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Publication list

  1. 1. Publication list Updated in April 2012Journal publications (*corresponding author)Papers in preparation or submitted1. Wang F.*, Gao, C., Kuklane, K., & Holmér, I. Effects of various functional clothing and environment conditions on heat strain: the PHS model revisited. Physiological Measurement2. Zhao, M., Gao, C., Wang, F., Kuklane, K., Holmér, I., & Li, J. Local cooling of garments with ventilations and openings placed at different torso sites. International Journal of Industrial Ergonomics(ERGON-D-12-00125)3. Zhao, M., Gao, C., Wang, F., Kuklane, K., Holmér, I., & Li, J. Cooling benefit of various vests: from a sweat evaporation perspective. Textile Research Journal (TRJ-12-0119)4. Lin, L.Y., Wang, F. *, Gao, C., Kuklane, K., Holmér, I., & Zhao, M. A laboratory validation study of the comfort and limit temperatures of four sleeping bags defined according to EN 13537(2002). Applied Ergonomics (JERG-D-12-00075)Papers accepted or in press5. Gao, C., Kuklane, K., Wang, F., & Holmér, I. (2012). Personal cooling with phase change materials to improve thermal comfort from a heat wave perspective. Indoor Air, doi: 10.1111/j.1600-0668.2012.00778.x.6. Wang, F.*, del Ferraro, S., Lin, L., Mayor, T. S., Molinaro, V., Ribeiro, M., Gao, C., Kuklane, K., & Holmér, I. (2012). Localised boundary air layer and clothing evaporative resistance for individual body segments. Ergonomics, doi: 10.1080/00140139.2012.668948. RESEARCH HIGHLIGHT ARTICLE, April 20127. Wang, F.*, & Kuklane, K. (2012). Comments on “Correction of the evaporative resistance of clothing by the temperature of skin fabric on a sweating and walking thermal manikin”. Textile Research Journal, doi: 10.1177/0040517511439944. letter, in press8. Kuklane, K., Gao, C., Wang, F., & Holmér, I. (2012). European manikin standards and models to calculate thermal insulation. International Journal of Occupational Safety and Ergonomics (JOSE) in press9. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2012). Erratum to: Effect of temperature difference between manikin and sweating skin surfaces on clothing evaporative resistance: how much error is there? International Journal of Biometeorology, doi:10.1007/s00484-011-0512-8.Published in 201210. Wang, F*. (2012). Comments on “Importance of air spaces when comparing fabric thermal resistance”. Textile Research Journal, 82(5): 521, doi:10.1177/0040517511433154. letter11. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2012). Effect of temperature difference between manikin and sweating skin surfaces on clothing evaporative resistance: how much error is there? International Journal of Biometeorology, 56(1): 177-182, doi:10.1007/s00484-011-0411-z.Published in 201112. Wang, F*. (2011). Physiological model controlled sweating thermal manikin: can it replace human subjects? Journal of Ergonomics, 1(1): e103, doi:10.4172/jer.1000e103. editorial13. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2011). Determination of clothing evaporative resistance on a sweating thermal manikin in an isothermal condition: heat loss method or mass loss method? Annals of Occupational Hygiene, 55(7), 775-783, doi:10.1093/annhyg/mer034.14. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2011). Can the PHS model predict reasonable human thermophysiological responses while wearing protective clothing in hot environments? Physiological Measurement, 32(2), 239-249, doi:10.1088/0967-3334/32/2/007.15. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2011). Development and validation of an empirical equation to predict wet fabric skin surface temperature of thermal manikins, Journal of Fiber Bioengineering and Informatics, 3(1), doi: 10.3993/jfbi06201002.Published in 2010
