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The Temperature Propagation near the Peltier Cooling Elements

机译:珀耳帖冷却元件附近的温度传播

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The regulation of the human body temperature becomes more relevant problem for climate conditions cardinal exchanges. When environmental temperature increases or decreases too much, human has no possibility to achieve his thermal comfort by himself, additional help is necessary for this reason. In our case we offer additional temperature regulation system of the human body integrated into wearing clothes [1]. We can summarize this system as a system human - clothing - environment. The cooling elements based on the thermoelectric effect are used for this system development, they called Peltier elements [2, 3]. The basic advantages of this elements are - reliability, safety for human, "green" technology, precision, long exploitation time, absence of mechanical parts, possibility to use the same system for heating too. So suppose the value of the eliminated heat flow from the human body is Q_∑. We can reach this value with one powerful Peltier element, or with some quantity of those elements with less power. Obviously, the human will feel enough comfortable only in this case, when whole his body simultaneously is cooled [4]. But that isn't very rational solution the entire body to lay with Peltier elements. Let's try to find how we need to distribute well-balanced Peltier elements PE for effectiveness of the human body cooling. We analyze the case when body is covered by clothes and don't has direct contact with external surroundings. In this case thermal resistance of the surface layer of the human body is considerably less than resistance of the system air-clothes-ambience. So we can carry that the heat from the body is transferred only by Peltier cooling element.
机译:人体温度的调节对于气候条件基数交换变得更加相关。当环境温度升高或降低太多时,人无法自己获得热舒适性,因此需要额外的帮助。在我们的案例中,我们提供了集成在穿着衣服中的其他人体温度调节系统[1]。我们可以将此系统概括为一个人-衣服-环境系统。基于热电效应的冷却元件用于该系统开发,它们称为珀耳帖元件[2,3]。这种元素的基本优点是-可靠性,对人类的安全性,“绿色”技术,精度,使用时间长,没有机械零件,也可以使用同一系统进行加热。因此,假设从人体消除的热量流的值为Q_∑。我们可以使用一个功能强大的Peltier元件,或以较少的功率使用一定数量的这些元件来达到此值。显然,只有在这种情况下,人体的整个身体同时被冷却,人体才会感到足够的舒适[4]。但这并不是整个身体都采用帕尔贴元素的合理解决方案。让我们尝试找到如何分配均衡的珀耳帖元件PE以提高人体冷却的效率。我们分析了人体被衣服覆盖并且与外界没有直接接触的情况。在这种情况下,人体表层的热阻显着小于系统空气-衣服-环境的热阻。因此,我们可以保证仅通过珀耳帖冷却元件传递来自身体的热量。

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