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Original Articles

The influence of a sweat rate on heat losses of the selected segments of a sweating thermal manikin

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Pages 1784-1791 | Received 18 May 2018, Accepted 10 May 2019, Published online: 27 May 2019

References

  • Anttonen, H., Niskanen, J., Meinander, H., Bartels, V., Kuklane, K., Reinertsen, R. E., … Sołtyński, K. (2004). Thermal manikin measurements – Exact or not? Journal of Occupational Safety and Ergonomics (JOSE), 10(3), 291–300. doi:10.1080/10803548.2004.11076616
  • ASTM F2370-16. (2016). Standard test method for measuring the heat removal rate of personal cooling system using a sweating heated manikin.
  • EN 342:2004. (2004). Protection against cold.
  • EN ISO 11092:2014. (2014). Textiles – Physiological effects – Measurement of thermal and water-vapour resistance under steady-state conditions (sweating guarded-hotplate test).
  • EN ISO 15831:2004. (2004). Clothing – Physiological effects – Measurement of thermal insulation by means of a thermal manikin.
  • Fukazawa, T., Lee, G., Matsuoka, T., Kano, K., & Tochihara, Y. (2004). Heat and water vapour transfer of protective clothing systems in a cold environment, measured with a newly developed sweating thermal manikin. European Journal of Applied Physiology, 92(6), 645–648. doi:10.1007/s00421-004-1124-3
  • Gao, C., & Holmer, I. (2006). Initial, transient and steady state evaporative resistance of impermeable protective clothing. In J. Fan (Eds.), Proceedings of the 6th international thermal manikin and modeling meeting (6i3M) (pp. 253–261). Hong Kong, China: Hong Kong Polytechnic University.
  • ISO 9920:2009. (2009). Ergonomics of the thermal environment – Estimation of thermal insulation and water vapour resistance of a clothing ensemble.
  • Koelblen, B., Psikuta, A., Bogdan, A., Annaheim, S., & Rossi, R. (2017). Comparison of fabric skins for the simulation of sweating on thermal manikins. International Journal of Biometeorology, 61(9), 1519–1529. doi:10.1007/s00484-017-1331-3
  • Lu, Y., Kuklane, K., & Gao, Ch. (2017). Types of thermal manikin. In R. Nayak, & R. Padhye (Eds.), Manikins for textile evaluation (pp. 25–54). United Kingdom: Elsevier.
  • Lu, Y., Wang, F., Peng, H., Shi, W., & Song, G. (2016). Effect of sweating set rate on clothing real evaporative resistance determined on a sweating thermal manikin in a so-called isothermal condition (Tmanikin=Ta=Tr). International Journal of Biometeorology, 60(4), 481–488. doi:10.1007/s00484-015-1029-3
  • Matusiak, M., & Sybilska, W. (2016). Thermal resistance of fabrics vs. thermal insulation of clothing made of the fabrics. The Journal of the Textile Institute, 107(7), 842–848. doi:10.1080/00405000.2015.1061789
  • McCullough, E. A. (2001). Interlaboratory study of sweating manikins. In M. Richards (Eds.), Proceedings of the 4th international meeting on thermal manikins (4IMM). St. Gallen, Switzerland, Swiss Federal Laboratories for Materials Testing and Research (EMPA)
  • Meinander, H., & Hellsten, M. (2004). The influence of sweating on the heat transmission properties of cold protective clothing studied with a sweating thermal manikin. International Journal of Occupational Safety and Ergonomics, 10(3), 263–269. (JOSE), doi:10.1080/10803548.2004.11076614
  • Richards, M. G. M., Rossi, R., Meinander, H., Broede, P., Candas, V., den Hartog, E., … Havenith, G. (2008). Dry and wet heat transfer through clothing dependent on the clothing properties under cold conditions. International Journal of Occupational Safety and Ergonomics, 14(1), 69–76. (JOSE), doi:10.1080/10803548.2008.11076750
  • Wang, F. (2017). Measurements of clothing evaporative resistance using a sweating thermal manikin: An overview. Industrial Health, 55(6), 473–484. doi:10.2486/indhealth.2017-0052
  • 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? The Annals of Occupational Hygiene, 55(7), 775–783. doi:10.1093/annhyg/mer034
  • Wang, F., Psikuta, A., Aeberhart, M., Wang, L., Weder, M., & Rossi, R. (2012). Effects of body motion and wind on thermal comfort properties evaluated using a manikin with realistic gait patterns. Proceedings of the 9i3m. Tokyo.
  • Wang, F., Wen, S., Yehu, L., Guowen, S., Rossi, R., & Anaheim, S. (2016). Effects of moisture content and clothing fit on clothing apparent ‘wet’ thermal insulation: A thermal manikin study. Textile Research Journal, 86(1), 57–63. doi:10.1177/0040517515580527
  • Zhao, M., Gao, C., Wang, F., Kuklane, K., Holmer, I., & Li, J. (2013). A study on local cooling of garments with ventilation fans and opening placed at different torso sites. International Journal of Industrial Ergonomic, 43(3), 232–237. doi:10.1016/j.ergon.2013.01.001

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