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  4. Personalized Metabolic Rates Vs. ISO Standards
 
conference paper

Personalized Metabolic Rates Vs. ISO Standards

Sabit, Fariza  
•
Khovalyg, Dolaana  
January 2, 2026
Proceedings of the 15th REHVA HVAC World Congress - CLIMA 2025
15th REHVA HVAC World Congress CLIMA 2025

Metabolic rate is a dynamic process influenced by time of day, ambient conditions, meal type, and individual differences. Using fixed met values for specific activities oversimplifies this complexity and limits accurate metabolic rate estimation. This study challenges the applicability of standard met values in indoor environment design and thermal sensation predictions through PMV models. Controlled experiments were conducted in a climatic chamber with 12 female participants across two days, with room temperatures set at 24 °C on Day 1 and 18 °C on Day 2. Each day included four sessions involving sitting, standing, and walking distributed across the morning and afternoon, with only sitting and standing performed in two sessions. The findings re-vealed substantial interindividual differences in metabolic rate across activities, with ISO values significantly overestimating metabolic rate for standing (up to 0.86 met or 59.1%) and underestimating metabolic rate for walking (up to 1.13 met or 37.3%). Additionally, intraindividual fluctuations in metabolic rate for the same activity were observed, influenced by time of day and room temperature. These variations, over-looked by standard met values, impact thermal comfort predictions. Incorporating these insights into dynamic, personalized thermal comfort systems could improve both occupant comfort and energy efficiency in buildings.

  • Details
  • Metrics
Type
conference paper
DOI
10.1007/978-3-032-06810-1_82
Author(s)
Sabit, Fariza  

École Polytechnique Fédérale de Lausanne

Khovalyg, Dolaana  

École Polytechnique Fédérale de Lausanne

Date Issued

2026-01-02

Publisher

Springer Nature Switzerland

Publisher place

Cham

Published in
Proceedings of the 15th REHVA HVAC World Congress - CLIMA 2025
ISBN of the book

9783032068095

9783032068101

Book part number

Volume 2

Series title/Series vol.

Lecture Notes in Civil Engineering; 763

ISSN (of the series)

2366-2557

2366-2565

Start page

816

End page

824

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
ICE  
Event nameEvent acronymEvent placeEvent date
15th REHVA HVAC World Congress CLIMA 2025

CLIMA 2025

Milan, Italy

2025-06-04 - 2025-06-06

Available on Infoscience
January 5, 2026
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/257523
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