conditions. By integrating statistical mechanics with classical thermodynamics, the book provides a comprehensive model for understanding gas flow, shock waves, and non-equilibrium states in high-speed environments.
What You Will Find
Experts recognize this work as a foundational text for students and researchers in aerospace engineering and theoretical physics. Readers frequently note the high level of mathematical density and the technical precision required to navigate the authors' derivations of gas behavior.
Page Count:
518
Publication Date:
1965-01-01
Publisher:
Addison-Wesley
ISBN-10:
0201006332
ISBN-13:
9780201006339
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