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Dive into the research topics where A. Venugopal is active.

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Featured researches published by A. Venugopal.


Journal of Turbulence | 2018

Vortex dynamics of a trapezoidal bluff body placed inside a circular pipe

A. Venugopal; Amit Agrawal; S.V. Prabhu

ABSTRACT The influence of Reynolds number and blockage ratio on the vortex dynamics of a trapezoidal bluff body placed inside a circular pipe is studied experimentally and numerically. Low aspect ratio, high blockage ratio, curved end conditions (junction of pipe and bluff body), axisymmetric upstream flow with shear and turbulence are some of the intrinsic features of this class of bluff body flows which have been scarcely addressed in the literature. A large range (200:200,000) of Reynolds number (ReD) is covered in this study, encompassing all the three pipe flow regimes (laminar, transition and turbulent). Four different flow regimes are defined based on the distinct features of Strouhal number (St)–ReD relation: steady, laminar irregular, transition and turbulent. The wake in the steady regime is stationary with no oscillations in the shear layer. The laminar regime is termed as irregular owing to irregular vortex shedding. The vortex shedding in this regime is observed to be symmetric. The emergence of separation bubble downstream of the bluff body on either side is another interesting feature of this regime, which is further observed to be symmetric. Two pairs of mean streamwise vortices are noticed in the near-wake regime, which are termed as reverse dipole-type wake topology. Beyond the irregular laminar regime, the Strouhal number falls gradually and vortex shedding becomes more periodic. This regime is named transition and occurs close to the Reynolds number at which transition to turbulence takes place in a fully developed pipe. The turbulent regime is characterised by a nearly constant Strouhal number. Typical Karman-type vortex shedding is noticed in this regime. The convection velocity, wake width formation length and irrecoverable pressure loss are quantified to highlight the influence of blockage ratio. These results will be useful to develop basic understanding of vortex dynamics of confined bluff body flow for several practical applications.


Sensors and Actuators A-physical | 2011

Review on vortex flowmeter—Designer perspective

A. Venugopal; Amit Agrawal; S.V. Prabhu


Measurement | 2010

Influence of blockage and upstream disturbances on the performance of a vortex flowmeter with a trapezoidal bluff body

A. Venugopal; Amit Agrawal; S.V. Prabhu


Measurement | 2011

Influence of blockage and shape of a bluff body on the performance of vortex flowmeter with wall pressure measurement

A. Venugopal; Amit Agrawal; S.V. Prabhu


Measurement | 2014

Performance evaluation of piezoelectric and differential pressure sensor for vortex flowmeters

A. Venugopal; Amit Agrawal; S.V. Prabhu


Sensors and Actuators A-physical | 2012

Frequency detection in vortex flowmeter for low Reynolds number using piezoelectric sensor and installation effects

A. Venugopal; Amit Agrawal; S.V. Prabhu


Flow Measurement and Instrumentation | 2013

Pressure measurement technique and installation effects on the performance of wafer cone design

Kishor Borkar; A. Venugopal; S.V. Prabhu


Flow Measurement and Instrumentation | 2013

Study on the design and performance of a bi-directional cone flowmeter

Kishor Borkar; A. Venugopal; S.V. Prabhu


Journal of Visualization | 2017

Vortex shedding characteristics of a cylinder with a parallel slit placed in a circular pipe

Lavish Ordia; A. Venugopal; Amit Agrawal; S.V. Prabhu


Journal of Fluids Engineering-transactions of The Asme | 2017

Investigations on Bluff Bodies as Improved Vortex Shedders Placed Inside a Circular Pipe

A. Venugopal; Amit Agrawal; S.V. Prabhu

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S.V. Prabhu

Indian Institute of Technology Bombay

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Amit Agrawal

Indian Institute of Technology Bombay

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Kishor Borkar

Indian Institute of Technology Bombay

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Kapil Mohadikar

Indian Institute of Technology Bombay

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Lavish Ordia

Indian Institute of Technology Bombay

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