Study on Dropping Cold Water Type Air Conditioning of Large Space

Takanobu Sato, M. Kobiyama, Y. Hanaoka, Kengo Watanabe, M. Matsui, Motoyuki Oizumi
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Abstract

ABSTRACT It has been developing many technologies to store the cold heat in winter as snowy latent heat till summer and to utilize them as a lot of cold resources during the summer. Under such a background, the authors proposed a dropping cold water type air conditioning system to cool large space such as atrium. In this system, cold water was dropped from the upper part of this large space, and the space can be cooled by the direct heat exchange between cold dropping water and surrounding hot air and the flow of the cold air accompanied to the dropping cold water, and the possibility of this system was discussed and clarified by the previous paper. In this paper, the authors discussed the temperature of inner air of an experimental tower of the dropping cold water. That is, the temperature of inner air is regarded as an equilibrium temperature, and we measured and arranged some thermal characteristics values of this system, and made a heat balance model with consideration of heat transfer through walls under the steady state to presume the inner air temperature and humidity. As the variation of temperatures and the flow rates of the dropping cold water affects the heat transfer characteristic of this model, the authors selected them as the parameters of the experiment in this paper, which was performed under the comparatively lower heat load.
大空间滴冷水式空调的研究
将冬季的冷热以雪潜热的形式储存到夏季,并在夏季将其作为大量的冷资源加以利用,这一技术一直在发展。在这样的背景下,笔者提出了一种滴冷水式空调系统来冷却中庭等大空间。在这个系统中,冷水从这个大空间的上部落下,通过冷水与周围热空气的直接换热以及伴随冷水落下的冷空气的流动来冷却空间,前面的文章已经讨论并阐明了这个系统的可能性。本文讨论了一种降冷水实验塔的内部空气温度。即将内部空气温度视为平衡温度,对该系统的一些热特性值进行了测量和整理,建立了稳态下考虑壁面传热的热平衡模型,假设了内部空气温度和湿度。由于温度和降冷水流量的变化会影响该模型的换热特性,因此本文选取温度和降冷水流量作为实验参数,并在较低的热负荷下进行实验。
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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