  2. 2. Publication list Updated in April 201216. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2010). A review on technology of personal heating garments, International Journal of Occupational Safety and Ergonomics (JOSE), 16(3), 387-404.17. Wang, F.*, Gao, C., & Holmér, I. (2010). Effects of air velocity and clothing combination on heating efficiency of an electrically heated vest (EHV): a pilot study. Journal of Occupational and Environmental Hygiene, 7(9), 501-505, doi: 10.1080/15459624.2010.486696.18. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2010). Development and validation of a universal equation to predict sweating skin surface temperature for thermal manikins. Journal of Thermal Biology, 35(4), 197-203, doi: 10.1016/j.jtherbio.2010.03.004. Top 5 MOST READ AND DOWNLOADED ARTICLE, March 201219. Wang, F.*, Ji, E., Zhou, X., & Wang, S. (2010). Empirical equations for intrinsic and effective evaporative resistances of multi-layer clothing ensembles, Industria Textila, 61(4), 176-180.20. Wang, F.*, & Wang, S. (2010). Characterization on pore size of honeycomb-patterned micro- porous PET fibers using image processing techniques, Industria Textila, 61(2), 66-69.21. Wang, F.*, & Lee, H. (2010). Evaluation of an Electrically Heated Vest (EHV) Using Thermal Manikin in Cold Environments, The Annals of Occupational Hygiene, 54 (1), 117-124, doi: 10.1093/annhyg/mep073.22. Wang, F*. (2010). Comparisons on Thermal and Evaporative Resistances of Kapok Coats and Traditional Down Coats. Fibres & Textiles in Eastern Europe, 18 (1), 75-78.Published in 200923. Wang, F.*, Zhou, X., & Wang, S. (2009). Development processes and property measurements of moisture absorption and quick dry fabrics. Fibres & Textiles in Eastern Europe, 17(2), 46-49. THE MOST CITED ARTICLE FOR 2008-2012 (1/393, from Web of Science)24. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2009). A study on evaporative resistance of two new fabric skins designed for thermal manikin Tore under different environmental conditions, Journal of Fiber Bioengineering and Informatics (JFBI), 1(4), 301-305, doi: 10.3993/jfbi03200908.Published in 200825. Wang, F.*, Zhou, X., Wang, S. (2008). Water transport models of moisture absorption and sweat discharge yarns. Journal of Donghua University (English Edition), 25(5), 594-596.26. Wang, F.*, Hu, F., Zhou, X, & Wang, S. (2008). Development and property study on micro-porous polyester fabrics. Cotton Textile Technology, 36(4):10-13. in Chinese (English abstract)27. Hu, F., Wang, F., Zheng, Z., Lu, M., & Zhou, X. (2008). Manufacturing and property of fabrics made from micro-porous staple polyester fiber. Journal of Textile Research, 29(3), 17-20. in Chinese(English abstract)Published in 200728. Wang, F.*, Ji, E., Zheng, Z., Zhao, X., & Wang, S. (2007). Prediction of the heat and moisture transfer property of multi-layer garments. Journal of Suzhou University (Engineering Science Edition), 27(6), 1-6. in Chinese(English abstract)29. Wang, F.*, Hu, F., Zhou, X., & Wang, S. (2007). Moisture transmission models of moisture absorption and sweat discharge fibers. Journal of Qingdao University (Engineering & Technology Edition), 22(3), 23-27. in Chinese(English abstract)30. Wang, F.*, Hu, F., Zhou, X., Fan, J., & Wang, S. (2007). A report on the thermal and moisture transfer through the samples of clothes on a perspiring fabric thermal manikin “Walter”. Modern Textile Technology, 15(6), 31-34. in Chinese(English abstract)Conference proceedings (*presenter)Published in 20121. Wang, F.*, Li, L. Y., Kuklane, K., Gao, C., Holmér, I., & Zhao, M. (2012). Validation of the physiological model of sleeping bags defined in EN13537 (2002). The 9th International Thermal Manikin and Modeling Meeting (9I3M), Tokyo, Japan, Aug. 21-24, 2012. accepted
