Evaluation of PERSIANN-CCS-CDR, ERA5, and SM2RAIN-ASCAT rainfall products for rainfall and drought assessment in a semi-arid watershed, Morocco

Author:

Najmi Adam1ORCID,Igmoullan Brahim1,Namous Mustapha2ORCID,El Bouazzaoui Imane3ORCID,Brahim Yassine Ait4ORCID,El Khalki El Mahdi4ORCID,Saidi Mohamed El Mehdi1ORCID

Affiliation:

1. a Laboratory of Georesources, Geo-Environments, and Civil Engineering, Cadi Ayyad University, Marrakech 40000, Morocco

2. b Data Science for Sustainable Earth Laboratory (Data4Earth), Sultan Moulay Slimane University, Beni Mellal 23000, Morocco

3. c Laboratory of Sciences Applied to the Environment and Sustainable Development, Cadi Ayyad University, Essaouira 20000, Morocco

4. d International Water Research Institute, Mohammed VI Polytechnic University, Ben Guerir 43150, Morocco

Abstract

Abstract Satellite-based precipitation products, with simultaneously high spatial and temporal resolutions, are mostly needed to assess climate change repercussions. Previous research used datasets neglecting either good temporal or good spatial resolution, PERSIANN-CCSCDR, ERA5, and SM2RAIN-ASCAT are some of the projects aiming to remedy these limitations. This study's goal is to evaluate the accuracy of the PERSIANN-CCS-CDR, ERA5, and SM2RAIN-ASCAT at a monthly scale and their suitability for drought assessment in a Moroccan semiarid watershed. Several statistical indices were computed, the drought SPI was calculated using PERSIANN-CCS-CDR estimates, ERA5 products, and observed records as an input in the SPI formula using Gamma distribution to simulate drought from 1983 to 2017. The preliminary comparison and evaluation results of PERSIANN-CCS-CDR estimates and ERA5 datasets showed good CC on a basin scale for monthly precipitation, with a slight overestimation of the observed precipitation shown by the PBIAS. The NSE scored 0.41 for PERSIANN-CCS-CDR and 0.72 for ERA5. The results for SM2RAIN-ASCAT showed an overestimation of the observed precipitation data. At the basin scale, the SPI3 correlation coefficients between the PERSIANN-CCS-CDR monthly estimates and observed gauge rainfall data were greater than 0.67, and the RMSE was closer to 0, outperforming ERA5 in the SPI3 evaluation.

Publisher

IWA Publishing

Subject

Management, Monitoring, Policy and Law,Atmospheric Science,Water Science and Technology,Global and Planetary Change

Reference41 articles.

1. Variability of surface water resources and extreme flows under climate change conditions in arid and Mediterranean area: case of Tensift watershed, Morocco,2016

2. Analysis of observed climate trends and high resolution scenarios for the 21st century in Morocco;J. Mater. Environ. Sci.,2017

3. Soil as a natural rain gauge: estimating global rainfall from satellite soil moisture data;J. Geophys. Res. Atmos.,2014

4. SM2RAIN–ASCAT (2007–2018): global daily satellite rainfall data from ASCAT soil moisture observations;Earth Syst. Sci. Data,2019

5. Characteristics of 20th century drought in the United States at multiple times scales;Atmos. Sci. Pap.,1997

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