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A global downstream approach to mapping surface urban heat islands using open data and collaborative technology

2025/10/28 by Chiara Richiardi, Letizia Caroscio, Edoardo Crescini +6 · 1 voice
Earth and Planetary Sciences · Environmental Science · #Climate Change and Health Impacts #Climate change and permafrost #Urban Heat Island Mitigation

paper · doi:10.1016/j.susgeo.2025.100006

openalex publication_date 2025/10/28 · openalex created_date 2025/10/29 · openalex updated_date 2026/07/28

Abstract

This paper presents a fully automated, open-source workflow for mapping and analysing Surface Urban Heat Island Intensity (SUHII) in urban areas. The method integrates freely available Earth Observation datasets, including Landsat imagery and SRTM elevation data, and ensures generalizability across diverse landscapes by analysing homogeneous altitudinal zones. This avoids over- or underestimation of thermal anomalies due to elevation differences. The pipeline requires only a city name and a local folder path as inputs, producing standardized warm-season Land Surface Temperature and SUHII maps in GeoTIFF format with full metadata. Developed in modular R and Python environments, the code supports easy adaptation, dataset integration, and deployment in web or desktop applications. Designed to lower technical barriers, the platform merges technical and experiential knowledge through citizen participation, enabling non-experts to explore urban thermal anomalies and their social and health implications. This approach fosters equitable climate adaptation and environmental justice by making climate-relevant spatial data accessible and actionable for citizens, researchers, and decision-makers. • A bottom-up project born from the encounter between science and activism, to foster knowledge and empower society. • A standardised, automated workflow to map Surface Urban Heat Island Intensity by leveraging globally available open data. • Mid-latitude cities are among the most vulnerable to Surface Urban Heat Island effects.

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