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Constructal design of gas-cooled electric power generators, self-pumping and atmospheric circulation

机译:气冷发电机的结构设计,自吸和大气环流

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Rotating electric machines generate heat volumetrically, and are cooled by forced convection aided by the self-pumping effect In this paper we focus on the fundamental relationship between the internal flow architecture of the gas cooled winding and its thermal performance, which is represented by the nearly uniform distribution of peak temperature throughout the winding volume. We show that the cooling passages can be sized such that the volumetric cooling is most effective. From this finding follows the number of passages and their distribution through the heat generating volume. The principle is developed analytically, and it is then validated based on numerical simulations of the cooling architecture. The paper also reports the thermodynamics basis of the self-pumping effect, and its natural occurrence as free convection in general, which includes atmospheric circulation.
机译:旋转电机产生大量的热量,并通过自抽作用在强制对流的作用下进行冷却。在本文中,我们着重研究气冷绕组内部流动结构与其热性能之间的基本关系,这几乎可以表示为整个绕组体积中峰值温度的均匀分布。我们显示出冷却通道的大小可以使容积冷却最有效。从该发现得出的是通道的数量及其在生热空间中的分布。该原理经过分析开发,然后基于冷却体系结构的数值模拟进行了验证。本文还报告了自抽效应的热力学基础,以及其自然发生的自由对流现象,其中包括大气环流。

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