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The Climate Data Toolbox for MATLAB

  • Climate science is highly interdisciplinary by nature, so understanding interactions between Earth processes inherently warrants the use of analytical software that can operate across the disciplines of Earth science. Toward this end, we present the Climate Data Toolbox for MATLAB, which contains more than 100 functions that span the major climate-related disciplines of Earth science. The toolbox enables streamlined, entirely scriptable workflows that are intuitive to write and easy to share. Included are functions to evaluate uncertainty, perform matrix operations, calculate climate indices, and generate common data displays. Documentation is presented pedagogically, with thorough explanations of how each function works and tutorials showing how the toolbox can be used to replicate results of published studies. As a well-tested, well-documented platform for interdisciplinary collaborations, the Climate Data Toolbox for MATLAB aims to reduce time spent writing low-level code, let researchers focus on physics rather than coding andClimate science is highly interdisciplinary by nature, so understanding interactions between Earth processes inherently warrants the use of analytical software that can operate across the disciplines of Earth science. Toward this end, we present the Climate Data Toolbox for MATLAB, which contains more than 100 functions that span the major climate-related disciplines of Earth science. The toolbox enables streamlined, entirely scriptable workflows that are intuitive to write and easy to share. Included are functions to evaluate uncertainty, perform matrix operations, calculate climate indices, and generate common data displays. Documentation is presented pedagogically, with thorough explanations of how each function works and tutorials showing how the toolbox can be used to replicate results of published studies. As a well-tested, well-documented platform for interdisciplinary collaborations, the Climate Data Toolbox for MATLAB aims to reduce time spent writing low-level code, let researchers focus on physics rather than coding and encourage more efficacious code sharing. Plain Language Summary This article describes a collection of computer code that has recently been released to help scientists analyze many types of Earth science data. The code in this toolbox makes it easy to investigate things like global warming, El Nino, or other major climate-related processes such as how winds affect ocean circulation. Although the toolbox was designed to be used by expert climate scientists, its instruction manual is well written, and beginners may be able to learn a great deal about coding and Earth science, simply by following along with the provided examples. The toolbox is intended to help scientists save time, help them ensure their analysis is accurate, and make it easy for other scientists to repeat the results of previous studies.show moreshow less

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Author details:Chad A. GreeneORCiD, Kaustubh ThirumalaiORCiD, Kelly A. Kearney, Jose Miguel Martins DelgadoORCiDGND, Wolfgang SchwanghartORCiDGND, Natalie S. WolfenbargerORCiD, Kristen M. ThyngORCiD, David E. GwytherORCiD, Alex S. GardnerORCiD, Donald D. BlankenshipORCiD
DOI:https://doi.org/10.1029/2019GC008392
ISSN:1525-2027
Title of parent work (English):Geochemistry, geophysics, geosystems
Publisher:American Geophysical Union
Place of publishing:Washington
Publication type:Article
Language:English
Date of first publication:2019/06/27
Publication year:2019
Release date:2021/06/18
Volume:20
Issue:7
Number of pages:8
First page:3774
Last Page:3781
Funding institution:G. Unger Vetlesen Foundation; Presidential Postdoctoral Fellowship at InitiativeAustralian Research Council [SR140300001]; NASA Cryosphere program; Jet Propulsion Laboratory, California Institute of Technology; NASA MEaSUREs; NASA Postdoctoral ProgramNational Aeronautics & Space Administration (NASA)
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Geowissenschaften
DDC classification:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Peer review:Referiert
Publishing method:Open Access / Green Open-Access
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