scispace - formally typeset
S

S.V. Prabhu

Researcher at Indian Institute of Technology Bombay

Publications -  182
Citations -  4757

S.V. Prabhu is an academic researcher from Indian Institute of Technology Bombay. The author has contributed to research in topics: Heat transfer & Nusselt number. The author has an hindex of 31, co-authored 168 publications receiving 3766 citations. Previous affiliations of S.V. Prabhu include Nokia & Indian Institutes of Technology.

Papers
More filters
Journal ArticleDOI

Influence of the orifice shape on the local heat transfer distribution and axis switching by compressible jets impinging on flat surface

TL;DR: In this paper, the effects of the orifice shape and Mach number (M) on the local heat transfer distribution by normally impinging compressible jets were investigated. And the authors measured the heat transfer by thin foil IR technique for different nozzle to plate distances.
Journal ArticleDOI

Heat transfer distribution and shadowgraph study for impinging underexpanded jets

TL;DR: In this paper, the influence of impinging underexpanded jets on local heat transfer is studied for nozzle pressure ratio (NPR) ranging from 2.4 to 5.1.
Journal ArticleDOI

Physical experiments and fire dynamics simulator simulations on gasoline pool fires

TL;DR: In this paper, the authors characterize the temperature and emissive power distributions for a fire safety measurement with respect to a girder, and characterize these distributions for the same girders.
Journal ArticleDOI

Heat transfer characteristics of impinging methane diffusion and partially premixed flames

TL;DR: In this article, the heat transfer characteristics of the impinging methane flame were determined using the minimization technique wherein the target surface is impinged by a methane flame from the bottom and is simultaneously cooled from the top by air jets of different Reynolds number.
Journal ArticleDOI

A novel method of estimation of adiabatic wall temperature for impinging premixed flame jets

TL;DR: In this paper, a hybrid analytical-numerical method is proposed to evaluate the adiabatic wall temperature by computing the steady state adiabeatic wall heat flux, which is the proper way of presenting this data is in the form of Nusselt number and effectiveness.