SB
Subhajit Biswas
Indian Institute of Technology Madras, University of Southampton, Indian Institute of Science
About
Subhajit Biswas is an assistant professor in the Department of Mechanical Engineering, Indian Institute of Technology (IIT), Chennai, India. Previously, he was a postdoctoral research fellow at the University of Southampton, United Kingdom. He obtained a PhD from the Department of Mechanical Engineering at the Indian Institute of Science, Bangalore, India. His research broadly focused on understanding urban fluid mechanics, scalar dispersion, multiphase turbulent flows, fluid-structure interactions, and interfacial dynamics.
Employment
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Indian Institute of Technology Madras Assistant professor2026 - Present
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University of Southampton? - 2026
Education
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Indian Institute of Science PhD Scholar2015 - 2022
Projects & Funding
Projects & funding information is unavailable.
Publications (24)
- Dataset for "Comparative assessment of indoor and outdoor air quality in residential homes in the south of England using sensor-based measurements" Save
- Dispersion of a ground-level release in an urban canopy under varying inflow turbulence intensity and integral length scale Save
- Indoor air quality in homes: a case study of indoor and outdoor air quality in Hampshire, UK Save
- Characterization of flow over an isolated tall building through laboratory experiments and large-eddy simulations Save
- Passive scalar transport in a cross-ventilating flow with upstream source: wind and water tunnel measurements Save
- Passive scalar transport in a cross-ventilating flow with upstream source: Wind and Water tunnel measurements Save
- Interaction of a vortex ring with a buoyant spherical particle: effects of particle size on vorticity dynamics and particle dynamics Save
- Indoor-outdoor pollutant transport through a hollow cube with a cross-ventilating flow Save
- Flow through a hollow cube in a turbulent boundary layer: towards understanding indoor pollutant dispersion Save
- Pollutant dispersion in a cross-ventilating flow through a scaled building : Wind and water measurements Save