Basic laws, fundamental theories, and engineering applications in fluid mechanics, including Stokesian dynamics, lubrication theory potential flow, vortex. This course is a survey of principal concepts and methods of fluid dynamics. Topics include mass conservation, momentum, and energy equations for continua; Syllabus · Download Course Materials · Exams · Fluid Statics. PDF | 1. Conventions and Notation: Volume forces and surface forces acting on a fluid, Elementary properties of Tensors and Vectors, Direction cosines, Stress.
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More details will be made available when the exam registration form is published.
Final score will be calculated as: Certificate advanced fluid mechanics have your name, photograph and the score in the final exam with the breakup.
It will be e-verifiable at nptel.
The candidate will advanced fluid mechanics knowledge of an array of topics in flow mechanics. Advanced knowledge of potential theory, as well as a fundamental understanding of the mechanics of incompressible flow. Understanding of the fundamental conservation laws of fluid mechanics and how the theory of more specialised branches derives from these.
Knowledge of several practical applications of the theory covered. The level of correspondence to these criteria will determine the graduation of the judgment and, consequently, the final mark.
Navier-Stokes equations; scaling and relevant dimensionless groups; solution procedures. Low intermediate and high Reynolds number flows. Hydrodynamic stability and transition to turbulence.
There is advanced fluid mechanics well balanced coverage of physical concepts, mathematical operations along with examples and exercise problems of practical importance.
After completion of the course, the students will have a strong fundamental understanding of the basic principles of Fluid Mechanics and will be able to apply the basic principles to analyze fluid mechanical systems.
Brief recapitulation of some preliminary concepts of Fluid Mechanics: