Thermodynamics and Phase Equilibrium component of Chemical Engineering Design Library (ChEDL)
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Updated
Jan 11, 2025 - Python
Thermodynamics and Phase Equilibrium component of Chemical Engineering Design Library (ChEDL)
A Python package for chemical engineering
A high-performance framework for solving phonon and electron Boltzmann equations
A solver for the coupled and decoupled electron and phonon Boltzmann transport equations.
A code to estimate transport coefficients from the cepstral analysis of a (multi)variate current stationary time series -- [FKA "thermocepstrum"]
Tools for the design and characterisation of thin-films written in Julia.
A wrapper for many computational codes of thermal conductivity
A simple finite difference scheme for the Rayleigh-Bernard equations (buoyancy driven convection).
Monte Carlo simulator of phonon and heat transport in nanostructures
Implementation of the Revised Enskog Theory for Mie fluids (RET-Mie) for computation of diffusion coefficients, thermal diffusion coefficients, viscosity and thermal conductivity
A python package to calculate thermal conductivity across molecular interfaces.
2D transient heat transfer analysis in solid materials.
EntropyScaling.jl provides methods for modeling transport properties (viscosity, thermal conductivity, diffusion coefficients) based on entropy scaling and the Chapman-Enskog theory.
Calculate electrical and thermal conductance in multi-terminal settings of the quantum Hall effect. Includes an ipython GUI for demonstration.
A python3 code for calculations of the minimum limit to thermal conductivity
This repository contains the LAMMPS and python scripts created from the ground-up, along with the most important data, to conduct a thorough analysis of the Thermal Rectification (TR) in semi-stochastically generated atomistic models of polycrystalline graphene with graded grain size variation - using Molecular Dynamics & mapping of phonon modes.
Predict thermal properties; thermal conductivity, specific heat capacity and thermal diffusivity.
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