研究方向:防护服装的热湿舒适性及着装人体热反应
一作发表SCI论文4篇,EI论文5篇,中文核心2篇及其他论文,共计15篇;
代表论文如下:
[1] Zhang W, Su Y, Li J. Influences of moisture management performance and continuous sweat rate on heat transfer through firefighting clothing under radiant exposure[J]. International Journal of Thermal Sciences, 2023, 192: 108401.(1作,2区,主要是分析并量化热辐射环境中织物湿传递能力与热传递的关系)
[2] Zhang W, Su Y, Li J. Developing a test device to analyze heat transfer combined with radiant exposure and continuous liquid sweating through thermal protective clothing. Journal of Industrial Textiles. 2023, 53: 1-33. (1作,3区,适用于热辐射环境中考虑皮肤持续出汗的织物湿态热防护性能测评装置的研发)
[3] Zhang W, Huang Q, Li J. The predicted heat strain model considering wet and dynamic thermal insulation for thermal protective clothing: Modification and validation analysis[J]. Textile Research Journal, 2022, 92(23-24): 4563-4575. (1作,3区,适用于高热阻消防服的热生理反应预测模型的修正与量化分析)
[4] Zhang W, Su Y, Li J. The comparison between the human physiological sweat and prewet method on the heat and mass transfer of thermal protective clothing under radiant exposure[J]. Textile Research Journal(已录用)
[5] 张文欢,江舒,李俊.羽绒服装系统的面积因子预测及适用性分析[J].纺织学报,2022,43(11):148-153.
[6] 张文欢,李俊. 低热辐射环境中消防服系统内热传递机制的研究进展[J]. 纺织学报, 2021, 42(10): 190-198.
[7] 张文欢,钱晓明,范金土等.成年*性各部位非显性出汗率的比例关系[J].纺织学报,2018,39(06):119-124.
[8] 张文欢,钱晓明,师云龙等.服装局部热阻与总热阻的动静态关系及其模型[J].纺织学报,2018,39(07):111-115.
[9] 张文欢,钱晓明,范金土等.人体出汗率分布的研究进展[J].纺织学报,2018,39(08):179-184.
[10] 张文欢,钱晓明,范金土等.人体出汗率的测量方法[J].纺织导报,2018(02):87-90.
[11] 张文欢,钱晓明,牛丽.服装热阻、湿阻的测量方法及影响因素[J].丝绸,2017,54(05):43-50.
[12] Zhang W, Li J. Numerical Model of Thermal Responses in Human Skin under Low-Level Radiant Exposure[J]. Journal of Donghua University (English Edition), 2022, 39(04): 408-412.
[13] Zhang W, Li J. Comparison of the Modified Predicted Heat Strain and the Fiala Model and Its Application on Thermal Protective Clothing[C]. The Fiber Society’s 2022 Fall Meeting and Technical Conference, 2022.
[14] Zhang W, Li J. Effect of Radiative Heat Source Temperature and Exposure Distance on Heat Transfer in Firefighting Rescues[C]. Textlile Bioengineering and Informatics Sympostum, 2023.
[15] Zhang W, Li J. Key Factors Affecting the Radiant Protective Performance of Fabrics Under Continuous Sweating[C]. 2023 International Conference on Advanced Textile Science and Technology & World Textile University Alliance Annual Meeting, 2023.