Morphing optimization flow heat transfer is a M.Tech project topic for Mechanical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
Morphing optimization flow heat transfer Project Details
| Abstract |
This research study looks at improving fluid flow and heat transfer in concentricβtube heat exchangers by reshaping the inner tube walls with an adjointβbased method. The flow is fully turbulent, so we run CFD simulations to see how geometric changes affect local flow physics, boundaryβlayer growth, and thermal transport. An adjoint shapeβoptimization framework systematically explores the design space, aiming to cut flow resistance while boosting heat transfer. The resulting deformed shapes are examined to measure gains in the overall heatβtransfer coefficient and the net heatβtransfer rate. We also evaluate the thermalβhydraulic performance factor under a constantβpumpingβpower condition to confirm the thermodynamic viability of the new geometries. The analysis reveals how
radial flow structures develop and how adverse pressure gradients can be reduced. This provides a reliable computational workflow for creating highβefficiency heat exchangers in aerospace, chemical processing, and powerβgeneration applications. Implementation work includes numerical validation, meshβindependence studies, and parametric evaluation of the optimized wall profiles.
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| Reference Paper |
Morphing optimization of flow and heat transfer in concentric tube heat exchangers |
| Domain |
Mechanical Engineering |
| Sub-Domain |
Thermal & Fluid Sciences / Heat Transfer / Heat Exchangers |
| PDF Download |
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| Get Help |
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