Data for paper "Resonant Drag Instabilities in Polydisperse Dust: II. The streaming and settling instability"
DOI:10.4121/810f163a-b786-4366-ad9b-5794d71c4ede.v1
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DOI: 10.4121/810f163a-b786-4366-ad9b-5794d71c4ede
DOI: 10.4121/810f163a-b786-4366-ad9b-5794d71c4ede
Datacite citation style
Paardekooper, Sijme-Jan; Aly, Hossam (2024): Data for paper "Resonant Drag Instabilities in Polydisperse Dust: II. The streaming and settling instability". Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/810f163a-b786-4366-ad9b-5794d71c4ede.v1
Other citation styles (APA, Harvard, MLA, Vancouver, Chicago, IEEE) available at Datacite
Dataset
Numerically calculated growth rates for the streaming and settling instability, as published in "Resonant Drag Instabilities in Polydisperse Dust: II. The streaming and settling instability" by Paardekooper & Aly. These multiphase hydrodynamic instabilities are thought to be important in planet formation, since they can concentrate solid particles into clouds of high enough density so that they can collapse gravitationally. Calculations were done using the publicly available package PSITOOLS.
History
- 2024-12-18 first online, published, posted
Publisher
4TU.ResearchDataFormat
Numpy savezFunding
- DUSTSPEC (grant code 101054502) ERC
Organizations
TU Delft, Faculty of Aerospace Engineering, Department of Space EngineeringDATA
Files (16)
- 2,988 bytesMD5:
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310862169bb69031f25f577547f31631fig_si_monoresonance.npz - 322,842 bytesMD5:
71f73669260fbcd8886ccb7668aadecbfig_si_resonance.npz - 2,592 bytesMD5:
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e905c279e1cdbe3d4e15b0f6d3e9d209requirements.txt -
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