Thermal comfort, defined as the state of mind in humans that expresses satisfaction with the surrounding environment's thermal conditions, is central to the notion of sustainable development, aligning significantly with several Sustainable Development Goals (SDGs).
Under SDG 3, "Good Health and Well-being," thermal comfort is crucial. It has a direct impact on human health and well-being, as poor thermal conditions can lead to discomfort, stress, and even illnesses like heat stroke or hypothermia. Moreover, populations increasingly spend time indoors, emphasizing the importance of thermal comfort in buildings. This links it to SDG 9 "Industry, Innovation, and Infrastructure," where it prompts the creation of sustainable, resilient, and comfortable infrastructures.
SDG 7, "Affordable and Clean Energy," also resonates with thermal comfort. Achieving thermal comfort usually requires energy for heating or cooling, highlighting the need for energy-efficient solutions. Passive architectural design techniques or smart energy systems can facilitate thermal comfort without contributing to excessive energy consumption.
Thermal comfort ties into SDG 11, "Sustainable Cities and Communities," as urban areas must consider this aspect in their development. Urban heat islands can exacerbate heat stress for inhabitants, stressing the importance of city planning considering green spaces and suitable building materials to counteract this effect.
Lastly, SDG 13, "Climate Action," relates to thermal comfort. As climate change exacerbates extreme temperature fluctuations, it will become more challenging to maintain thermal comfort, especially in resource-limited settings. This necessitates developing and implementing strategies and technologies to maintain thermal comfort in the face of global warming.
In summary, therm