声光复合环境下热防护服热舒适测试与设计优化研究OA
Thermal Comfort Testing and Design Optimization of Thermal Protective Clothing in Audio-Visual Compound Environments
传统热防护服热舒适测试对非热因素量化不足.为揭示声光单因素及复合环境对热舒适的调控规律,本研究以热防护服为对象,在人工气候室设置 3 种梯度热环境,结合 VR 构建冷暖关联声光场景,进行生理与主观双模态数据采集.结果表明,VR 辅助热舒适测试双模态数据呈强相关;声光环境对热舒适具有显著影响,光环境调控强度高于声环境;调性一致声光复合环境呈协同效应,冲突组合引发显著测试干扰,为热防护服智能化设计与热舒适测试标准化提供了理论支撑.
Conventional thermal comfort tests for protective clothing are limited by insufficient non-thermal factor quantification.We evaluated clothing in three thermal environments using a precision climate chamber,created congruent/warm-cold audio-visual scenes via VR,collected multimodal physiological and subjective data.Results show VR-assisted testing is highly reliable;audio-visual factors modulate thermal comfort temperature-dependently,with heart rate as the primary mediator(visual>auditory).Congruent audio-visual stimuli produce synergistic effects,whereas incongruent pairs induce significant interference.This enables intelligent design and standardization of thermal protective clothing.
罗涵阳;翟丽娜
浙江理工大学 服装学院,浙江 杭州 310018浙江理工大学 服装学院,浙江 杭州 310018
轻工纺织
热防护服热舒适VR设计优化
thermal protective clothingthermal comfortvrdesign optimization
《鞋类工艺与设计》 2026 (15)
2-4,3
评论