$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

10℃ 환경에서 기류가 겨울철 패딩 의류의 한 벌 보온력에 미치는 영향 -인체 착용 및 서멀마네킹 측정 비교-
Effects of Air Velocity on the Thermal Insulation of Winter-padded Clothing Ensembles at 10℃ Air Temperature -Comparison of Human Wear Trials with a Thermal Manikin- 원문보기

한국의류학회지 = Journal of the Korean Society of Clothing and Textiles, v.45 no.4, 2021년, pp.703 - 713  

백윤정 (서울대학교 4단계 BK21 대학원혁신사업단) ,  조가영 (서울대학교 의류학과) ,  홍유진 (서울대학교 의류학과) ,  이주영 (서울대학교 의류학과)

Abstract AI-Helper 아이콘AI-Helper

This study was to investigate the thermal insulation of clothing ensembles, including padded jackets with two different filling types. Thermal insulation of the ensemble was measured using a thermal manikin in four conditions (10℃, 30% RH and 20℃, 50% RH with an air velocity of less th...

주제어

참고문헌 (43)

  1. Afanasieva, R. F., Bessonova, N. A., Burmistrova, O. V., Burmistrov, V. M., Holmer, I., & Kuklane, K. (2000). Comparative evaluation of the methods for determining thermal insulation of clothing ensemble on a manikin and person. In K. Kuklane., & I. Holmer (Eds.), Ergonomics of protective clothing: Proceedings of NOKOBETEF 6 and 1st European Conference on Protective Clothing held in Stockholm, Sweden, May 7-10, 2000 (pp. 188-191). Stockholm: Arbetslivsinstitutet. 

  2. Baek, Y. J., Hwang, S. K., Lee, H. H., Park, J., Kim, D.-H., & Lee, J.-Y. (2018). Quantification of thermal insulation by clothing items and analysis of influencing factors. Journal of the Korean Society of Clothing and Textiles, 42(1), 172-182. doi:10.5850/JKSCT.2018.42.1.172 

  3. Bouskill, L. M., Haveith, G., Kuklane, K., Parsons, K. C., & Withey, W. R. (2002). Relationship between clothing ventilation and thermal insulation. AIHA Journal, 63(3), 262-268. doi:10.1080/15428110208984712 

  4. Burton, A. C., & Edholm, O. G. (1955). Man in a cold environment. London: Edward Arnold (Publishers) Ltd. 

  5. Choi, J.-W., & Kim, M.-J. (2011). Clothing and health: Clothing physiology functional clothing. Paju: Kyomunsa. 

  6. Choi, J.-W., & Lee, H.-H. (2009). The relationship between weight of single garments and thermal insulation with a thermal manikin. Journal of the Korean Society of Clothing and Textiles, 33(2), 173-186. doi:10.5850/JKSCT.2009.33.2.173 

  7. Hardy, J. D., Du Bois, E. F., & Soderstrom, G. F. (1938). Basal metabolism, radiation, convection and vaporization at temperatures of 22 to 35℃. Six figures. The Journal of Nutrition, 15(5), 477-497. doi:10.1093/jn/15.5.477 

  8. Havenith, G., Heus, R., & Lotens, W. A. (1990). Resultant clothing insulation: A function of body movement, posture, wind, clothing fit and ensemble thickness. Ergonomics, 33(1), 67-84. doi:10.1080/00140139008927094 

  9. Holmer, I., & Nilsson, H. (1995). Heated manikins as a tool for evaluating clothing. The Annals of Occupational Hygiene, 39(6), 809-818. doi:10.1016/0003-4878(95)00041-0 

  10. Holmer, I., Nilsson, H., Havenith, G., & Parsons, K. (1999). Clothing convective heat exchange-proposal for improved prediction in standards and models. The Annals of Occupational Hygiene, 43(5), 329-337. doi:10.1093/annhyg/43.5.339 

  11. International Organization for Standardization (2007a, June). ISO 9920:2007 Ergonomics of the thermal environment - Estimation of thermal insulation and water vapour resistance of a clothing ensemble. ISO. Retrieved from https://www.iso.org/standard/39257.html 

  12. International Organization for Standardization. (2007b, December). ISO 11079:2007. Ergonomics of the thermal environment - Determination and interpretation of cold stress when using required clothing insulation (IREQ) and local cooling effects. ISO. Retrieved from https://www.iso.org/standard/38900.html 

  13. Jeong, Y. O., & Choi, J. W. (1984). An experimental study on the thermal insulation of the linin fabrics. Journal of the Korean Society of Clothing and Textiles, 8(1), 1-11. 

