Earth system science data· 2026Q1
Marine Heat Waves and Cold Spells – Multiple Analysis/Definitions (MHW-MAD): A Multi-Definition Global Marine Heatwave Database from Satellite Sea Surface Temperature Data
- 1citations
- Q1SCImago
- 2026year
Short summary
A new global database, MHW-MAD, provides daily marine heatwave (MHW) and marine cold spell (MCS) metrics derived from satellite SST data (1982-2024), incorporating multiple baseline climatologies, percentile thresholds (90th, 95th, 99th), and duration criteria to enable consistent analysis across different definitions.
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Key points
- Introduces MHW-MAD, a global database of daily marine heatwave (MHW) and marine cold spell (MCS) metrics.
- Utilizes ESA SST CCI climate data record (1982–2021) and an extension (2022–2024).
- Incorporates multiple baseline climatologies, percentile thresholds (90th, 95th, 99th), and duration criteria (5, 10, 30 days).
- Provides indices for both warm extremes (MHWs) and cold extremes (MCSs) within a single framework.
- Data is available at daily resolution on a ~5 km grid.
AI-generated from the title and abstract; the full text is not read.
Abstract
Marine heatwaves (MHWs) are prolonged anomalies of warm sea surface temperature (SST) that can disrupt marine ecosystems, physical climate processes, and human coastal activities. MHW definitions vary due to different stakeholders requirements, such as ecological scientists and climate scientists having differing yet specific thresholds and metrics. Here we introduce a new global database of daily MHW metrics: climatological baselines, threshold exceedances, SST anomalies, and categorical event classifications of severity, derived from the European Space Agency SST Climate Change Initiative (ESA SST CCI) climate data record (CDR; 1982–2021) version 3.0 and an extension from 2022–2024 provided as an interim climate data record (iCDR). Building on the widely used definition of MHWs, periods in which SST exceeds the local 90th percentile for 5 or more days, our database extends this framework by incorporating multiple baseline climatologies (including fixed 30-year periods and rolling 30-year windows, as well as the period for reanalysis 1993–2022), varied percentile thresholds (90th, 95th, 99th), and both raw and linearly detrended SST anomalies. We also implement alternative event duration criteria (minimum 10 and 30 d persistence) to classify longer-lasting warm events. In addition to warm extremes, we provide marine cold spell (MCS) indices derived from the 1st, 5th and 10th percentiles, enabling analysis of cold as well as warm ocean extremes within the same framework. All data products are provided at daily resolution on a 0.05° (∼ 5 km) grid, with outputs including daily climatological percentiles, SST anomalies and binary MHW flags with severity category indices. This comprehensive database provides a consistent foundation for detecting and analysing MHWs across time and space, enabling researchers to assess how methodological choices affect MHW characterisation. By offering multiple definitions in parallel, the database facilitates intercomparison studies and supports applications from climate monitoring and model evaluation to marine ecological impact assessment, thereby providing users with pre-made indices for extremes, with the ambition to be rolled out into the future with new data releases. The dataset is available at https://doi.org/10.5281/zenodo.21835325 (Hayward et al., 2026).
The authors' abstract, as published at the source. Earth system science data, 2026 · DOI ↗
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OceanographyEarth and Planetary Sciences