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Issue title: Comfort: Papers from the 2019 International Comfort Congress
Guest editors: Peter Vink, Susanne Frohriep, Neil Mansfield, Alessandro Naddeo and Karen Jacobs
Article type: Research Article
Authors: Gentner, Alexandrea; * | Gradinati, Giulianob | Favart, Carolea | Gyamfi, Kojo Sarfoc | Brusey, Jamesc
Affiliations: [a] Advanced Technology, Toyota Motor Europe R&D, Hoge Wei, Zaventem, Belgium | [b] Technology Consulting and Engineering, Alten Belgium, Chaussée de Charleroi, Brussels, Belgium | [c] Faculty of Engineering and Computing, Coventry University, Coventry, United Kingdom
Correspondence: [*] Address for correspondence: Alexandre Gentner, Advanced Technology, Toyota Motor Europe R&D, Hoge Wei 33, 1930 Zaventem, Belgium. Tel.: +3227121526; E-mail: [email protected].
Abstract: BACKGROUND:For passengers in private or public transportation systems, comfort is a major interest. Available comfort models are already used to correlate thermal comfort to influencing factors. However, the available models do not other sensory comfort aspect and specific influences as fragrances and ambient light. OBJECTIVE:This publication investigates the impact of fragrances with “warm” and “cold” associated meanings on thermal and overall comfort perception. METHODS:Human subject trials (n = 47) were performed in different temperature-controlled environments following a 3×3 within-subject design considering ambient fragrance (“neutral scent”, “peppermint”, “orange & cinnamon”) and ambient light as variables. RESULTS:Olfactory comfort is shown to have the larger effect on overall comfort perception, comparable in weight to the one of thermal comfort. The impact observed on thermal sensation was in line with the meanings associated the fragrances, whereas it was positive on thermal comfort appreciation regardless of the type of fragrance diffused. CONCLUSIONS:These initial results suggest that olfactory stimulations have the potential to positively impact thermal and overall comfort. The appreciation of the fragrance appears to have a major impact on these interactions and should be deeply considered in future research and features development.
Keywords: Overall comfort, olfactory comfort, thermal comfort, fragrance diffusion, automotive context
DOI: 10.3233/WOR-208009
Journal: Work, vol. 68, no. s1, pp. S101-S110, 2021
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