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Träfflista för sökning "WFRF:(Holmér Ingvar) ;mspu:(researchreview)"

Search: WFRF:(Holmér Ingvar) > Research review

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1.
  • Broede, Peter, et al. (author)
  • The Universal Thermal Climate Index UTCI Compared to Ergonomics Standards for Assessing the Thermal Environment
  • 2013
  • In: Industrial Health. - 1880-8026. ; 51:1, s. 16-24
  • Research review (peer-reviewed)abstract
    • The growing need for valid assessment procedures of the outdoor thermal environment in the fields of public weather services, public health systems, urban planning, tourism & recreation and climate impact research raised the idea to develop the Universal Thermal Climate Index UTCI based on the most recent scientific progress both in thermo-physiology and in heat exchange theory. Following extensive validation of accessible models of human thermoregulation, the advanced multi-node 'Fiala' model was selected to form the basis of UTCI. This model was coupled with an adaptive clothing model which considers clothing habits by the general urban population and behavioral changes in clothing insulation related to actual environmental temperature. UTCI was developed conceptually as an equivalent temperature. Thus, for any combination of air temperature, wind, radiation, and humidity, UTCI is defined as the air temperature in the reference condition which would elicit the same dynamic response of the physiological model. This review analyses the sensitivity of UTCI to humidity and radiation in the heat and to wind in the cold and compares the results with observational studies and internationally standardized assessment procedures. The capabilities, restrictions and potential future extensions of UTCI are discussed.
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2.
  • Holmér, Ingvar (author)
  • Protective clothing in hot environments
  • 2006
  • In: Industrial Health. - 1880-8026. ; 44:3, s. 404-413
  • Research review (peer-reviewed)abstract
    • The high level of protection required by personal protective clothing (PPC) severely impedes heat exchange by sweat evaporation. As a result work associated with wearing PPC, particularly in hot environments, implies considerable physiological strain and may render workers exhausted in a short time. Recent development of algorithms for describing the heat transfer, accounting for pumping and wind effects, comprises improvement of the prediction of thermal stress. Realistic corrections can then be made to the available measures of thermal insulation and evaporative resistance of a given clothing ensemble. Currently this information is incorporated in international standards for assessment of thermal environments. Factors, such as directional radiation and wetting of layers, were studied in a recently completed EU research project. The development of advanced thermal manikins and measurement procedures should provide better measures for predictive models. As with all methods and models, the results need validation in realistic wear trials in order to prove their relevance and accuracy.
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Type of publication
Type of content
peer-reviewed (2)
Author/Editor
Holmér, Ingvar (2)
Kuklane, Kalev (1)
Blazejczyk, Krzyszto ... (1)
Broede, Peter (1)
Fiala, Dusan (1)
Havenith, George (1)
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Jendritzky, Gerd (1)
Kampmann, Bernhard (1)
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University
Lund University (2)
Language
English (2)
Research subject (UKÄ/SCB)
Engineering and Technology (2)

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