Human thermo-physiology models (HTPM) are useful tools to assess dynamic and non-uniform human thermal states. However, they are developed based on the physiological data of an average person. In this paper, we present a detailed evaluation of two sophisticated and well-known models, JOS3 and ThermoSEM, with the objective to evaluate their capabilities in predicting the local skin temperature of individual people as both models use individual parameters such as sex, height, weight, and fat percentage as input. For the purpose of validation, controlled experiments were conducted with six human subjects (3 males, 3 females) at different environmental conditions (22–28°C). The measured core temperature and the local skin temperature at 14 loca...
The most complete and realistic physiological data are derived from direct measurements during human...
Most computer models of human thermoregulation are population based. Here, we individualised the Fia...
The human body's heat exchange and its interaction with the surrounding environment has in the past ...
Human thermo-physiology models (HTPM) are useful tools to assess dynamic and non-uniform human therm...
Human thermo-physiology models (HTPM) are useful tools to assess dynamic and non-uniform human therm...
Current thermal comfort models used in practice do not consider physiological and psychological diff...
A new Human Thermal Model (HTM) has been developed at VTT Technical Research Centre of Finland (VTT)...
Personal factors such as weight, height, gender, age, and basal metabolic rate (BMR) all have signif...
A multi-segmental mathematical model of human thermoregulation was tested for its capability to pred...
Most computer models of human thermoregulation are population based. Here, we individualised the Fia...
The transition towards a human-centered indoor climate is beneficial from occupants’ thermal comfort...
Local thermal sensation modelling gained importance due to developments in personalized and locally ...
Energy efficient very low-energy houses, passive houses and nearly zero-energy houses have a signifi...
Influential models, capable of predicting human responses to hot and cold environments and potential...
The most complete and realistic physiological data are derived from direct measurements during human...
Most computer models of human thermoregulation are population based. Here, we individualised the Fia...
The human body's heat exchange and its interaction with the surrounding environment has in the past ...
Human thermo-physiology models (HTPM) are useful tools to assess dynamic and non-uniform human therm...
Human thermo-physiology models (HTPM) are useful tools to assess dynamic and non-uniform human therm...
Current thermal comfort models used in practice do not consider physiological and psychological diff...
A new Human Thermal Model (HTM) has been developed at VTT Technical Research Centre of Finland (VTT)...
Personal factors such as weight, height, gender, age, and basal metabolic rate (BMR) all have signif...
A multi-segmental mathematical model of human thermoregulation was tested for its capability to pred...
Most computer models of human thermoregulation are population based. Here, we individualised the Fia...
The transition towards a human-centered indoor climate is beneficial from occupants’ thermal comfort...
Local thermal sensation modelling gained importance due to developments in personalized and locally ...
Energy efficient very low-energy houses, passive houses and nearly zero-energy houses have a signifi...
Influential models, capable of predicting human responses to hot and cold environments and potential...
The most complete and realistic physiological data are derived from direct measurements during human...
Most computer models of human thermoregulation are population based. Here, we individualised the Fia...
The human body's heat exchange and its interaction with the surrounding environment has in the past ...