CFD Topology Optimization: Plate Exchanger

Job ID: 39900959

Budget: ₹1,500 – ₹12,500 INR

i observed a study on a parallel-plate heat exchanger and now want to convert its findings into a full topology-optimization project. The sole objective is to boost thermal performance through CFD-driven design changes. In practical terms, the optimized layout must raise heat-transfer efficiency, hold pressure drop in check, and deliver a more uniform temperature distribution across the plates.

You will begin by building (or refining) a CFD model of the baseline exchanger described in my paper, then run an automated topology-optimization loop to propose an improved geometry. Please benchmark every iteration against the original data so I can see exactly where and how the gains are achieved.

Deliverables
• Validated CFD set-up with mesh, boundary conditions, and solver parameters
• Reproducible optimization workflow or scripts
• Final CAD geometry (STEP/IGES) and post-processing files
• Brief technical memo—figures, contour maps, and side-by-side tables comparing efficiency, pressure drop, and temperature uniformity with the baseline

ANSYS Fluent, OpenFOAM, or an equivalent CFD package are all acceptable, provided I can inspect and rerun the simulations. When you reply, let me know which tool you prefer, examples of similar projects you have completed, and the timeline you foresee for reaching a converged, ready-to-manufacture design.

* i need exactly like the following paper and other design condition*