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Fluid Mechanics and Thermodynamics of Turbomachinery

Englisch · Taschenbuch

Versand in der Regel in 1 bis 3 Arbeitstagen

Beschreibung

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Fluid Mechanics and Thermodynamics of Turbomachinery, Eighth Edition is the leading turbomachinery book with its balanced coverage of theory and application. Starting with background principles in fluid mechanics and thermodynamics, this updated edition goes on to discuss axial flow turbines and compressors, centrifugal pumps, fans, and compressors, and radial flow gas turbines, hydraulic turbines, and wind turbines. Used as a core text in senior undergraduate and graduate level courses, this book will also appeal to professional engineers in the aerospace, global power, oil & gas, and other industries who are involved in the design and operation of turbomachines.


Über den Autor / die Autorin

Prof. Dan Zhao is the director of Master Engineering Studies at the University of Canterbury, New Zealand.
He serves on a number of scientific journals as the chief and associate editors such as AIAA Journal, Journal
of the Royal Society of New Zealand, Aerospace Science and Technology, and Journal of Engineering for Gas
Turbines and Power (ASME). Prof. Zhao has been awarded with the prestigious fellowships from Engineering
New Zealand, European Academy of Sciences and Arts, European Academy of Sciences as well as the ASEAN
Academy of Engineering and Technology. His research expertise and interests include applying theoretical,
numerical, and experimental approaches to study CO2
-free combustion science and technology, fabric drying,
aeroacoustics, thermoacoustics; UAV aerodynamics; propulsion; energy harvesting; and renewable energy and
fuel (ammonia and hydrogen)Dr. Dixon has published numerous scientific research papers in turbomachinery and lectured in turbomachinery at the University of Liverpool for nearly 40 years. For 25 of those years he was Chief Examiner in Mechanics for the Council of Engineering Institutions in the UK.Dr. Hall has been University Lecturer in turbomachinery at the University of Cambridge since 2005. His current research with the university’s Silent Aircraft Initiative has led to the development of radical new ideas for aircraft engine design. Prior to teaching, he worked at Rolls-Royce as a turbomachinery aerodynamicist.

Produktdetails

Autoren Dan Zhao, Dixon S. Larry, Hall Cesare
Verlag Elsevier
 
Inhalt Buch
Produktform Taschenbuch
Erscheinungsdatum 18.06.2025
Thema Naturwissenschaften, Medizin, Informatik, Technik > Technik > Maschinenbau, Fertigungstechnik
 
EAN 9780443298318
ISBN 978-0-443-29831-8
Abmessung (Verpackung) 19.1 x 23.5 x 3.5 cm
Gewicht (Verpackung) 1’460 g
 
Themen Analysis, Propeller, Stress, UAV, TECHNOLOGY & ENGINEERING / Mechanical, SCIENCE / Mechanics / Fluids, Loss, cfd, fluent, Drones, Deviation, Efficiency, Wind Energy, Fluid mechanics, Physics: Fluid mechanics, Engineering: Mechanics of fluids, Cooling, historical development, reaction, Blade Design, Velocity Triangles, centrifugal pumps, Compressible Flow, Physical Laws, Turbomachines, ANSYS, Dimensional Analysis, performance characteristics, Cavitation, Incidence, Axial compressor, Flow coefficient, loading, Ducted fan, Advance ratio, performance parameters, Working fluids, RANS, blade element theory, Specific speed, Pelton Wheel, Volume Flow Rate, Size and efficiency, Optimum efficiency, Types of turbine, Compressor performance and loss, Blade design and testing and size limits, Off-design operation, Compressible flow and two-dimensional computational fluid dynamics, The SeaGen turbine, Blade number optimization, Cascade forces, Solving the two theories, Brake horsepower, Loss coefficients, Vortex design, Thermodynamic diagram for the inward-flow radial turbine, Cascade experiments, Sweep and lean and 3D computational fluid dynamics, Evolution of turbines and types, Radial equilibrium, Design point efficiency, Best locations: wind speed probability function, Mean-line analysis, Compressible flow and efficiency, Actuator disc theory, Pumping power, Statistical theory of wind, Solution of Whitfield design problem, Power coefficient, Effect of size on efficiency, Specific speed and optimum selection of turbines, Francis turbine, Compressor and turbine sections, Stage loading, Pumps in series, Cavitation and its effects, Specific diameter, Problem of Betz’s result, The Kaplan turbine, Stall and surge, Criteria for blade number, Pumps in parallel, Secondary flow, Glauert’s theory, The Wells turbine, three-dimensional flow, Through-flow methods, Ducted fans, Axial turbine, Actuator discs, Loss sources, Thrust coefficient, Elementary flow vector analysis, CFX, Pump efficiency
 

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