Individual air-conditioners for doctors’ clothes

Authors

  • L.I. Anatychuk 1. Institute 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, 58012, Ukraine
  • A.M. Kibak Institute of Thermoelectricity of the NAS and MES of Ukraine, 1 Nauky str, Chernivtsi, 58029, Ukraine

Keywords:

air-conditioner for clothes, thermoelectric air-conditioner, thermal conditions, phase transition, doctor’s clothes

Abstract

The paper discusses the possibility of using individual conditioners for doctors' clothes. Their use will improve the temperature conditions for the stay of medical personnel during long-term operations. To determine the most rational options for using these air conditioners, their physical models have been developed, and the advantages and disadvantages of the known options for individual conditioners for doctors' clothes have been analyzed. The paper also considers the prospects for the use of thermoelectric air conditioners.

References

Prybyla A.V. (2016). Physical models of individual air-conditioners (part one). J.Thermoelectricity, 1, 16 – 40.

https://www.tokb.ru/novosti/rentgenokhirurgiya-operatsii-bez-skalpelya-i-narkoza-vozvrashchayut-zdorove-vzroslym-i-detyam/

https://ukrvet.ua/ua/dlya-chego-nuzhna-rentgenozashchitnaya-odezhda/

Lango Thomas, Nesbakken Ragnhild, Farevik Hilde, Holbo Kristine, Reitan Jarl, Yavuz Yunus, Mеrvik Ronald (2009). Cooling vest for improving surgeons’ thermal comfort: A multidisciplinary design project. Minimally Invasive Therapy, 18:1, 1–10.

Pat. US8710477B1 (2011). Robert L. Marchione. Radiation protective garment with forced ventilation and method.

Pat. US6349412B1 (2000). W. Clark Dean. Medical cooling vest and system employing the same.

Pat. US20070079829A1 (2005). Derek Duke. Medical garment ventilation system.

https://www.amazon.com/s?k=COMPCOOLER&ref=bl_dp_s_web_19826386011

Pat. US20170027053A1 (2016). Joshua E. Moczygemba. Thermoelectric device cooling system.

Pat. US10842205B2 (2017). Hoon Joo Lee, Matthew D. Nordstrom. Apparel thermo-regulatory system.

Pat. US 20060191270 A1 (2006). Ray Warren. Air conditioning system for a garment.

Pat. US 2002/0156509 A1 (2002). John A. Baker. Thermal control suit.

Pat. US 2010/0107657 A1 (2010). Kranthi K. Vistakula. Apparel with heating and cooling capabilities.

http://dhamainnovations.com/

https://www.japantrendshop.com/kuchofuku-airconditioned-cooling-work-shirt-p-1202.html

https://coolshirt.com/

https://www.polarproducts.com/polarshop/pc/home.asp

https://www.e-cooline.com/

https://www.techniche-intl.com/products/

https://inuteq.com/

https://stacoolvest.com/

Pat. US5655374A (1996). Albert N. Santilli Jeffrey M. Kalman Richard O. McCarthy. Surgical suit.

Pat. US6125636A (1999). Charles E. Taylor Shek Fai Lau. Thermo-voltaic personal cooling/heating device.

Pat. WO2017053232 (2017). Bryan Ulmer, Brian Vanderwoude, Beau Kidman, David Goldenberg. Personal protection system with a cooling strip.

Pat. US8087254B2 (2005). Anthony Peter Arnold. Personal heat control device and method.

How to Cite

Anatychuk, L., & Kibak, A. (2024). Individual air-conditioners for doctors’ clothes. Journal of Thermoelectricity, (1), 65–74. Retrieved from http://jte.ite.cv.ua/index.php/jt/article/view/40

Issue

Section

Thermoelectric products

Most read articles by the same author(s)

<< < 1 2 3 4 5 > >> 

Similar Articles

1 2 3 4 5 6 7 8 9 > >> 

You may also start an advanced similarity search for this article.