Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar

August 2019
Vol-5, Issue-4
Paper ID: 10693
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Climatology
Keywords
temperature climatological mean anomaly trend Mann-Kendall test Pettitt test Principal Component Analysis climate model debinding method quantile-quantile method delta method RCP4.5 RCP8.5.
Abstract
This article presents the study of temperatures in the southwestern region of Madagascar, delimited by latitudes -21 ° to -26 ° and longitudes 43 ° to 46 °. The study area experienced a significant upward trend for the maximum temperature of 0.022 ° C per year and an overall average increase of 0.23 ° C after the break-up date of 2003. This area can be subdivided into 5 regions relative to the maximum temperature and 3 relative to the minimum temperature. Each region has a specific microclimate towards others. The GFDL-GFDL-ESM2M climate model of the National Oceanographic and Administration for each region was biased by the debinding method, the quantile-quantile method, and the delta method. The results reveal that one method of bias correction can be adapted for one region but not for another.

Author Information

# Name Institute / Affiliation
1 MAXWELL Djaffard Laboratory of Applied Physics and Renewable Energies, Mahajanga University, Madagascar
2 DONA Victorien Bruno Laboratory of Applied Physics and Renewable Energies, Mahajanga University, Madagascar
3 RAKOTOVELO Geoslin Laboratory of Applied Physics and Renewable Energies, Mahajanga University, Madagascar
4 RATIARISON Adolphe Andriamanga Laboratory of Atmospheric, Climate and Ocean Dynamics, University of Antananarivo, Madagascar

How to Cite

Use the following formats to cite this article in your research.

APA Style
Djaffard, MAXWELL, Bruno, DONA Victorien, Geoslin, RAKOTOVELO, & Andriamanga, RATIARISON Adolphe (2019). Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar. International Journal of Advance Research and Innovative Ideas In Education, 5(4), 965-981.
MLA Style
Djaffard, MAXWELL, et al. "Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar." International Journal of Advance Research and Innovative Ideas In Education, vol. 5, no. 4, 2019, pp. 965-981.
IEEE Style
MAXWELL Djaffard, DONA Victorien Bruno, RAKOTOVELO Geoslin, and RATIARISON Adolphe Andriamanga, "Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar," International Journal of Advance Research and Innovative Ideas In Education, vol. 5, no. 4, pp. 965-981, 2019.
Vancouver Style
Djaffard MAXWELL, Bruno DONA Victorien, Geoslin RAKOTOVELO, Andriamanga RATIARISON Adolphe. Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar. International Journal of Advance Research and Innovative Ideas In Education. 2019;5(4):965-981.
Harvard Style
Djaffard, MAXWELL, Bruno, DONA Victorien, Geoslin, RAKOTOVELO, & Andriamanga, RATIARISON Adolphe (2019) 'Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar', International Journal of Advance Research and Innovative Ideas In Education, 5(4), pp. 965-981.
Chicago Style
Djaffard, MAXWELL, et al. "Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar." International Journal of Advance Research and Innovative Ideas In Education 5, no. 4 (2019): 965-981.
Turabian Style
Djaffard, MAXWELL, et al. "Climate Change and Bias Correction of NOAA’s GFDL-GFDL-ESM2M Climate Model for Maximum and Minimum Temperatures in the Southwest Region of Madagascar." International Journal of Advance Research and Innovative Ideas In Education 5, no. 4 (2019): 965-981.

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