Analysis and visualisation of atmospheric model output powered by iris.
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Updated
Jul 9, 2024 - Python
Analysis and visualisation of atmospheric model output powered by iris.
python package for analyzing general circulation model output data
A Planetary Intensity Code for Atmospheric Spectroscopy Observations
This toolkit helps companies and financial institutions to assess the temperature alignment of current targets, commitments, and investment and lending portfolios, and to use this information to develop targets for official validation by the SBTi. See the wiki for a change log.
Provides analysis for the MPAS components of E3SM
A climate modelling data processing and analysis application designed to work with RegCM4.9
Using neural networks to detect effects of rapid climate mitigation
Showcasing my work throughout the years.
Python interface for the simple global climate carbon-cycle model Hector
This repository contains baseconfigs & userconfigs, cGENIE outputs, Python scripts for data analysis, and figures associated with the Herho et al. (2024) manuscript.
Fine-tuning foundation model for severe weather event prediction in the U.S. with 3-6 months of lead time
A method to compute a Delta representing the change in TC intensity due to climate change
Some data and models used for the DEC report 🌎🔥
👧 Greta is an agile voice assistant to help reduce your carbon footprint.
Three-dimensional visualisation of terrain data from digital elevation models (DEMs) or climate model topography with PyVista. A set of Python example scripts illustrates how this data can be plotted for various domains and with auxiliary information.
Code for the paper "Machine learning of cloud types in satellite observations and climate models".
A collection of Python and Bash scripts for automating runtime and trace data collection for the Isca climate model.
Tool to translate weather data files to WTH format for DSSAT
Atmospheric temperature profile generated by a highly simplified radiative transfer model. It calculates the temperature at a range of points (initially three) from the Earth's surface to the top of the atmosphere. The input parameters are the percentage of planetary cloud cover, the emissitivity/absorptivity of the two atmospheric layer
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