热电系统对人类眼球前段的热作用的现场研究

O. V. Evdulov, I. Y. Aminova, G. I. Aminov, S. Gasanova, P. N. Surakatova
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引用次数: 0

摘要

目标。本研究的目的是开发一种热电系统(TPS)的设计,用于对人类眼球前段的热作用,并进行实地研究。该研究基于热力学分析、过程和生命维持设施的自然和计算建模方法。介绍了一种用于人体眼球前段热冲击的TPP的设计。其全尺寸研究是按照现有的热物理测量方法进行的。获得了TPP中包含的热电模块(TEM)的供电电流为2.5 A、3 A、3.5 A、1 A、1.2 A、1.4 A时,人眼明胶模型的表面温度在冷却和加热过程中随时间的变化曲线,以及在冷却模式切换到加热模式时,影响对象的温度随时间的变化曲线。为了评估系统中tem热结散热的可能性,在不同模块供电电流值的冷却效果期间,获得了其温度随时间变化的数据。已经确定了国内企业生产的标准模块可以作为系统中的tem。进入TPP模式的时间约为230秒。因此,在进行实际程序之前,将TPP引入操作模式似乎是合适的。已经确定,TPP从冷却模式切换到加热模式的时间为230 s,这需要通过使用更先进的tem类型和在瞬态模式下使用热模块强制操作来进一步优化设备的设计和工作模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field studies of a thermoelectric system for thermal action on the anterior segment of the human eyeball
Objective. The aim of the study is to develop the design of a thermoelectric system (TPS) for thermal action on the anterior segment of the human eyeball, as well as to conduct its field studies.Method. The study is based on the methods of thermodynamic analysis, natural and computational modeling of processes and life support facilities.Result. The design of TPP for thermal impact on the anterior segment of the human eyeball is presented. Its fullscale studies were carried out in accordance with the existing methods of thermophysical measurements. Curves of changes in the temperature of the surface of the gelatin model of the human eyeball over time during cooling and heating were obtained for the supply currents of the thermoelectric module (TEM) included in the TPP, equal to 2.5 A, 3 A, 3.5 A, A and 1 A, 1 .2 A, 1.4 A, as well as changes in the temperature of the object of influence over time when changing the cooling mode to heating and vice versa. To assess the possibilities of heat removal from the hot junctions of TEMs in the system, data were obtained on the change in their temperature over time during the cooling effect for various values of the module supply current.Conclusion. It has been established that standard modules produced by domestic firms can be used as TEMs in the system. The duration of entering the TPP mode is about 230 s. The refore, it seems appropriate to bring the TPP to the operating mode before the actual procedures are carried out. It has been established that the duration of TPP switching from cooling to heating mode and vice versa is 230 s, which requires further optimization of the design and operating modes of the device through the use of more advanced types of TEMs and the use of forced operation of thermal modules in the transient mode.
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