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February 6, 2026Thermal Science0 citationsOpen Access

Moderating thermal load on a multi-residential building block through integrated green roofs

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MSMarija StamenkovićUniversity of Novi SadDMDjurica MarkovicSKSaja KosanovićUniversity of Prishtina

Key Points

  • The study aims to assess how integrating green roofs affects the thermal load and microclimatic conditions of an urban multi-residential block.
  • Simulated microclimatic conditions using ENVI-met software under two scenarios: existing state and integrated green roofs.
  • Analyzed temperature distribution across eight horizontal sections of the urban block.
  • Measured variations in outdoor air temperatures and facade surface temperatures.
  • The integrated green roofs scenario showed a maximum temperature reduction of up to 0.20 °C.
  • Facade surface temperatures decreased by 0.15 to 0.36 °C in the integrated green roofs scenario.
  • Results confirmed the positive impact of green roofs on moderating thermal loads beyond just the roof areas.

Abstract

Urban environments are facing the challenges posed by climate change. As the urban heat island (UHI) effect intensifies, the need for implementing strategies in the context of energy resilience is also growing. The aim of this study was to investigate the impact of integrating green roofs within the existing green infrastructure of an urban area on moderating microclimatic conditions, and consequently the thermal load on buildings. The concept of thermal load is addressed through temperature-based indicators, reflecting the buildings? exposure to outdoor thermal conditions. The microclimatic simulations for the multi-residential urban block (Block 22) in Belgrade were conducted under two scenarios: the ?existing-state? scenario, representing the base condition, and the ?integrated-green-roofs? scenario, representing the implementation of green roofs across all roofing systems. The ENVI-met software was used as a tool for predicting microclimatic conditions, i.e., outdoor air temperatures and fa?ade surface temperatures. The results regarding variations in temperature distribution within the urban block, analyzed through eight horizontal sections, showed slight reductions in the ?integrated-green-roofs? scenario, up to 0.20 ?C in maximum temperatures at the highest section including buildings. Regarding variations in fa?ade surface temperatures, reductions ranged from 0.15 to 0.36?C, also favoring the second scenario. Overall, despite some inconsistencies observed in the study, the indirect positive impact of green roofs in moderating thermal load on entire building envelopes-not only on the roofing systems-was confirmed.

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Cite This Study

Stamenković et al. (2026) studied this question.

synapsesocial.com/papers/698585aa8f7c464f23009446https://doi.org/10.2298/tsci251029010s
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