The Biorefinery Simulation and Techno-Economic Analysis Modules
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Updated
Sep 5, 2026 - Python
The Biorefinery Simulation and Techno-Economic Analysis Modules
Heat transfer component of Chemical Engineering Design Library (ChEDL)
A multi-package for HVAC engineering written in Python.
This application allows calculate heat integration for heat exchangers using Python on console mode. Sponsor this repository for access.
CAD modeling and COMSOL simulation of a shell and tube heat exchanger featuring internal tubes and multiple baffle plates, with fluid flowing through the tubes and across the shell side around the baffles to analyze thermal performance and flow behavior.
Numerical methods with MATLAB, mainly for PDEs.
A Python package for 1D sizing and analysis of thermodynamic power cycles
A comprehensive tool for advanced pinch analysis, total site integration, heat pump integration, and heat exchanger network synthesis.
This example shows how to access the Valden Heat Pump Controller data from your server, Raspberry Pi, and so on.
Heat exchanger design optimization
Python package to support heat integration.
simulation of a labscale shell and tube heat exchanger water/water
Part 2 and 3 of the course project for EN 317 (Thermo-Fluid Devices)
Counter-current heat exchanger model and simulation with Maple
PSistema de monitoreo predictivo para enfriadores de ácido sulfúrico (CAP-3), basado en ingeniería térmica, análisis de ensuciamiento, evaluación de criticidad y machine learning supervisado.
A Unity program which simulates a shell and tube heat exchanger
First-principles screening model for a 3,000 kg/h naphtha HDS unit covering sulfur conversion, H2 demand, heat integration, LMTD-based exchanger sizing, furnace duty, hydraulic screening, and constrained reactor-temperature optimization for ≤10 ppm product sulfur.
🏭 Design efficient Shell & Tube heat exchangers with our robust tool, ensuring mechanical validation and accurate commercial quoting for your projects.
Validated 2D/3D compressible SIMPLE/LTNE CFD solver for TPMS (Diamond/Gyroid) heat exchangers — Darcy–Forchheimer surrogate, dual air/water Nusselt closures, qNEHVI optimization, ASME V&V 20 (MMS/GCI). Shanghai 16-case: air-side Q 1.71%, grid-converged 3D Δp ≈12% / Q ≈3% (gamma_df). PySide6 GUI.
Analysed flow and heat conduction or variation in a single tube counter flow shell and tube heat exchanger
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