Dr. DHARMAIAH GURRAM
Vasireddy Venkatadri International Technological University
About
Working as an Associate Professor in the Department of Mathematics at Vasireddy Venkatadri International Technological University, Guntur, A.P., INDIA. I have more than 23 years of teaching experience. My areas of interest are Fliud Dynamics, Heat and Mass Transfer through Porous medium, MHD flows, Nano fluids, Newtonian and non-Newtonian fluids, Hybrid-Trihybrid-Tetrahybrid nano fluids. I attended and presented 20 papers at various seminars/conferences. I have published 84 research papers in UGC, Scopus indexed and Web of Sciences Journals and authored three books.
Employment
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Vasireddy Venkatadri International Technological University Teaching2025 - Present
Education
Education history is unavailable.
Projects & Funding
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Publications (80)
- Mass Transfer Characteristics and Entropy Generation of Rotating Non‐Uniform Surfaces With Coriolis Forces and Dissipative Eyring–Powell Flows Save
- Insights of Joule heating and chemical reaction effects on Casson-Williamson fluid in a thermally active Darcy–Forchheimer medium Save
- Integrated numerical and RSM study on hall and ion-slip impacts on Maxwell nanofluid flow with Cattaneo–Christov heat conduction Save
- Optimising thermal performance of water-based hybrid nanofluids with magnetic and radiative effects over a spinning disc Save
- Thermal and Flow Dynamics of Magnetohydrodynamic Burgers' Fluid Induced by a Stretching Cylinder with Internal Heat Generation and Absorption Save
- Theoretical analysis of MHD Maxwell two phase nano flow subject to viscous dissipation and chemical reaction: A nonsimilar approach Save
- THE INFLUENCE OF MOMENTUM AND CONCENTRATION SLIP BOUNDARY CONDITIONS ON A FERROMAGNETIC DIPOLE WITH RADIATION, THERMOPHORESIS, AND BROWNIAN MOTION Save
- Support vector machine learning classification of heat transfer rate in tri-hybrid nanofluid over a 3D stretching surface with suction effects for water at 10°C and 50°C Save
- Simulation of Hydromagnetic Williamson Nanofluid Flow with Melting Heat Transfer and Activation Energy Across a Porous Exponential Stretching Surface Save
- Melting Heat Transfer Effects on MHD Chemically Thermally Radiative Micropolar Fluid Flow towards Stretching Exponentially Sheet with Heat Sink/Source Save