On medical restrictions to the cooling modes of thermoelectric air conditioners

Authors

  • R.R Kobylianskyi 1Institute of Thermoelectricity of the NAS and MES of Ukraine, 1 Nauky str., Chernivtsi, 58029, Ukraine; 2 Yuriy Fedkovych Chernivtsi National University, 2 Kotsiubynskyi str., Chernivtsi, 58000, Ukraine
  • Yu. Yu Rozver 1Institute of Thermoelectricity of the NAS and MES of Ukraine, 1 Nauky str., Chernivtsi, 58029, Ukraine; 2 Yuriy Fedkovych Chernivtsi National University, 2 Kotsiubynskyi str., Chernivtsi, 58000, Ukraine
  • A.V. Prybyla 1Institute of Thermoelectricity of the NAS and MES of Ukraine, 1 Nauky str., Chernivtsi, 58029, Ukraine; 2 Yuriy Fedkovych Chernivtsi National University, 2 Kotsiubynskyi str., Chernivtsi, 58000, Ukraine
  • A.K. Kobylyanska 1Institute of Thermoelectricity of the NAS and MES of Ukraine, 1 Nauky str., Chernivtsi, 58029, Ukraine
  • M.M Ivanochko Yuriy Fedkovych Chernivtsi National University, 2 Kotsiubynskyi str., Chernivtsi, 58000, Ukraine

Keywords:

thermoelectric conditioner, medical restrictions, temperature drop, compression conditioner

Abstract

The work provides a detailed description of the temperature restrictions imposed on the conditioned environment. The considered medical aspects of the impact of sudden temperature changes on the human body make it possible to create and operate air conditioners that will meet the necessary conditions for their safe use. The main advantages and disadvantages of using thermoelectric air conditioners in comparison with compression air conditioners from the point of view of medical restrictions are determined.

References

1. GOST 30494-2011.

2. D’Amato Maria, Molino Antonio, Calabrese Giovanna, Cecchi Lorenzo, Annesi‑Maesano Isabella and D’Amato Gennaro (2018). The impact of cold on the respiratory tract and its consequences to respiratory health. Clinical and Translational Allergy.

3. Daviskas E, Gonda I, Anderson S.D. (1990). Mathematical modeling of heat and water transport in human respiratory tract. J Appl Physiol., 69, 362 – 372.

4. Freed A.N, Davis M.S. (1999). Hyperventilation with dry air increases airway surface fluid osmolality in canine peripheral airways. Am J Respir Crit Care Med.159, 1101 – 1107.

5. [http://health-ua.com/article/67252-mukotcilarnij-klrens-zdorovya-dihalnih-shlyahv].

6. Cole P, Forsyth R, Haight J.S. (1983). Effects of cold air and exercise on nasal T patency. Ann Otol Rhinollaryngol. 92, 96 – 98.

7. Millqvist E, Bengtsson U, Bake B. (1987). Occurrence of breathing problems induced by cold climate in asthmatics – a questionnaire survey. Eur Respir J. 71, 444 – 449.

8. Driessen J.M, van derPalen J, van Aalderen W.W, de Jongh F.H, Thio R.J. (2012). Inspiratory airflow limitation after exercise challenge in cold air in asthmatic children. Respir Med. 106 (10), 1362 – 1368.

9. Hyrkas H, Jaakkola M.S., Ikaheimo T.M, Hugg T.T, Jaakkola J.J.K. (2014). Asthma and allergic rhinitis increase respiratory symptoms in cold weather among young adults. Res Med. 108, 63 – 70.

10. Bousquet J, van Cauwenberge P, Khaltaev N, (2001). Aria Workshop Group, World Health Organization. Allergic rhinitis and its impact on asthma. J Allergy Clin Immunol. 108, 147 – 334.

11. Larsson K, Tornling G, Gavhed D, Mиller-Suur C, Palmberg L. (1998). Inhalation of cold air increases the number of inflammatory cells in the lungs in healthy subjects. Eur Respir J. 12, 825 – 830.

12. https://zakon.rada.gov.ua/laws/show/v1182400-74.#Text.

13. https://strojdvor.ru/kondicionirovanie/obslujivanie/mozhno-li-zabolet-ot-konditsionera-v-pomeshchenii-i-kak-etogo-izbezhat/

14. https://WWWdrivenn.ru/journal/novosti/kakuyu-temperaturu-optimalnee-vsego-derzhat-v-salone-avtomobilya-id30137

15. https://economics.segodny.ua/economics/avto/kak-ne-prostuditsya-i-ne-zabolet-v-zharu-ot-konditsionera-v-avtomobile-728083.html

16. https://car.ru/news/autogramota/76638-kak-ne-prostuditsya-i-ne-zabolet-v-zharu-ot-konditsionera-v-mashine/

17. http://health-ua.com/article/67252-mukotcilarnij-klrens-zdorovya-dihalnih-shlyahv

18. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2233658/

19. https://timesofindia.indiatimes.com/life-stile/health-fitness/health-news/alert-sudden-change-from-hot-to-cold-can-be-harmful-to-your-health/articleshow/69354918.cms

20. Anatychuk L.I., Prybyla A.V. (2016). Comparative analysis of thermoelectric and compression heat pumps for individual air conditioners. J. Thermoelectricity, 2, 33 – 42.

21. Anatychuk L.I., Prybyla A.V., Korop M.M. (2016). Comparative analysis of thermoelectric and compression heat pumps for individual air conditioners at elevated ambient temperatures. J. Thermoelectricity, 5, 95 – 98.

22. Anatychuk L.I., Vykhor L.M, Kotsur M.P., Kobylianskyi R.R., Kadeniuk T.Ya. (2016). Optimal control of time dependence of cooling temperature in thermoelectric devices. J. Thermoelectricity, 5, 5 – 11.

23. Anatychuk L.I., Kobylianskyi R.R., Kadeniuk T.Ya. (2017). Computer simulation of local thermal effect on human skin. J. Thermoelectricity, 1, 69 – 79.

Issue

Section

Thermoelectric products

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