Regression Models for Soil Water Storage Estimation Using the ESA CCI Satellite Soil Moisture Product: A Case Study in Northeast Portugal

Author:

de Figueiredo TomásORCID,Royer Ana CarolineORCID,Fonseca Felícia,de Araújo Schütz Fabiana Costa,Hernández Zulimar

Abstract

The European Space Agency Climate Change Initiative Soil Moisture (ESA CCI SM) product provides soil moisture estimates from radar satellite data with a daily temporal resolution. Despite validation exercises with ground data that have been performed since the product’s launch, SM has not yet been consistently related to soil water storage, which is a key step for its application for prediction purposes. This study aimed to analyse the relationship between soil water storage (S), which was obtained from soil water balance computations with ground meteorological data, and soil moisture, which was obtained from radar data, as affected by soil water storage capacity (Smax). As a case study, a 14-year monthly series of soil water storage, produced via soil water balance computations using ground meteorological data from northeast Portugal and Smax from 25 mm to 150 mm, were matched with the corresponding monthly averaged SM product. Linear (I) and logistic (II) regression models relating S with SM were compared. Model performance (r2 in the 0.8–0.9 range) varied non-monotonically with Smax, with it being the highest at an Smax of 50 mm. The logistic model (II) performed better than the linear model (I) in the lower range of Smax. Improvements in model performance obtained with segregation of the data series in two subsets, representing soil water recharge and depletion phases throughout the year, outlined the hysteresis in the relationship between S and SM.

Funder

European Regional Development Fund

Fundação para a Ciência e a Tecnologia

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference94 articles.

1. The Concept of Essential Climate Variables in Support of Climate Research, Applications, and Policy

2. World Meteorological Organization (WMO), United Nations Educational Scientific and Cultural Organization, United Nations Environment Programme, and International Council for Science. GCOS, 154. Systematic observation requirements for satellite-based data products for climate Supplemental details to the satellite-based component of the Implementation Plan for the Global Observing System for Climate in Support of the UNFCCC (2011 Update)https://library.wmo.int/index.php?lvl=notice_display&id=12907#.X-jHy9j7TIU

3. Relationships between climate variability, soil moisture, and Australian heatwaves

4. Recent decline in the global land evapotranspiration trend due to limited moisture supply

5. Implications of future climate change for event-based hydrologic models

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