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Dive into the research topics where Roshan Vignesh Baskaran is active.

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Featured researches published by Roshan Vignesh Baskaran.


AIP Advances | 2018

A closed-form analytical model for predicting 3D boundary layer displacement thickness for the validation of viscous flow solvers

Vr Sanal Kumar; Vigneshwaran Sankar; Nichith Chandrasekaran; Vignesh Saravanan; Vishnu Natarajan; Sathyan Padmanabhan; Ajith Sukumaran; Sivabalan Mani; Tharikaa Rameshkumar; Hema Sai Nagaraju Doddi; Krithika Vysaprasad; Sharad Sharan; Pavithra Murugesh; S. Ganesh Shankar; Mohammed N. Nejaamtheen; Roshan Vignesh Baskaran; Sulthan Ariff Rahman Mohamed Rafic; Ukeshkumar Harisrinivasan; Vivek Srinivasan

A closed-form analytical model is developed for estimating the 3D boundary-layer-displacement thickness of an internal flow system at the Sanal flow choking condition for adiabatic flows obeying the physics of compressible viscous fluids. At this unique condition the boundary-layer blockage induced fluid-throat choking and the adiabatic wall-friction persuaded flow choking occur at a single sonic-fluid-throat location. The beauty and novelty of this model is that without missing the flow physics we could predict the exact boundary-layer blockage of both 2D and 3D cases at the sonic-fluid-throat from the known values of the inlet Mach number, the adiabatic index of the gas and the inlet port diameter of the internal flow system. We found that the 3D blockage factor is 47.33 % lower than the 2D blockage factor with air as the working fluid. We concluded that the exact prediction of the boundary-layer-displacement thickness at the sonic-fluid-throat provides a means to correctly pinpoint the causes of errors of the viscous flow solvers. The methodology presented herein with state-of-the-art will play pivotal roles in future physical and biological sciences for a credible verification, calibration and validation of various viscous flow solvers for high-fidelity 2D/3D numerical simulations of real-world flows. Furthermore, our closed-form analytical model will be useful for the solid and hybrid rocket designers for the grain-port-geometry optimization of new generation single-stage-to-orbit dual-thrust-motors with the highest promising propellant loading density within the given envelope without manifestation of the Sanal flow choking leading to possible shock waves causing catastrophic failures


2018 Applied Aerodynamics Conference | 2018

Geometry Optimization of a Pintle Nozzle for Augmented Thrust Vectoring and Steering using Expansion Waves

Roshan Vignesh Baskaran; Ukeshkumar Harisrinivasan; Vr Sanal Kumar


2018 Joint Propulsion Conference | 2018

Correction: Modeling of Sanal Flow Choking Condition and Design Optimization of High Performance Dual-thrust SRMs

Vr Sanal Kumar; Vigneshwaran Sankar; Nichith Chandrasekaran; Sulthan Ariff Rahman M; Roshan Vignesh Baskaran


2018 Joint Propulsion Conference | 2018

Correction: 3D Boundary Layer Blockage and the Average Friction Coefficient at the Sanal Flow Choking Condition for the CFD Code Validation, Calibration and Verification

Vigneshwaran Sankar; Vishnu Natarajan; Nichith Chandrasekaran; Sulthan Ariff Rahman M; Vr Sanal Kumar; Roshan Vignesh Baskaran


2018 Joint Propulsion Conference | 2018

Liftoff Thrust Augmentation of Sounding Rockets using Externally Facilitated Pintle Induced Expansion Waves

Roshan Vignesh Baskaran; Ukeshkumar Harisrinivasan; Vr Sanal Kumar


2018 Joint Propulsion Conference | 2018

Numerical Studies on Augmented Thrust Vectoring System for Pintle Nozzle using Secondary Sonic Jet

Ukeshkumar Harisrinivasan; Roshan Vignesh Baskaran; Vr Sanal Kumar


2018 Joint Propulsion Conference | 2018

Correction: Prediction of 3D Boundary Layer Blockage and the Grain Design Optimization of HVT Dual-thrust Hybrid Rockets

Vr Sanal Kumar; Vigneshwaran Sankar; Nichith Chandrasekaran; Pavithra Murugesh; Sulthan Ariff Rahman M; Roshan Vignesh Baskaran


2018 Joint Propulsion Conference | 2018

Design of a Pintle Nozzle for the Augmented Thrust Propulsion using Multiple Internal Expansion Waves

Ukeshkumar Harisrinivasan; Roshan Vignesh Baskaran; Vr Sanal Kumar


2018 Joint Propulsion Conference | 2018

Design Optimization of a Truncated Aero Spike Nozzle Facilitated with Convex-shaped Tip for Thrust Escalation using Expansion Waves

Roshan Vignesh Baskaran; Ukeshkumar Harisrinivasan; Vr Sanal Kumar


2018 Fluid Dynamics Conference | 2018

A Closed-form Analytical Model for Predicting 2D Boundary layer thickness for Verification, Calibration and Validation of Navier-Stokes Solvers

Vr Sanal Kumar; Vigneshwaran Sankar; Vishnu Natarajan; Nichith Chandrasekaran; Vignesh Saravanan; Sathyan Padmanabhan; Sulthan Ariff Rahman M; Roshan Vignesh Baskaran; Ukeshkumar Harisrinivasan

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Vr Sanal Kumar

Indian Space Research Organisation

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Ukeshkumar Harisrinivasan

Kumaraguru College of Technology

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Vigneshwaran Sankar

Kumaraguru College of Technology

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Sulthan Ariff Rahman M

Kumaraguru College of Technology

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Vishnu Natarajan

Kumaraguru College of Technology

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Sivabalan Mani

Georgia Institute of Technology

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Pavithra Murugesh

Kumaraguru College of Technology

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