3.8 Article

Evaluation of the relationship between thermal comfort conditions and respiratory diseases in Amasya City, Turkey

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SPRINGER HEIDELBERG
DOI: 10.1007/s10389-023-01887-4

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Thermal comfort; Respiratory diseases; Urban health; Public health; PET; Turkey

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The study examines the relationship between thermal comfort conditions and respiratory diseases in the Black Sea Region of Turkey. The results reveal a very high negative correlation between thermal comfort conditions and air temperature and respiratory diseases. An increase of 1 degree Celsius in thermal comfort conditions and air temperature is predicted to reduce hospital admissions for respiratory diseases by approximately 64 to 67 patients and 89 to 94 patients, respectively.
AimStudies examining the relationship between thermal comfort conditions-the state of feeling insulated against atmospheric factors in the environment-and diseases have been very limited. In Turkey, which is in the transition zone of air masses in middle latitudes, thermal comfort conditions change frequently due to sudden weather changes. This study was conducted to examine the relationship between thermal comfort conditions and respiratory diseases in Amasya, an exemplary Turkish city in the Black Sea Region of Turkey.Subject and methodsTo determine the thermal comfort conditions in the study between 2017 and 2019, the PET (physiologically equivalent temperature) index obtained from the RayMan model was used for data including hourly air temperature (degrees C), relative humidity (%), wind velocity (m/s), and cloud cover (octa). Daily air temperature data were also obtained. The relationship between PET values and air temperature and respiratory disease hospital admissions was analyzed by Pearson correlation analysis and linear regression analysis.ResultsThe results revealed a very high negative correlation between both thermal comfort conditions (PET) and air temperature and respiratory diseases (p < 0.000). The results show that with an increase of 1 degrees C in thermal comfort conditions (PET), hospital admissions due to respiratory diseases will decrease by approximately 64 to 67 patients. It is predicted that the number of patients will decrease by approximately 89 to 94 with an increase of 1 degrees C in air temperature.ConclusionThese findings can be informative and serve as guidance for decision-makers in efforts to protect public health, for preventive medicine studies, and for studies on the effects of climate change on human health.

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