研究方向:防護服裝的熱濕舒適性及著裝人體熱反應(yīng)
? 一作發(fā)表SCI論文4篇,EI論文5篇,中文核心2篇及其他論文,共計15篇;
代表論文如下:
[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區(qū),主要是分析并量化熱輻射環(huán)境中織物濕傳遞能力與熱傳遞的關(guān)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區(qū),適用于熱輻射環(huán)境中考慮皮膚持續(xù)出汗的織物濕態(tài)熱防護性能測評裝置的研發(fā))
[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區(qū),適用于高熱阻消防服的熱生理反應(yīng)預(yù)測模型的修正與量化分析)
[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(已錄用)
[5] 張文歡,江舒,李俊.羽絨服裝系統(tǒng)的面積因子預(yù)測及適用性分析[J].紡織學(xué)報,2022,43(11):148-153.
[6] 張文歡,李俊. 低熱輻射環(huán)境中消防服系統(tǒng)內(nèi)熱傳遞機制的研究進展[J]. 紡織學(xué)報, 2021, 42(10): 190-198.
[7] 張文歡,錢曉明,范金土等.成年*性各部位非顯性出汗率的比例關(guān)系[J].紡織學(xué)報,2018,39(06):119-124.
[8] 張文歡,錢曉明,師云龍等.服裝局部熱阻與總熱阻的動靜態(tài)關(guān)系及其模型[J].紡織學(xué)報,2018,39(07):111-115.
[9] 張文歡,錢曉明,范金土等.人體出汗率分布的研究進展[J].紡織學(xué)報,2018,39(08):179-184.
[10] 張文歡,錢曉明,范金土等.人體出汗率的測量方法[J].紡織導(dǎo)報,2018(02):87-90.
[11] 張文歡,錢曉明,牛麗.服裝熱阻、濕阻的測量方法及影響因素[J].絲綢,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.