Advanced study of turbomachinery, including topics like fluid dynamics, thermodynamics, design principles, and performance analysis of turbines and compressors.
The Master of Technology (M.Tech) program in Turbomachinery is an advanced and specialized educational pathway that immerses students in the complex world of turbomachines, including turbines, compressors, and related machinery. This program in Turbomachine is meticulously designed to provide students with a comprehensive understanding of the principles, design, analysis, and research aspects of turbomachinery.
In a world where energy efficiency, aerospace engineering, and power generation are of paramount importance, this program plays a pivotal role in preparing students to tackle complex challenges related to fluid dynamics, thermodynamics, and turbomachine performance. Graduates of this program are well-equipped to make significant contributions to industries such as aviation, energy generation, and manufacturing.
The curriculum covers a wide range of subjects, including advanced thermodynamics, fluid mechanics, turbomachine design, computational fluid dynamics (CFD), and research methodologies. Students are encouraged to engage in practical research projects, collaborate with experienced faculty members, and contribute to the development of innovative turbomachinery solutions.
Graduates of the M.Tech in Turbomachinery program emerge not only as experts in turbomachines but as innovators and researchers who can address the evolving needs of industries reliant on efficient and high-performance turbomachinery.
Here is the table of subjects and syllabus for M.Tech in Turbomachinery:
S.no | Subjects |
1 | Advanced Heat Transfer and Fluid Dynamics |
2 | Experimental Techniques |
3 | Finite Element Methods |
4 | Computational Fluid Dynamics Techniques |
5 | Gas Dynamics and Flow-Through Turbo Machine Passages |
6 | Hydro and Thermal Turbo Machines |
2nd Year OR 3rd & 4th Semester Syllabus of Master of Technology (M.Tech) Turbomachine
S.No | Subjects |
1 | Design of Heat Exchangers |
2 | Design of Hydro Turbomachines |
3 | Design of Thermal Turbo Machine |
4 | Energy & Energy Analysis |
5 | Gas Turbine Cycle & Jet Propulsion |
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