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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.

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Tests on various configurations of Coriolis mass flowmeters

TL;DR: In this article, the sensitivity of Coriolis mass flowmeters has been measured for a wide range of parameters like position of sensors, geometry, material properties, etc., and the results indicate that the measured phase shift is proportional to the mass flow rate.
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Measurement of local wall heat transfer coefficient in randomly packed beds of uniform sized spheres using infrared thermography (IR) and water as working medium

TL;DR: In this paper, the authors investigated the behavior of wall heat transfer coefficient with randomized packing of uniformly sized spheres in packed beds and compared the results with different insert configurations and found that packed beds are effective.
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Pressure distribution on a semi-circular concave surface impinged by a single row of circular jets

TL;DR: In this article, the impingement cooling of turbine blade leading edge is modeled by considering impingements of a row of jets on a semi-circular concave surface, where wall static pressure measurements are made along the spanwise line through the stagnation and two other circumferential locations.
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Boiling pressure drop, local heat transfer distribution and critical heat flux in horizontal straight tubes

TL;DR: In this article, the authors measured the heat transfer and pressure drop in flow boiling with refrigerant R123 as the working medium and compared the available correlations with the increase of quality of quality.
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A refined methodology to determine the spatial and temporal variation in the emissivity of diffusion flames

TL;DR: In this article, a refined methodology was developed to determine the spatial and temporal variation in the flame emissivity of pool fires, based on the calculation of flame transmissivity using an infrared camera with reference to electrically heated thin metal strips.