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Thermal Performance of Earthen Architecture in Ushaiger, Saudi Arabia: A Pilot Digital-Twin Feasibility Study

Author

Listed:
  • Silvia Mazzetto

    (Sustainable Architecture Laboratory, Department of Architecture, College of Architecture and Design, Prince Sultan University, Riyadh 12435, Saudi Arabia)

  • Mohammed Mashary Alnaim

    (Department of Architectural Engineering, College of Engineering, University of Hail, Hail 81422, Saudi Arabia)

Abstract

This study presents a pilot methodological investigation of the thermal performance of a Najdi mudbrick dwelling in Ushaiger, Saudi Arabia, using short-term field monitoring and a preliminary digital-twin inspired workflow. Two field campaigns in August and September 2025 measured indoor and outdoor conditions with a portable weather station under severe site constraints, including lack of electrical infrastructure, restricted access, and the use of consumer-grade sensors. The monitored results indicate that the massive earthen walls attenuated part of the outdoor daily temperature swing, but indoor conditions remained very hot: in August, indoor temperatures averaged 38.1 °C, compared with 40.2 °C outdoors, and in September, indoor temperatures averaged 36.3 °C, compared with 36.1 °C outdoors. A simplified IDA ICE model was compared with the monitored indoor temperature over the available windows, and a post-processing affine bias adjustment was tested only as a diagnostic short-window correction rather than as a transferable calibration. Monte Carlo sensitivity analysis was used in an exploratory way. It examined how passive envelope and boundary-related parameters influenced simulated indoor relative humidity, with infiltration emerging as the dominant factor affecting relative humidity dynamics; peak indoor relative humidity increased from about 67% at 0.15 air changes per hour (ACH) to more than 74% at 0.60 ACH, whereas wall thickness had a modest buffering effect. Given the short monitoring duration and field limitations, the study is not presented as a fully validated digital twin but as a feasibility-oriented workflow that combines constrained in situ monitoring with exploratory simulation to support future, longer-term conservation and adaptive reuse research on earthen heritage in hot–arid climates.

Suggested Citation

  • Silvia Mazzetto & Mohammed Mashary Alnaim, 2026. "Thermal Performance of Earthen Architecture in Ushaiger, Saudi Arabia: A Pilot Digital-Twin Feasibility Study," Sustainability, MDPI, vol. 18(7), pages 1-32, April.
  • Handle: RePEc:gam:jsusta:v:18:y:2026:i:7:p:3634-:d:1915328
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