Development and validation of the predicted heat strain model
Author(s) -
J. Malchaire,
Alain Piette,
Bernhard Kampmann,
Peter Mehnert,
Hansjürgen Gebhardt,
George Havenith,
Emiel den Hartog,
Ingvar Holmér,
Ken Parsons,
G. Alfano,
Barbara Griefahn
Publication year - 2001
Publication title -
the annals of occupational hygiene
Language(s) - English
Resource type - Journals
eISSN - 1475-3162
pISSN - 0003-4878
DOI - 10.1093/annhyg/45.2.123
Subject(s) - rectal temperature , sweat , core temperature , work (physics) , field (mathematics) , environmental science , thermodynamics , mathematics , medicine , zoology , physics , biology , pure mathematics , anesthesia
Eight laboratories participated in a concerted research project on the assessment of hot working conditions. The objectives were, among others, to co-ordinate the work of the main European research teams in the field of thermal factors and to improve the methods available to assess the risks of heat disorders at the workplace, and in particular the "Required Sweat Rate" model as presented in International Standard ISO 7933 Standard (1989). The scientific bases of this standard were thoroughly reviewed and a revised model, called "Predicted Heat Strain" (PHS), was developed. This model was then used to predict the minute by minute sweat rates and rectal temperatures during 909 laboratory and field experiments collected from the partners. The Pearson correlation coefficients between observed and predicted values were equal to 0.76 and 0.66 for laboratory experiments and 0.74 and 0.59 for field experiments, respectively, for the sweat rates and the rectal temperatures. The change in sweat rate with time was predicted more accurately by the PHS model than by the required sweat rate model. This suggests that the PHS model would provide an improved basis upon which to determine allowable exposure times from the predicted heat strain in terms of dehydration and increased core temperature
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