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September 27, 2025Earth4 citationsOpen Access

Observational Evidence of Intensified Extreme Seasonal Climate Events in a Conurbation Area Within the Eastern Amazon

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ESEveraldo Barreiros de SouzaDFDouglas Batista da Silva FerreiraASAna Paula Paes dos Santos

Key Points

  • Significant climate shifts include a 1.5 °C increase in dry-season temperatures, indicating severe warming.
  • Analysis shows a 20% forest loss coupled with rapid urban expansion of 84% in the Eastern Amazon since 1985.
  • Multivariate analyses reveal that land-climate interactions peak during dry seasons, stressing surface-atmosphere linkages.
  • Findings suggest that enhanced conservation and green infrastructure are essential for mitigating climate risks in these urbanized regions.

Abstract

This study presents an integrated assessment of four decades (1985–2023) of environmental and climate alterations in the principal metropolitan conurbation of the eastern Brazilian Amazon, encompassing Belém and its adjacent municipalities. By combining high-resolution land use/land cover (LULC) dynamics with in situ meteorological data, including understudied elements, such as relative humidity (RH) and wind speed, and satellite-derived precipitation estimates (CHIRPS v3), we advance the scientific understanding of regional climate trends. Our results document significant climate shifts, including pronounced dry-season warming (+1.5 °C), atmospheric drying (−4% in RH), attenuated wind patterns (−0.4 m s−1), and altered precipitation regimes, which exhibit strong spatiotemporal coupling with extensive forest loss (−20%) and rapid urban expansion (+84%) between 1985 and 2023. Multivariate analyses reveal that these land–climate interactions are strongest during the dry regime, underscoring the role of surface–atmosphere feedbacks in amplifying regional changes. Comparative analysis of past (1980–1999) and present (2005–2024) decades demonstrates a marked intensification in the frequency and magnitude of extreme seasonal climate events. These findings elucidate a critical feedback mechanism that exacerbates climate risks in tropical urban areas. Consequently, we argue that mitigation public policies must prioritize the strict conservation of peri-urban forest fragments (vital for moisture recycling and local climate regulation) and the strategic implementation of green infrastructure aligned with prevailing wind patterns to enhance thermal comfort and resilience to hydrological extremes.

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Cite This Study

Souza et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3e2eebfec0fc5236bbbhttps://doi.org/10.3390/earth6040112
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