Method for calculating a two-stage thermoelectric system for local hypothermia

.-З. Бадрудинова, Олег Викторович Евдулов, Зури Анваровна Камилова, С.Г. Магомедова, Г М Гусейнов, .-Z. Badrudinova, O. V. Evdulov, Z. A. Kamilova, S. Magomedov, G. Guseynov
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Abstract

Abstract. Objective. The aim of the study is to develop a methodology for calculating a two-cascade thermoelectric system (TPS) for local hypothermia, as well as a theoretical analysis of its operation.Method. The model is built on the basis of solving three problems, consisting in determining the parameters of a two-stage thermoelectric module (TEM), thermophysical characteristics of the interface system with a biological object, and heat removal for cooling the hot junctions of the thermomodule.Results. According to the calculation model, the TES was calculated for local hypothermia of soft tissues in the treatment of their inflammation and infectious formations, developed in the laboratory of semiconductor thermoelectric devices and devices of the Daghestan State Technical University. Graphs of the dependence of the change in the cooling capacity of the TEM, the coefficient of performance, the supply voltage on the temperature difference between the junctions for various values of the supply current, as well as the dependence of the voltage on the TEM on the magnitude of the supply current at various values of the temperature difference between the junctions, the change in temperature by cold junction and TEM power from the supply current. The graphs are calculated at a hot junction temperature of 300 K.Conclusion. As a result of the calculations, it was found that the TV-2-(127-127)-1.15 TEM selected as a result of the calculation will have the following characteristics: an operating power range of 8-10 W with an average temperature difference between the junctions of 65 K, the supply current is 4 .4-5.8 A with a power consumption of 45-85 W, the coefficient of performance is 0.2-0.5.
局部低温两级热电系统的计算方法
摘要目标。本研究的目的是开发一种用于局部低温的双级联热电系统(TPS)的计算方法,并对其操作方法进行理论分析。该模型是在解决三个问题的基础上建立的,即确定两级热电模块(TEM)的参数,与生物物体界面系统的热物理特性,以及冷却热电模块热结的散热。根据计算模型,计算由达吉斯坦国立技术大学半导体热电器件和器件实验室开发的软组织局部低温治疗炎症和感染形成时的TES。TEM的制冷量变化、性能系数、电源电压对不同供电电流值的结间温差的依赖关系图,以及电压对TEM的依赖关系图,在不同的结间温差值、冷结的温度变化和供电电流产生的TEM功率。图是在热结温度为300 k时计算的。计算结果发现,计算结果选择的TV-2-(127-127)-1.15 TEM将具有以下特点:工作功率范围为8-10 W,结间平均温差为65 K,电源电流为4.4 -5.8 a,功耗为45-85 W,性能系数为0.2-0.5。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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