There is a newer version of the record available.

Published April 2024 | Version v6
Model Open

Open-Source Stand-Alone Version of Atmospheric Model Aeolus 2.0 Software

  • 1. ROR icon Potsdam Institute for Climate Impact Research

Description

In this release version, we showcase the unveiling of Aeolus 2.0, an open-source numerical atmosphere model. This particular iteration stands as a self-contained model of intermediate complexity. The model's dynamical core is underpinned by a multi-layer pseudo-spectral moist-convective Thermal Rotating Shallow Water (mcTRSW) model. The pseudo-spectral problem-solving tasks are handled by the Dedalus algorithm, acknowledged for its spin-weighted spherical harmonics. The model captures the temporal and spatial evolution of vertically integrated potential temperature, thickness, water vapor, precipitation, and the intricate influence of bottom topography. It comprehensively characterizes velocity fields in both the lower and upper troposphere, employing resolutions spanning a spectrum from the smooth to the coarse, enabling the exploration of a wide range of dynamic phenomena with varying levels of detail and precision.

For inquiries regarding access to the most recent iteration of the model, installation procedures, initialization tailored to specific scientific endeavors, diverse methodologies concerning scaling and nondimensionalization, as well as opportunities for scientific collaboration, please do not hesitate to contact Dr. Masoud Rostami via email at rostami@pik-potsdam.de or masoud.rostami@lmd.ipsl.fr.

 

Files

Aeolus2.zip

Files (133.0 MB)

Name Size Download all
md5:456666e0b9efc3d19f228d2e2ee52d15
65.9 MB Preview Download
md5:05e9429a71d1cf3e17d46de6949d411c
107.8 kB Download
md5:d79f9eff342d4d6451160cfcbc8ed8a5
12.8 MB Download
md5:fa72fb98d83d16052c89ff7a15400afd
26.4 MB Download
md5:6a0f47cb4bde196392b0db43803b687e
26.4 MB Download
md5:4eb2bdec9d33a748d5ba7b487adc729a
21.6 kB Download
md5:aae7269e6e4f74581c23397b79a784a2
9.6 kB Download
md5:859db044a622af3d34203ee0ca51be03
15.7 kB Download
md5:944df67d9ef4341e1180a46c9817decb
271 Bytes Download
md5:96ef8069880eb0acc32bd3921fc70b6d
1.8 kB Download
md5:43b168c3cdb5e8b5f100004acc61debd
5.7 kB Preview Download
md5:5b5b0f4882358dd54f917a40b36f8c24
5.1 kB Download
md5:eb3bb3056b515159b333a200ddfe8fb9
8.2 kB Download
md5:14342cdfbbd27bdb3c92ffb5c9461161
13.8 kB Download
md5:622c68d430bb4fc4d4913f47b9071b12
1.4 MB Download

Additional details

Additional titles

Subtitle (English)
A Novel Pseudo-Spectral Moist-Convective Thermal Rotating Shallow Water (mcTRSW) Model Dynamical Core

Software

Programming language
Python
Development Status
Active

References

  • Rostami, M., Petri, S., Guimaräes, S.O., Fallah, B., 2024. Open-source stand-alone version of atmosphere model Aeolus 2.0 Software, GeoSci. Data J., https://doi.org/10.1002/gdj3.249.
  • Rostami, M., Severino, L., Petri, S., & Hariri, S., 2023. Dynamics of localized extreme heatwaves in the mid-latitude atmosphere: A conceptual examination. Atmos. Sci. Lett., e1188, https://doi.org/10.1002/asl.1188.
  • Rostami, M., Zhao, B., Petri, S., 2022. On the genesis and dynamics of Madden-Julian oscillation-like structure formed by equatorial adjustment of localized heating. Q. J. R. Meteorol. Soc., 148(749), 3788– 3813, https://doi.org/10.1002/qj.4388.
  • Vasil, G. M., Lecoanet, D., Burns, K. J., Oishi, J. S. and Brown, B. P., 2019. Tensor calculus in spherical coordinates using Jacobi polynomials. Part I: Mathematical analysis and derivations. J. Comput. Phys., 3, 100013, https://doi.org/10.1016/j.jcpx.2019.100013.
  • Rostami, M. and Zeitlin, V., 2018. An improved moist-convective rotating shallow-water model and its application to instabilities of hurricane- like vortices. Q. J. Roy. Met. Soc., 144, 1450-1462, https://doi.org/10.1002/qj.3292.