  3. 3. Publication list Updated in April 20122. Wang, F.*, Psikuta, A., & Rossi, R. (2012). Effect of body motion and wind on the thermal comfort properties evaluated using manikin with realistic gait pattern. The 9th International Thermal Manikin and Modeling Meeting (9I3M), Tokyo, Japan, Aug. 21-24, 2012. accepted3. Gao, C.*, Wang, F., & Sakoi, T. (2012). Ventilated evaporative cooling as a preventive measure when confronted with a hot climate. The 5th European Conference on Protective Clothing and NOKOBETEF 10(ECPC), Valencia, Spain, May 29-31, 2012. poster4. Zhao, M.†, Wang, F.*†, & Gao, C. (2012). Cooling vest incorporated with phase change materials (PCMs): how much benefit is there? The 5th European Conference on Protective Clothing and NOKOBETEF 10(ECPC), Valencia, Spain, May 29-31, 2012. poster (†contributed equally)5. Mayor, T.S.*, Wang, F., Léonard, J., & Ribeiro, M. (2012). An interlaboratory study on measurements of clothing evaporative resistance with thermal manikins. The 5th European Conference on Protective Clothing and NOKOBETEF 10 (ECPC), Valencia, Spain, May 29-31, 2012. oral presentation6. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2012). A comparison of three different calculation methods for clothing evaporative resistance. The 5th European Conference on Protective Clothing and NOKOBETEF 10 (ECPC), Valencia, Spain, May 29-31, 2012. oral presentation7. Wang, F. (2012). Heat stress issues related with clothing: prediction and solution. A Metalund (Medicine and technology for working life and society at Lund University) seminar at Lund University, Jan. 2012. invited talkPublished in 20118. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2011). The predicted heat strain model (ISO7933) severely over- or underestimated core and skin temperature in protective clothing and light summer clothing. In: Albin, M. et al. (eds.) The Work Environment-Impact of Technological, Social and Climate Change: The 55th Nordic Work Environment Meeting (NAM 2011), Lund, Sweden, Oct.17-19, 2011, pp.91, ISBN: 978-91-85971-32-9, Gothenburg: Arbete och Hälsa press. oral presentation9. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2011). Determination of localized/regional clothing evaporative resistance on thermal manikins. Young Researchers Forum, the 4th International Conference on Human-Environment System (ICHES 2011), Hokkaido University, Sapporo, Japan, Oct. 3-6, 2011. invited talk10. Gao, C.*, Wang, F., & Sakoi, T. (2011). Ventilated evaporative cooling as a preventive measure when confronted with climate changes. In: Albin, M. et al. (eds.) The Work Environment-Impact of Technological, Social and Climate Change: The 55th Nordic Work Environment Meeting (NAM 2011), Lund, Sweden, Oct.17-19, 2011, pp.26, ISBN: 978-91-85971-32-9, Gothenburg: Arbete och Hälsa press. oral presentation11. Gao, C.*, Wang, F., Kuklane, K., & Holmér, I. (2011). Personal cooling with phase change materials in a very hot environment. Proceedings of the 4th International Conference on Human- Environment System (ICHE 2011), Hokkaido University, Sapporo, Japan, Oct. 3-6, 2011. oral presentation12. Wang, F.*, Ribeiro, M., Mayor, T. S., Lin, L., del Ferraro, S., Molinaro, V., Gao, C., Kuklane, K., & Holmér, I. (2011). Localized evaporative resistance: correction for body and air movements. Proceedings of the 14th International Conference on Environmental Ergonomics (ICEE), Nafplio, Greece, July 10-15, 2011, pp.356-359. oral presentation13. Gao, C.