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Title of the research migration
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Aerodynamic analysis of Ahmed Body (Proposed by Mr Atharv Toraskar)
CFD analysis of fluid flow and heat transfer in a shell and tube heat exchange in OpenFOAM (Proposed by Mr Aabhushan Regmi)
CFD analysis of human powered submarine (Proposed by Mr Dibyajyoti Chakraborty)
CFD Analysis of Natural Convection Flow through Vertical Tube (Proposed by Mr Bor Abubakralsedig Bor Hessian)
CFD analysis on Flow over cylinder and impact of no of sides and orientation of cylinder on the drag in a Laminar flow (Proposed by Mr Ridham Jignesh Shah)
CFD modeling of single-phase flow in a stirred tank reactor (Proposed by Mr Biraj Khadka)
Development of Tree-node Management API for OpenFOAM GUI (Proposed by Mr Nitin Yadav)
Development of Tree-node Management API for OpenFOAM GUI (Proposed by Mr Diptangshu Dey)
Effect of amplitude of walls on thermal and hydrodynamic characteristics of laminar flow through an asymmetric wavy channel (Proposed by Mr Abhishek Raghuvanshi)
Flow And Turbulent Structures Around Simplified Car Model Using OpenFOAM (Proposed by Mr Aditya Anand Kulkarni)
Flow Around a Cylinder: A Comparative Study of Immersed Boundary and Arbitrary Lagrangian–Eulerian (ALE) Methods in OpenFOAM (Proposed by Mr Antim Gupta)
Forced convection past a semi-circular cylinder at incidence with a downstream circular cylinder (Proposed by Mr Saptarshi Joshi)
HEAT TRANSFER IN A FLUIDISED BED (Proposed by Mr Nikhil Chitnavis)
Heat Transfer in a Trapezoidal Micro-channel with Laminar Fluid Flow (Proposed by Mr Shantanu Shukla)
High-speed compressible flow over blunt and re-entry bodies (Proposed by Mr Ishar Singh Saini)
Implementing Polylines for the OpenFOAM GUI Project (Proposed by Mr Swapnil Ranadive)
Implementing Splines and Usage Tutorial System for OpenFOAM GUI (Proposed by Mr Patel Aarsh Miteshkumar)
Incompressible Flow Over NACA 0012 Airfoil Profile (Proposed by Mr Mohamed Fadol Orsod Ornasir)
KCS Bare Hull Resistance (Proposed by Dr Joseph Prabhu)
Laminar Flow Vortex Shedding Around the Cylinder (Proposed by Mr Alsheikh Abdalmjeed Alsheikh Ali)
Low Reynolds Number Flow Over a Square Cylinder with a Detached Flat Plate (Proposed by Mr Sachin S B)
Low Reynolds Number Flow Over Non-Rectangular Bluff Bodies (Proposed by Mr Evan Fernandes)
Natural Convection in a Vertical Channel with fins using conjugate heat transfer solver in OpenFOAM (Proposed by Mr Chitikena Chaitanya Kishore)
Numerical Analysis of Air Film Cooling Effectiveness at High Temperature and Pressure (Proposed by Mr Veasna Mom)
Numerical investigation of mixing in serpentine microchannels (Proposed by Mr Nishit Pachpande)
Numerical Modeling of Rayleigh Taylor Instability in Confined Geometries (Proposed by Mr Apoorv Giriya)
NUMERICAL MODELLING OF FLOW WITHIN POROUS MEDIA USING OpenFOAM® (Proposed by Ms Mena G Pillai)
Numerical Simulation of a Food Sterilization Process involving Natural Convection Heating (Proposed by Mr V Sai Yeshwanth)
Numerical simulation of breakup of a viscous drop in simple shear flow through a volume-of-fluid method (Proposed by Ms Shreya Makkar)
NUMERICAL SIMULATION OF STIRRED TANK REACTOR (Proposed by Mr Maharghya Dyuti Das)
Plaque Concentration Modelling and Hemo-Acoustic Study in Axisymmetric Stenosed Coronary Artery (Proposed by Mr Sumant)
Prediction of Turbulence in Separated Flow using Asymmetric Diffuser Geometry (Proposed by Mr Divyesh Variya)
Response dynamics of floating body subjected to waves (Proposed by Mr Akshay Suresh Shimpi)
SIMULATION OF NARROW CHANNELS WITH CORRUGATED WALLS (Proposed by Mr Mohammed Danish)
Simulation of the Effective Thermal Conductivity Calculation of BCC Lattice Structure (Proposed by Mr Abhishek Dey)
Steady state CFD method for residence time distribution in different tubular geometries to evaluate the mixing (Proposed by Mr Dhore Atharva Vilas)
Study of fluid flow in porous metal foams using OpenFOAM (Proposed by Mr Ketan Yogi)
Study of laminar flow and heat transfer in a square channel with 30 degree inline angled baffle turbulators using OpenFOAM (Proposed by Mr Suraj)
STUDY OF PRESSURE DROP IN MICROCHANNEL VARYING TEMPERATURE WITH CONSTANT BIFURCATION OF 90 DEGREE. (Proposed by Ms Mahima Bunker)
About the research migration
Proposer Name:
Mr Ishar Singh Saini
Title of the research migration:
High-speed compressible flow over blunt and re-entry bodies
University:
Amity University Mumbai
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