A Method to Protect Mine Workers in Hot and Humid Environments

논문상세정보
    • 저자 Maurice Sunkpal Pedram Roghanchi Karoly C. Kocsis
    • 제어번호 106070910
    • 학술지명 Safety and health at work
    • 권호사항 Vol. 9 No. 2 [ 2018 ]
    • 발행처 한국산업안전보건공단 산업안전보건연구원
    • 자료유형 학술저널
    • 수록면 149-158
    • 언어 English
    • 출판년도 2018
    • 등재정보 KCI등재
    • 소장기관 계명대학교 동산도서관 동국대학교 중앙도서관 영남대학교 의료원 의학도서관 전남대학교 중앙도서관 홍익대학교 중앙도서관
    • 판매처
    유사주제 논문( 0)

' A Method to Protect Mine Workers in Hot and Humid Environments' 의 참고문헌

  • reportInjuries, illnesses, and hazardous exposures in the mining industry, 1986-1995: a surveillance report
    Landen DD [2000]
  • Transient interaction between the human body and the thermal environment
    Jones BW [1992]
  • Thermoregulation: physiological responses and adaptations to exercise in hot and cold environments
    King J [2004]
  • Thermal sensation resulting from sudden ambient temperature changes
    de Dear RJ [1993]
  • Thermal sensation and comfort models for non-uniform and transient environments: part I: local sensation of individual body parts
    Zhang H [2010]
  • Thermal comfort models: a review and numerical investigation
    Cheng Y [2011]
  • Thermal comfort and the heat stress indices
    Epstein Y [2006]
  • Thermal comfort
  • The ventilation and climate modelling of rapid development tunnel drivages
    Lowndes IS [2004]
  • The influence of high air temperatures
    Haldane JS [1905]
  • The handbook on clothing, biomedical effects of military clothing and equipment systems
    Goldman R [1988]
  • The effect of air movement on thermal comfort and sensation
    McIntyre DA [1979]
  • The assessment of the thermal environment: a review
  • Subsurface ventilation engineering
  • Relative humidity
    Lstiburek J [2003]
  • Prediction of mean skin temperature in warm environment
    Mairiaux P [1987]
  • Prediction and analysis of the underground climatic conditions and their cause in deep mechanized Canadian metal mines
    Kocsis CK [2010]
  • Predicting metabolic energy cost
    Givoni B [1971]
  • Physiological modeling for technical, clinical and research applications
    Fiala D [2010]
  • Partial- and whole-body thermal sensation and comfort, part I: uniform environmental conditions
    Arens E [2006]
  • Numerical modelling of heat exchange between a human body and the environment
    Waclawik J [2004]
  • Medical Sciences. 2nd ed.
    Naish J [2015]
  • Limiting metabolic rate (thermal work limit) as an index of thermal stress
    Brake DJ [2002]
  • ISO-8996. Ergonomics determination of metabolic heat production
  • ISO 9920. Ergonomics of the thermal environment - estimation of thermal insulation and water vapor resistance of a clothing ensemble
  • ISO 7933. Hot environments - analytical determination and interpretation of thermal stress using calculation of required sweat rate
  • ISO 7933. Ergonomics of the thermal environment - analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • ISO 7730, Ergonomics of the thermal environment - Analytical determination and interpretation of thermal comfort using calculation of the PMV and PPD indices and local thermal comfort criteria
  • ISO 7726. Ergonomics of the thermal environment - instruments for measuring physical quantities
  • ISO 7243, Hot environments estimation of the heat stress on working man, based on the WBGT-index (wet bulb globe temperature)
  • 박사
  • Heat stress standard ISO 7243 and its global application
    Parsons K [2006]
  • Heat stress and heat disorders
  • Handbook AF
    [2007]
  • Handbook AF
    [2009]
  • Environmental physiology and indoor climate-thermoregulation and thermal comfort
    Shapiro Y [1984]
  • Criteria for a recommended standard: occupational exposure to heat and hot environments
  • Comfort and weather analysis tool
  • An effective temperature scale based on a simple model of human physiological regulatory response
    Gagge AP [1971]
  • A standard predictive index of human response to the thermal environment
    Gagge AP [1986]
  • A computer model of human thermoregulation for a wide range of environmental conditions: the passive system
    Fiala D [1999]