What factors influence thermal comfort?
Thermal comfort is determined by a number of factors:
- context Metabolic rate and/or activity level (of the persons in the room): varies with the number of occupants, and the amount of activity done by occupants (e.g., sitting in a restaurant versus serving the customers).
- context Clothing: varies by individual’s choices in clothing or by work requirements (e.g., garments worn in an office, chemical protective clothing, or rain gear).
- context Air temperature.
- context Radiant temperature: a complex term, but generally described as how the heat transfers between the body and other objects in the area (e.g., radiation is the process by which the body gains heat from surrounding hot objects, such as hot metal, furnaces or steam pipes, and loses heat to cold objects, such as chilled metallic surfaces, without contact with them).
- context Solar loading.
- context Air speed (velocity): the rate of air movement.
- context Humidity: a general description of the moisture content of the air.
What temperature should an office be?
The American Society of Heating, Refrigerating, and Air Conditioning Engineers (ASHRAE) Standard 55 Thermal Environmental Conditions for Human Occupancy offers a "comfort zone" example and the effect of clothing worn (based on operative temperature, relative humidity, humidity ratio and wet bulb temperature). Generally speaking:
Table 1: Comfort Zone and the effect of clothes
**Values in degrees Celsius with relative humidity at 50%
*Clothing value 0.65 is approximately equivalent to wearing trousers and a long-sleeved shirt, or wearing a knee-length skirt (with a full slip) and a long-sleeved shirt. Clothing value 1.0 is approximately equivalent to wearing trousers, a long-sleeved shirt, a long-sleeved sweater, a t-shirt, or a knee-length skirt, a long-sleeved shirt, a half slip, and a suit jacket. In comparison, walking shorts and a short-sleeve shirt would have a clothing value of 0.36.
This range of temperatures is based on the assumption that people would dress to be slightly cool in the summer (that is, wear lighter-weight clothing), while people in the winter dress to be slightly warm (wear heavier-weight clothing). Some people may feel uncomfortable even if these values are met, and additional measures may be required.
In some situations, legislation may have specific requirements. A list of temperature requirements found in legislation is available in the OSH Answers document Temperature Conditions - Legislation.
- context Clothing value 0.65 | 21 | 25
- context Clothing value 1.0 | 18 | 23
What role do the other factors play?
Thermal comfort also depends on the metabolic rates (activities being done), the clothing a person wears, and the radiant temperatures of other surfaces.
The influence of metabolic rate (e.g., from performing activities) and clothing will vary from person to person, even if every person wears the same clothing and performs the same activity. Where possible, allow individuals to have some control over clothing options and the pace of work.
Radiant temperature sources include floors and windows. For example, poorly insulated windows can create a cold area in the winter, and sunshine can create a warm area in the summer. Humans are most sensitive to warm ceilings and to cold vertical surfaces such as windows. Floor surface temperatures that are too high or too low, and that are different from air temperatures, also contribute to thermal discomfort.