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Articles

Reducing heat stress under thermal insulation in protective clothing: microclimate cooling by a ‘physiological’ method

, , , , , & show all
Pages 1461-1469 | Received 18 Dec 2013, Accepted 26 Jan 2015, Published online: 04 Mar 2015
 

Abstract

Heat stress caused by protective clothing limits work time. Performance improvement of a microclimate cooling method that enhances evaporative and to a minor extent convective heat loss was tested. Ten male volunteers in protective overalls completed a work-rest schedule (130 min; treadmill: 3 × 30 min, 3 km/h, 5% incline) with or without an additional air-diffusing garment (climatic chamber: 25°C, 50% RH, 0.2 m/s wind). Heat loss was supported by ventilating the garment with dry air (600 l/min, ≪5% RH, 25°C). Ventilation leads (M ± SD, n = 10, ventilated vs. non-ventilated) to substantial strain reduction (max. HR: 123 ± 12 b/min vs. 149 ± 24 b/min) by thermal relief (max. core temperature: 37.8 ± 0.3°C vs. 38.4 ± 0.4°C, max. mean skin temperature: 34.7 ± 0.8°C vs. 37.1 ± 0.3°C) and offers essential extensions in performance and work time under thermal insulation.

Abstract

Practitioner Summary: Heat stress caused by protective clothing limits work time. Performance can be improved by a microclimate cooling method that supports evaporative and to a minor extent convective heat loss. Sweat evaporation is the most effective thermoregulatory mechanism for heat dissipation and can be enhanced by insufflating dry air into clothing.

Acknowledgements

The authors would like to thank M. Demuss, S. Freitag, T. Hartmann, S. Heuke and R. Philipp for their excellent technical support and data management.

Disclosure statement

No potential conflict of interest was reported by the authors.

Notes

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