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February 12, 2026Architecture0 citationsOpen Access

A Comparative Study of Indoor Thermal Comfort in Traditional and Contemporary Houses in Erbil’s Hot–Dry Climate

SIShilan Tariq IbrahimSalahaddin University-ErbilHAHardi K. AbdullahSalahaddin University-Erbil

Key Points

  • The study aims to evaluate and compare indoor thermal comfort in traditional versus contemporary houses in a hot-dry climate.
  • Conducted field measurements of indoor thermal conditions.
  • Developed a custom EnergyPlus Weather (EPW) file for local climate data.
  • Applied the adaptive comfort model for traditional houses and PMV-PPD model for contemporary houses.
  • Used Ladybug Tools for year-round computational simulations.
  • Validated simulation results against actual field measurements.
  • Traditional houses maintained acceptable thermal comfort levels within adaptive limits.
  • Contemporary houses showed persistent overheating and high discomfort indices.
  • Thermal performance issues in contemporary housing are linked to architectural design rather than modeling errors.

Abstract

Contemporary housing design practices in Erbil’s hot–dry climate remain understudied with respect to indoor thermal comfort performance. This study evaluates indoor thermal comfort in traditional and contemporary dwellings in Erbil, Iraq, a hot–dry climate characterized by extreme summer conditions. An integrated methodology combining field measurements, locally calibrated climatic data, and validated computational simulation was applied to representative case studies. Indoor thermal comfort parameters were monitored, and a custom EnergyPlus Weather (EPW) file was developed to capture local climatic conditions. Year-round computational simulations were conducted using the Ladybug Tools workflow. Indoor thermal comfort was evaluated using the adaptive comfort model for the naturally ventilated traditional courtyard house and the PMV–PPD model for contemporary air-conditioned dwellings, in accordance with ASHRAE 55 Standard. Validation of the computational simulations against field measurements confirmed close agreement between the measured and simulated results. The findings indicate that the traditional house consistently achieved acceptable thermal comfort within adaptive comfort limits, while contemporary houses experienced persistent overheating and elevated discomfort indices. These results demonstrate that thermal underperformance in contemporary housing is primarily driven by architectural and envelope design rather than modeling uncertainty. The study highlights the effectiveness of vernacular, climate-responsive strategies and suggests their integration into sustainable house design in hot–dry regions.

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Cite This Study

Ibrahim et al. (2026) studied this question.

synapsesocial.com/papers/698d6edc5be6419ac0d54ae8https://doi.org/10.3390/architecture6010027
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