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M. Eswaran

Researcher at Bhabha Atomic Research Centre

Publications -  36
Citations -  376

M. Eswaran is an academic researcher from Bhabha Atomic Research Centre. The author has contributed to research in topics: Slosh dynamics & Free surface. The author has an hindex of 6, co-authored 27 publications receiving 229 citations. Previous affiliations of M. Eswaran include Indian Institute of Technology Guwahati & International Centre for Genetic Engineering and Biotechnology.

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Effect of baffles on a partially filled cubic tank: Numerical simulation and experimental validation

TL;DR: In this paper, sloshing wave analysis for baffled and un-baffled tanks was carried out based on volume of fluid (VOF) techniques with arbitrary-Lagrangian-Eulerian (ALE) formulation which adopts the displacement of solid, the pressure and displacement in the fluid as variables to model the coupled system.
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Sloshing of liquids in partially filled tanks - a review of experimental investigations

TL;DR: A review of some selected experimental investigations carried out during the last couple of decades is given in this paper, highlighting the various parameters attributed to the cause of liquid sloshing followed by effects of baffles, tank inclination, magnetic field, tuned liquid dampers, electric field etc.
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Challenges and opportunities on AR/VR technologies for manufacturing systems in the context of industry 4.0: A state of the art review

TL;DR: In this paper , the authors demonstrate the research progress and developments in the AR/VR technologies for product design and evaluation, Repair & Maintenance, Assembly, Warehouse management, Quality control, Plant layout and CNC simulation.
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Experimental measurement of the surface velocity field in an externally induced sloshing tank

TL;DR: In this article, the unsteady free-surface velocities during the surge motion of a liquid tank are determined through experimental investigation, and a new experimental approach has been discussed for cap...
Posted ContentDOI

Rice Bean (Vigna umbellata) draft genome sequence: unravelling the late flowering and unpalatability related genomic resources for efficient domestication of this underutilized crop

TL;DR: The genomic value of rice bean to be escalated via breeding by allied and applied approaches is addressed and symplesiomorphic character is uncovered in turn uncovering the lineage of genetic and functional features of rice beans.