Human Thermoregulatory Model for Simulating Thermal Response in High-Temperature And Hypobaric Environments

38 Pages Posted: 19 Jan 2023

See all articles by Qing Zhang

Qing Zhang

Beihang University (BUAA)

Li Ding

Beihang University (BUAA)

Ruiqi Xu

Chongqing Huayu Electric Group Co. Ltd.

Hetian Feng

affiliation not provided to SSRN

Jiachen Nie

Beihang University (BUAA)

Abstract

The main function of the human thermoregulation system is to maintain the stability of body temperature. When fighters and helicopters are performing high-altitude combat tasks, pilots are often exposed to hypobaric conditions and high-temperature environments, causing thermal discomfort and reduction of physical and mental abilities. This research starts with the improvement of previous thermoregulatory model for human body by revising the convective and evaporative parameters of the environment, and the metabolic parameters of thermoregulation in hypobaric conditions. Then thermal physiology experiments were carried out on the ground and at 4000m altitude. The sweating volume, local skin temperature and subjective thermal sensation scales were measured to explore human thermal regulation mechanism and validate the accuracy of simulation results. For comparison of simulation and experiments, the average skin temperature errors are 0.37 ℃ and 0.24 ℃, and the relative errors of the sweating volume are 9% and 8% in the atmospheric and hypobaric environments, respectively. The results indicate that the improved thermoregulatory model for simulating thermal response could realize accurate predictions in the high-temperature hypobaric environments.

Keywords: Thermoregulatory model, Hypobaric environment, High-temperature environment, bio-heat transfer, thermal comfort

Suggested Citation

Zhang, Qing and Ding, Li and Xu, Ruiqi and Feng, Hetian and Nie, Jiachen, Human Thermoregulatory Model for Simulating Thermal Response in High-Temperature And Hypobaric Environments. Available at SSRN: https://ssrn.com/abstract=4330277 or http://dx.doi.org/10.2139/ssrn.4330277

Qing Zhang

Beihang University (BUAA) ( email )

Li Ding

Beihang University (BUAA) ( email )

Ruiqi Xu

Chongqing Huayu Electric Group Co. Ltd. ( email )

Hetian Feng

affiliation not provided to SSRN ( email )

Jiachen Nie (Contact Author)

Beihang University (BUAA) ( email )

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