About
S. Sarkar, Professor of the Department of Mechanical Engineering at the Indian Institute of Technology Kanpur, India, HAL Chair, Convener of Energy Conversion and Computational Turbomachinery Laboratories, and a member of ASME, received his PhD. from Indian Institute of Technology, Madras. He initially served Calcutta University and then moved to the Indian Institute of Technology, Kanpur, in 1997. He served the University of Surrey, UK as a senior research fellow.
Dr. Sarkar has been involved in research over the last 25 years and contributed significantly in the fields of Turbomachinery, CFD, LES/DNS, Transition, and Turbulence. He has completed many industrial and sponsored projects. He has served as a technical expert on project-review committees of national importance and served on numerous academic and administrative committees of the Institute.
Employment
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Indian Institute of Technology Kanpur Professor/Dr.1997 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (66)
- Near-wall turbulence and transitional behavior on the rib-roughened surfaces Save
- Boundary-layer transition over a biomimetic fish scale array under adverse pressure gradient Save
- Near-wall flow characteristics around longitudinal ribs in fully developed turbulent channel flows Save
- Insights of flow transition over converging-diverging riblets using large-eddy simulation Save
- Leading-edge contamination and its effects over a controlled-diffusion compressor blade for varying levels of freestream turbulence Save
- Influence of riblet geometry and freestream turbulence on boundary layer transition Save
- Characterizing disturbance growth and transition of laminar separation bubbles subjected to varying freestream turbulence Save
- Influence of freestream turbulence on boundary layer transition over a controlled-diffusion compressor blade Save
- Insights into the transition of separation bubble over a rough surface at varying angles of attack Save
- Exploring flow transition induced by surface-mounted riblets using large eddy simulations Save