*, Kuklane, K., Wang, F., & Holmér, I. (2011). Personal cooling with phase change materials to improve thermal comfort from a global warming perspective. Proceedings of the 14th International Conference on Environmental Ergonomics (ICEE), Nafplio, Greece, July 10-15, 2011, pp.72. oral presentation14. Wang, F. (2011). Electrically heated clothing and air kinetic clothing. A Theme day for Swedish industrial companies on Personal Protective Equipment (Heat and cold in personal protective equipment - smart solutions for improving comfort), Mar. 2011. invited talkPublished in 201015. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2010). Effect of different fabric skin combinations on predicted skin temperature on a thermal manikin. Proceedings of the 2nd International
  4. 4. Publication list Updated in April 2012 Conference on Advanced Textiles Materials & Manufacturing Technology, Hangzhou, China, Oct.20-24, 2010, pp.184-186. ISBN: 978-7-308-07958-7, Hangzhou: Zhejiang University Press. poster, peer-reviewed16. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2010). Development of empirical equations to predict sweating skin surface temperature for thermal manikins in warm environments. Proceedings of the 8th International Thermal Manikin and Modeling Meeting (8I3M), Victoria, Canada, Aug. 22-26, 2010. oral presentation17. Wang F.*, Gao, C., Kuklane, K., & Holmér, I. (2010). Does PHS model predict acceptable skin and core temperatures while wearing protective clothing? Proceedings of the 8th International Thermal Manikin and Modeling Meeting (8I3M), Victoria, Canada, Aug.22-26, 2010. oral presentation18. Kuklane, K.*, Gao, C., Wang, F., & Holmér, I. (2010). European manikin standards and serial calculation model in THEM. Proceedings of the 8th International Thermal Manikin and Modeling Meeting (8I3M), Victoria, Canada, Aug.22-26, 2010. oral presentation19. Wang, F.*, Kuklane, K., Gao, C., & Holmér, I. (2010). Development and validation of an empirical equation to predict sweating skin surface temperature for thermal manikins, In: Li, Y. et al. (eds.) Textile Bioengineering and Informatics Symposium Proceedings (TBIS 2010), Shanghai, China, May 28-30, 2010, pp.1225-1230, ISSN: 1942-3438, Hong Kong: Textile Bioengineering and Informatics Society Limited, doi:10.3993/tbis2010215. oral presentation, peer-reviewedPublished in 200920. Wang, F.*, Gao, C., & Holmér, I. (2009). Effects of air velocity and clothing combination on the heating efficiency of an electrically heated vest (EHV), In: Castellani, J.W. and Endrusick, T.L. (eds.) Proceedings of the 13th International Conference on Environmental Ergonomics, Boston, Massachusetts, USA, Aug. 2-5, 2009, pp.88-92, ISBN: 978-1-74128-179-8, Wollongong: University of Wollongong Publishing. oral presentation21. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2009). A study on evaporative resistance of two new skins designed for thermal manikin ‘Tore’ under different environmental conditions, In: Li, Y. et al. (eds.) Proceedings of Textile Bioengineering and Informatics Symposium (TBIS 2009), Hong Kong SAR, China, July 26-29, 2009. pp. 211-215, ISSN: 1942-3438, Hong Kong: Textile Bioengineering and Informatics Society Limited, doi:10.3993/tbis2009039. poster, peer-reviewed22. Wang, F*. (2009). Comparisons on thermal and evaporative resistances of traditional down coats and kapok coats. The 4th European Conference on Protective Clothing and NOKOBETEF 9(ECPC), Arnhem, Netherlands, June 10-12, 2009. oral presentation, peer-reviewed23. Wang, F.*, Gao, C., Kuklane, K., & Holmér, I. (2009). A study on evaporative resistance of two new skins designed for thermal manikin “Tore” under different environmental conditions. The 4th European Conference on Protective Clothing and NOKOBETEF 9(ECPC), Arnhem, Netherlands, June 10-12, 2009. poster, peer-reviewed24. Holmér, I.