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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal performance of building element containing phase change material (PCM) integrated with ventilation system - An experimental study
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Thermal performance of building element containing phase change material (PCM) integrated with ventilation system - An experimental study

机译:集成有通风系统的包含相变材料(PCM)的建筑构件的热性能-实验研究

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In this paper a new structure of a ceiling panel is described and its thermal performance is presented. The idea is to build a ceiling in the form of thick board with parallel internal channels for air flow. It is also important that a ceiling is made of a composite containing about 27% of phase change material (PCM). Such a ceiling would be a part of a building ventilation system - air taken from the environment flows through the channels and exchange heat with the construction material. When a melting point of PCM is properly chosen it is possible that the temperature of air flowing into the building reach a level corresponding to thermal comfort conditions, regardless the temperature at the intake. Warm air (during a day) release the heat basically to PCM causing its melting. During night time cool ambient air is heated up while it takes back heat accumulated in PCM. An experimental set-up based on the above concept was developed. A series of tests in different conditions (inlet air temperature, air flow rate) were performed. Information on thermal performance of the ceiling panel as well as detailed data on heat transfer process were obtained and discussed in the paper.
机译:本文介绍了一种新型的天花板结构,并介绍了其热性能。这个想法是用厚木板建造一个天花板,并带有平行的内部气流通道。同样重要的是,天花板应由包含约27%的相变材料(PCM)的复合材料制成。这样的天花板将成为建筑物通风系统的一部分-来自环境的空气流经通道并与建筑材料进行热交换。适当选择PCM的熔点后,无论进气口的温度如何,流入建筑物的空气温度都可能达到与热舒适条件相对应的水平。一天中的热空气基本上将热量释放给PCM,导致其熔化。在夜间,凉爽的环境空气被加热,同时带走了PCM中累积的热量。开发了基于上述概念的实验装置。在不同条件下(进气温度,空气流速)进行了一系列测试。本文获得并讨论了有关天花板热性能的信息以及有关传热过程的详细数据。

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