  14. Jin, Y. B., Kim, S., Han, H. J., Sa, A. N., & Park, C. K. (2018). Study on thermal insulation property of military cold-weather clothing using a thermal manikin. Textile Science and Engineering, 55(1), 48-55. doi:10.12772/TSE.2018.55.048 

  15. Jung, I. G., Lee, C. Y., Lee, A. R., Park, S. H., Kang, G. J., & Park, M. G. (2017, December 1). 선정 '2017 한국 패션산업 10대 뉴스' ['2017 Korean Fashion Industry Top 10 News' by ]. Fashion Insight. Retrieved from https://www.fi.co.kr/main/view.asp?idx61026 

  16. Kim, K.-S. (2019). Comparison and analysis of outdoor wear brand using opinion mining analysis: Focusing on domestic top 10 outdoor wear brands. Korean Journal of Leisure, Recreation & Park, 43(2), 35-50. doi:10.26446/kjlrp.2019.6.43.2.35 

  17. Kim, S., Kim, E., & Park, Y. (2018). Thermal insulation and morphology of natural and synthetic filled outdoor sportswear by repeated water washing and dry cleaning. International Journal of Clothing Science and Technology, 30(3), 428-443. doi:10.1108/IJCST-09-2017-0149 

  18. Kim, Y.-B., Jang, W., Kim, K., Kim, S., Baek, Y. J., & Lee, J.-Y. (2015). Comparisons of thermal insulations between on aircell pack embedded jacket and down jackets. Journal of the Korean Society of Clothing and Textiles, 39(1), 55-62. doi:10.5850/JKSCT.2015.39.1.55 

  19. Korea Meteorological Administration. (2021, March 10). 기후통계-통계분석-기온분석 [Climatic statistics-Statistic analy sis-Temperature analaysis]. Open MET Data Portal. Retrieved from https://data.kma.go.kr/stcs/grnd/grndTaList.do?pgmNo70 

  20. Kuklane, K., Gao, C., Wang, F., & Holmer, I. (2012). Parallel and serial methods of calculating thermal insulation in European manikin standards. International Journal of Occupational Safety and Ergonomics, 18(2), 171-179. doi:10.1080/10803548.2012.11076926 

  21. Kuklane, K., Sandsund, M., Reinertsen, R. E., Tochihara, Y., Fukazawa, T., & Holmer, I. (2004). Comparison of thermal manikins of different body shapes and size. European Journal of Applied Physiology, 92(6), 683-688. doi:10.1007/s00421-004-1116-3 

  22. Kwon, J., & Choi, J. (2012). The relationship between environmental temperature and clothing insulation across a year. International Journal of Biometeorology, 56(5), 887-893. doi:10.1007/s00484-011-0493-7 

  23. Kwon, J., Kim, S., Baek, Y. J., & Lee, J.-Y. (2021). Comparison and evaluation of clothing insulation of newly-developed air-filled baffle jackets and down padded jackets. Fashion & Textile Research Journal, 23(2), 261-272. doi:10.5805/SFTI.2021.23.2.261 

  24. Lee, H. S. (1997, November 5). 하늘도 내 편으로 만드는 기상 마케팅 [Weather marketing which makes the sky on my side]. LG Business Insight, 439, 52-59. Retrieved from http://www.lgeri.com/report/view.do?idx2279 

  25. Lee, J.-S., Kim, H.-E. & Song, M.-K. (2008). Physiological responses of cold protective clothing with different clo value. Journal of the Korean Society for Clothing Industry, 10(5), 683-689. 

  26. Lee, J.-Y., Ko, E.-S., Lee, H.-H., Kim, J.-Y., & Choi, J.-W. (2011). Validation of clothing insulation estimated by global and serial methods. International Journal of Clothing Science and Technology, 23(2/3), 184-198. doi:10.1108/09556221111107360 

  27. Lee, J.-Y., Wakabayashi, H., Wijayanto, T., & Tochihara, Y. (2010). Differences in rectal temperatures measured at depths of 4-19 cm from the anal sphincter during exercise and rest. European Journal of Applied Physiology, 109(1), 73-80. doi:10.1007/s00421-009-1217-0 

  28. Lee, Y.-J., & Lee, S.-W. (1989). The effects of Parka on subject wear sensation as to thermal resistance. Journal of the Korean Society of Clothing and Textiles, 13(3), 295-303. 