*, Gao, C., & Wang, F. (2009). Can a vest provide 83 clo? – Serial calculation method revisited. The 4th European Conference on Protective Clothing and NOKOBETEF 9(ECPC), Arnhem, Netherlands, June 10-12, 2009. oral presentation, peer-reviewed25. Holmér, I.*, Gao, C., & Wang, F. (2009). Adaptive strategies to preserve comfort in cold rooms-is personal warming an alternative? Proceedings of Cold Climate HVAC, Sisimiut, Greenland, Mar. 16-19, 2009. posterPublished in 2008 or before26. Wang, F. (2008). A comparative introduction on thermal manikins “Newton” and “Walter”. Proceedings of the 7th International Thermal Manikin and Modeling Meeting (7I3M), Coimbra, Portugal, Sept. 3-5, 2008, pp.1-5. oral presentation, cited: 427. Wang, F.*, Ji, E., Zhou, X., & Wang, S. (2008). Prediction of the heat and moisture transfer properties of multi-layer garments. In: Bai, L. (ed.), Research and Progresses on Modern Technology of Silk, Textile and Mechanicals I: the 6th China International Silk Conference, Suzhou, China, Sept. 11-13, 2007, pp.317-321, ISBN: 978-7-122-01157-2, Beijing: Chemical Industry Press. poster, peer-reviewed
  5. 5. Publication list Updated in April 201228. Hu, F.*, Wang, F., Zheng, Z., & Zhou, X. (2008). Preparation and performance of the water transmission fabric without treated with hydrophilic additives. In: Bai, L. (ed.), Research and Progresses on Modern Technology of Silk, Textile and Mechanicals I: the 6th China International Silk Conference, Suzhou, China, Sept. 11-13, 2007, pp.358-361, ISBN: 978-7-122-01157-2, Beijing: Chemical Industry Press. poster, peer-reviewed29. Wang, F.*, Hu, F., Zhou, X., Fan, J., & Wang, S. (2008). A report on thermal and moisture transfer through clothing ensembles using a perspiring fabric thermal manikin. Proceedings of the 35th Textile Research Symposium, Hangzhou, China, Aug. 24-25, 2006, pp.500-503, ISBN: 978-7- 89490-343-3, Hangzhou: Zhejiang University Press. poster, peer-reviewedTechnical reports1. Wang, F., Gao, C., Kuklane, K., & Holmér, I. (2011). A report for the Taiwan Textile Research Institute (TTRI) contract entitled “A laboratory study on various sleeping bags using a thermal manikin and human subjects”.2. Wang, F., Kuklane, K., Gao, C., & Holmér, I. (2010). A report for a VINNOVA (Swedish Government Agency for Innovation Systems) and Taiga AB joint project entitled “Development of clothing for extreme environments and assessment model of thermal protection for different work situations”.3. Wang, F. (2010). A report for the Taiwan Textile Research Institute (TTRI) contract entitled “Evaluation of various functional cold protective clothing using a dry heated thermal manikin”.4. Gao, C., Kuklane, K., Wang, F., & Holmér, I. (2010). A report for a VINNOVA (Swedish Government Agency for Innovation Systems) and TST Sweden joint project titled “Cooling and heating effects of intelligent clothing with phase change materials (PCMs) on thermal manikin and on human body”.Book chapters & theses1. Wang, F. (2012). Chapter 20: The use of textiles in protective military footwear. In: Luximon, A. (ed.) Handbook of Footwear Design and Materials, Cambridge: Woodhead Publishing. scheduled in 20122. Wang, F. (2011) Clothing evaporative resistance: its measurements and application in prediction of heat strain. Lund: Media-Tryck Press, ISBN: 978-91-7374-158-3, Nov. 2011.3. Wang, F. (2010). Evaluation of the performances of electrically heated clothing. Lund: E-huset Tryckeri Publishing, ISBN: 978-91-7473-016-6, Aug. 2010.Popular science1. Wang, F. (2011). Kapok fiber: an alternative to down fiber. A popular article for the communicating science course organized by the Faculty of Engineering at Lund University.

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