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June 19, 2026Ecological IndicatorsOpen Access

A process-oriented framework integrating DPSR and NESH for spatially explicit urban flood resilience assessment

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Authors

DDDanyang DiJLJie LiHHHao Hu

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Overview

Randomized trial evaluates flood resilience in urban settings, suggesting a robust framework for mitigation strategies.

Key Points

  • This study aims to develop a framework for assessing urban flood resilience by integrating DPSR and NESH models.
  • The framework integrates Driving force–Pressure–State–Response (DPSR) and Natural–Economic–Social–Hazard (NESH) models.
  • Applied to Zhengzhou City, China, evaluating multiple rainfall scenarios with dynamically weighted indicators.
  • Analysis includes identifying spatial resilience patterns and vulnerable zones.
  • Driving force resilience is moderate, lower in central districts under moderate rainfall (0.592), decreases to 0.538 under extreme events.
  • State resilience shows a ring-shaped spatial distribution; pressure resilience declines with higher rainfall intensity.
  • Grey-green infrastructure interventions reduce flood risk significantly under moderate rainfall, but effectiveness lessens under extreme conditions.

Cite This Study

Di et al. (2026) studied this question.

synapsesocial.com/papers/6a34dc5265a5b0777af2c9f0https://doi.org/10.1016/j.ecolind.2026.115075
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