  29. Liu, W., Yang, D., Shen, X., & Yang, P. (2018). Indoor clothing insulation and thermal history: A clothing model based on logistic function and running mean outdoor temperature. Building and Environment, 135, 142-152. doi:10.1016/j.builden v.2018.03.015 

  30. Lu, Y., Wang, F., Wan, X., Song, G., Shi, W., & Zhang, C. (2015). Clothing resultant thermal insulation determined on a movable thermal manikin. Part I: effects of wind and body movement on total insulation. International Journal of Biometeorology, 59(10), 1475-1486. doi:10.1007/s00484-015-0958-1 

  31. Mochida, T. (1977). Convective and radiative heat transfer coefficients for human body. Bulletin of the Faculty of Engineering, Hokkaido University, 84, 1-11. Retrieved from http://hdl.handle.net/2115/41421 

  32. Nielsen, R., Olesen, B. W., & Fanger, P. O. (1985). Effect of physical activity and air velocity on the thermal insulation of clothing. Ergonomics, 28(12), 1617-1631. doi:10.1080/00140138508963299 

  33. Nishi, Y., & Gagge, A. P. (1973). Moisture permeation of clothing - A factor governing thermal equilibrium and comfort. Memoirs of the Faculty of Engineering, Hokkaido University, 13 (Suppl2), 5-13. Retrieved from https://hdl.handle.net/2115/37925 

  34. Oliveira, A. V. M., Gaspar, A. R., & Quintela, D. A. (2011). Dynamic clothing insulation. Measurements with a thermal manikin operating under the thermal comfort regulation mode. Applied Ergonomics, 42(6), 890-899. doi:10.1016/j/apergo.2011.02.005 

  35. Oliveira, A. V. M., Gaspar, A. R., Francisco, S. C., & Quintela, D. A. (2012). Convective heat transfer from a nude body under calm conditions: Assessment of the effects of walking with a thermal manikin. International Journal of Biometeorology, 56(2), 319-332. doi:10.1007/s00484-011-0436-3 

  36. Olessen, B. W., Sliwinska, E., Madsen, T. L., & Fanger, P. O. (1982). Effect of body posture and activity on the thermal insulation of clothing: Measurements by a movable thermal manikin. ASHRAE Transactions, 88(Pt 2), 791-805. 

  37. Park, J., Hwang, S., & Lee, J.-Y. (2020). Elderly male' and female's actual wearing condition by clothing item and clothing ensemble insulation in winter. Journal of The Korean Society of Living Environmental System, 27(2), 161-173. doi:10.21086/ksles.2020.04.27.2.161 

  38. Park, J.-H., & Choi, J.-W. (2008). The relationship between clothing microclimate and clothing thermal insulation. Journal of The Korean Society of Living Environmental System, 15(4), 677-685. 

  39. Qian, X., & Fan, J. (2006). Prediction of clothing thermal insulation and moisture vapour resistance of the clothed body walking in wind. The Annals of Occupational Hygiene, 50(8), 833-842. doi:10.1093/annhyg/mel050 

  40. Son, W. K., & Baek, Y. J. (1999). Effects of garment types on thermal insulation using a thermal manikin. Journal of the Korean Society of Clothing and Textiles, 23(8), 1110-1118. 

  41. Song, M., Kwon, S., & Jung, H. (2012). A study on changes in thermal performances in ensembles made up of single garments marketed for Korean men - In still and dynamic air conditions -. Journal of the Korean Society for Clothing Industry , 14(4), 660-668. doi:10.5805/KSCI.2012.14.4.660 

  42. Ueno, S. (2020). Comparison of correction factor for both dynamic total thermal insulation and evaporative resistance between ISO 7933 and ISO 9920. Journal of Physiological Anthropology, 39:23. doi:10.1186/s40101-020-00235-9 

  43. Wu, T., Cui, W., Cao, B., Zhu, Y., & Ouyang, Q. (2016). Measurements of the additional thermal insulation of aircraft seat with clothing ensembles of different seasons. Building and Environment, 108, 23-29. doi:10.1016/j.buildenv.2016.08.008 

저자의 다른 논문 :

섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로