Abstraction of Earth data and Research
-
Updated
Jul 24, 2024 - Python
Abstraction of Earth data and Research
Contains the thesis from my Physics Master's Degree
Elementary dynamical simulation of hurricane winds using the Rankine vortex model, developed as a final project for EPS 109 at UC Berkeley. Includes a Jupyter notebook with simulation code, a PDF presentation with documentation and verification, and an animation video.
Physics used in NorESM/CAM which differs from CESM/CAM
Excel VBA macro for visualization of radiosondy.info weather balloon flight data
Materials accompanying the "Modelling of Atmospheric Clouds" lecture series
Analytical utility for measuring precipitable water in the atmosphere
An open-source solution that leverages machine learning to improve numerical weather predictions. Due to data corruption on my end, the model no longer functions.
Python (and C++) interface to PartMC with Jupyter/Python, Julia and Matlab examples
a benchmark dataset for training and evaluating global cloud classification models.
Applets for students to playfully interact with physical relationships and atmospheric models in an inquiry-based course on Atmospheric Physics.
Pythonic particle-based (super-droplet) warm-rain/aqueous-chemistry cloud microphysics package with box, parcel & 1D/2D prescribed-flow examples in Python, Julia and Matlab
Curated list of some open-source codes for turbulent flow simulations, including turbulent multiphase, turbulent reacting flows, turbulent convection and turbulent atmospheric physics.
Add a description, image, and links to the atmospheric-physics topic page so that developers can more easily learn about it.
To associate your repository with the atmospheric-physics topic, visit your repo's landing page and select "manage topics."