Abstract

The present study investigated total and local thermal insulations of 39 sets of male Chinese ethnic costumes. Total and local clothing area factor, air gap size and air volume were determined by a 3D body scanner. Relationships between thermal insulation and air gap for the whole body, as well as local body parts, were explored. Correlations of both the total and local clothing area factor with the intrinsic insulation were also developed. Results demonstrated that the clothing total thermal insulation first increased with the increasing air gap size/air volume, followed by a decrease when the air gap size/air volume exceeded 37.8 mm/55.8 dm3. Similarly, it was also found that parabolic relationships widely existed between the local thermal insulation and local air gap at each body part. Our research findings provide a comprehensive database for predicting both global and local thermal comfort of male Chinese minority groups.

Highlights

  • Thermal insulation plays an important role in determining clothing’s thermal comfort and human thermal stress [1,2]

  • The clothing thermal insulation firstly increased with the air gap size, and it started to decrease as the air gap size exceeded a certain value, e.g., 7–8 mm [15,16]

  • The air volume lies in the range of 23.0~93.1 dm3, the average air gap ranges is 15.0~51.4 mm, and the clothing area factor is in the range of 1.11~1.70

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Summary

Introduction

Thermal insulation plays an important role in determining clothing’s thermal comfort and human thermal stress [1,2]. The clothing thermal insulation firstly increased with the air gap size (which was estimated by a circumference model), and it started to decrease as the air gap size exceeded a certain value, e.g., 7–8 mm [15,16]. This was mainly due to the occurrence of natural/forced convection within the clothing microclimate. Lu et al [12,19] quantified

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