Evaluation of occupant's adaptive thermal comfort behaviour in naturally ventilated courtyard houses

Peiman Pilechiha, Alireza Norouziasas, Hoorieh Ghorbani Naeini, Kasmir Jolma

Research output: Contribution to journalArticleScientificpeer-review

17 Citations (Scopus)

Abstract

Purpose In vernacular buildings, many climatic and passive solutions have been used to create indoor thermal comfort. Seasonal occupant movement is an example of a traditional response to increasing thermal comfort. This article investigates the influence of these user behaviours on thermal comfort in courtyard houses. Design/methodology/approach Parametric models of three different scenarios of courtyard houses are simulated. The courtyard houses are located in Shiraz, Iran, and share the same orientation and construction materials. To enhance the accuracy of the study, the indoor adaptive thermal comfort (ATC) analysis is performed with three different window-to-wall ratios (WWR) of 25, 50 and 75%. The ACT analysis is performed on an hourly basis for summer and winter scenarios. Findings The results demonstrate that the indoor ATC is 8.3% higher in winter than in the summer in the seasonal zones. During the summer, the amount of ATC is relatively sustained in all zones. Unlike common beliefs, seasonal movement can enhance the ATC, especially during winter, specifically in the northern part of the courtyard. In northern zones, the seasonal movement of occupants improves the indoor ATC from 10.1 to 23.7%, and in southern zones, the improvement is from 2.2 to 4.8%. Originality/value This research presents a new numerical investigation into occupants' seasonal movements in courtyard houses during summer and winter. It provides a precise pattern to show how much this seasonal movement can affect the habitant's ATC.

Original languageEnglish
Pages (from-to)793-811
Number of pages19
JournalSMART AND SUSTAINABLE BUILT ENVIRONMENT
Volume11
Issue number4
Early online date29 Jul 2021
DOIs
Publication statusPublished - 2022
Publication typeA1 Journal article-refereed

Keywords

  • Adaptive thermal comfort
  • Occupant seasonal movement behaviours
  • Courtyard
  • Naturally ventilated building
  • Parametric simulation
  • ENERGY-CONSUMPTION
  • BUILDINGS
  • PERFORMANCE
  • IMPACT
  • OPTIMIZATION
  • OFFICES
  • CLIMATE
  • SUMMER
  • DESIGN

Publication forum classification

  • Publication forum level 1

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