This learning track covers the fundamental principles of turbomachinery aerodynamics, focusing on different types of turbo machines like axial compressors, axial turbines, centrifugal compressors, and radial turbines. It provides a comprehensive understanding of the aerodynamics associated with these machines, the losses involved, and their impact on performance. The track explores the aerodynamics of 2D and 3D axial flow compressors, explaining the losses associated with them and their effect on performance. The track then delves into the concept of instability in axial compressors, discussing the different forms of instability and their effects on compressor performance. The track then provides a comprehensive understanding of the role and dynamics of axial flow turbines in gas turbine engines, including their construction, design, and performance characteristics. It further elaborates the concept of multi-stage turbines, where multiple stages are aligned to provide adequate power to the compressors. The track moves on to understanding of turbine blade cooling technologies and designing turbine blades. It also explains the fundamental principles, theories, and design considerations of centrifugal compressors. The track proceeds with a discussion on the design and analysis of radial flow turbines and concludes with understanding Computational Fluid Dynamics (CFD) and its application in turbomachinery aerodynamics such as grid generation, boundary conditions, flow tracking and blade design in 2D and 3D.
This course covers the fundamental principles of turbomachinery aerodynamics, with a special focus on different types of turbo machines like axial compressors, axial turbines, centrifugal compressors, and radial turbines. It provides a comprehensive understanding of the ...Read more
This course covers the principles, dynamics, design, and analysis of three-dimensional flows in axial flow compressors. It starts with an introduction to the aerodynamics of turbomachinery and the evolution of two-dimensional flows into three-dimensional flows. The cours...Read more
This course covers the comprehensive understanding and designing of axial flow compressors. It starts with the performance characteristics of single and multistage axial compressors, explaining how parameters like loading coefficient, flow coefficient...Read more
This course covers the fundamental aspects of turbomachinery aerodynamics, with a particular focus on 2D axial flow turbines. It provides a comprehensive understanding of the role and dynamics of axial flow turbines in gas turbine engines, including their construction, desi...Read more
This course covers the comprehensive understanding of axial flow turbines, their application in aircraft engines, and land-based gas turbines. It delves into the concept of multi-stage turbines, where multiple stages are aligned to provide adequate power to the compressors....Read more
This course covers the comprehensive understanding of turbine blade cooling technologies and their design. For instance, the course starts with the fundamentals of turbine machinery aerodynamics, focusing on axial turbines and the importance of turbine blade coo...Read more
This course covers the fundamental principles, theories, and design considerations of centrifugal compressors. It provides a deep dive into the thermodynamics of centrifugal compressors, explaining how energy is added in the impeller and how static pressure rise continues ...Read more
This course covers the comprehensive understanding of radial flow turbines, a significant type of turbomachinery. It starts with the fundamentals of turbomachinery aerodynamics, focusing on the working principles, applications, and different types of radial flow turbines. The cour...Read more
This course covers the comprehensive understanding of Computational Fluid Dynamics (CFD) and its application in turbomachinery aerodynamics. For instance, the course delves into the importance of CFD in the design and analysis of turbomachinery flows...Read more
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