Modeling of thermophysical processes with moderate cryogenic effect on the periodontal zone using a thermoelectric cooling system
https://doi.org/10.36377/1683-2981-2020-18-2-81-86
Abstract
The aim of the article is to develop a mathematical model and conduct a numerical experiment of a thermoelectric system (TPP) for the treatment of in^ammatory periodontal diseases by moderate cryotherapy.
Materials and methods. A design, a physical and mathematical model of TES for the treatment of in^ammatory periodontal diseases by moderate cryotherapy, developed on the basis of solving the unsteady heatconduction problem fora multilayer system, has been developed.
Results. /4s a result of a numerical experiment, data were obtained that describe the temperature distribution over the thickness of each of the layers in the system, taking into accountthe heatfluxes on the junctions of the thermoelectric battery (ТЕБ), the parameters of the periodontal region, the temperature change atvarious points of the thermal power plant system - the periodontal region in time. It has been established that the necessary level of procedures associated with lowering the surface temperature of the periodontal zone to -40°C can be realized with a cooling capacity of ТЕБ of 6000 W/m2, which corresponds to the power of modern standard produced thermoelectric modules.
About the Authors
O. V. EvdulovRussian Federation
Assoc.Proi., Department of TheoretIcal and General Electrical Engineering, Candidate of technical Sciences, associate Professor
Makhachkala
S. G. Magomedova
Russian Federation
Postgraduate Student, Department of Theoretical and General Electrical Engineering
Makhachkala
E. A. Dzhabrailova
Russian Federation
Postgraduate Student, Department of TheoretIcal and General Electrical Engineering
Makhachkala
References
1. Baranov А. Yu., Malysheva Т. А. About the choice of methods for studying the effects of General cryotherapy. Biomedicine. 2015 (2):37- 46.
2. Zubkova S.M. The role of the thermal component in the therapeutic effect of physical factors. Physiotherapy, balneology and rehabilitation. 2011 (6):3-10.
3. Ezhov V. V. Physical therapy and fiziopatologice as methods and means of maintaining and restoring health. Physiotherapy, balneology and rehabilitation. 2011(4):33-36.
4. Bogolyubov V. M., UlashchikV. S. Combination and combination of therapeutic physical factors. Physiotherapy, balneology and rehabilitation. 2004 (5):39-45.
5. Miroslav Savic, Borut Fonda, Nejc Sarabon, Actual temperature during and thermal response after whole-body cryotherapy in cryo- cabin. Journal of thermal biology. 2013 (8):186-191.
6. Verhagen John. Massage therapy has short-term benefits for people with common musculoskeletal disorders compared to no treatment: a systematic review. Journal of physiotherapy. 2015 (61):106-116.
7. Khodarev N. V., Zhemchuzhnova N. L., Olympieva E. V., Zhinko M. N., Neshin S. G. Influence of General air cryotherapy on the antioxidant status of blood. Physiotherapy, balneology and rehabilitation. 2012 (1):32-35.
8. Kuznetsov O. F. Cryomassage is an effective technology of rehabilitation therapy. Physiotherapy, balneology and rehabilitation. 2003 (5):39-46.
9. Ismailov T. A., Evdulov O. V., Ragimova T. A. Experimental stand for measuring the performance characteristics of a thermoelectric device for local freezing of laryngeal tissues. Poizunovskii Herald. 2010 (2):167-170.
10. Ismailov T. A., Evdulov O. V., Khazanova M. A., Magomedov R. A.-M. Mathematical model of a thermoelectric system for local thermal effects on the human hand. Thermoelectricity. 2014 (1): 77-86.
11. Ismailov T. A., Evdulov O. V., Ragimova T. A. Investigation of a thermoelectric system for local freezing of laryngeal tissues. Thermoelectricity. 2015 (2):86-94.
12. Hua Zhang, Hong Chen, Hao Wang, Duoduo Li, Baolin Jia, Zhongjian Tan, Bin Zheng, Zhiwen Weng. Effect of Chinese tuina massage therapy on resting state brain functional network of patients with chronic neck pain .Journal of traditional Chinese medical sciences. 2015 (2):32-38.
13. Savic Miroslav, Borut Fonda, Nejc Sarabon Actual temperature during and thermal response after whole-body cryotherapy in cryo- cabin. Journal of thermal biology. 2013 (38): 186-191.
14. Yanushevich O. O. Physical therapy of periodontal disease. Dentist. 2008 (5): 21-24.
15. Evdulov O. V., Magomedova S. G. Thermoelectric system for the treatment of inflammatory periodontal diseases by moderate cryotherapy. International scientific journal "Innovative development”. 2018 22(5).14-16.
16. Anatychuk L. I. Thermoelements and thermoelectric devices. Guide. - Kiev. 1979:385.
17. Anatychuk L. I. Thermoelectric energy converters. Kiev. Institute of thermoelectricity. 2003 (2): 376.
18. Bulat, L. P. Thermoelectricity-yesterday, today, tomorrow. Refrigeration equipment. 2016 (4) 14-18.
Review
For citations:
Evdulov O.V., Magomedova S.G., Dzhabrailova E.A. Modeling of thermophysical processes with moderate cryogenic effect on the periodontal zone using a thermoelectric cooling system. Endodontics Today. 2020;18(2):81-86. (In Russ.) https://doi.org/10.36377/1683-2981-2020-18-2-81-86