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Cooling capacity prediction of radiant floors in large spaces of an airport

机译:机场大空间辐射地板的制冷量预测

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In large space buildings such as check-in halls and departure halls in airports, the envelope is dominated by glass facades, skylights, and metal ceilings. A radiant floor is an effective sensible heat removal terminal due to its direct longwave radiant heat exchange with high-temperature wall surfaces and absorption of solar radiation. The emissivities of metal ceilings and many advanced materials (e.g., low-e coating) in large spaces range from 0.2 to 0.9, markedly different from that of traditional building materials (0.9-0.95), which affects the indoor longwave heat exchange. Moreover, the number of transient solar radiation incidents on the floor surface can vary tremendously, resulting in remarkable differences in cooling capacity of the radiant floor, e.g., from 30 to 40 W/m(2) to more than 100 W/m(2). In this paper, a new simple calculation method for longwave radiant heat exchange that considers emissivity is proposed, and the location and duration of transient solar radiation through skylights and side windows in large spaces are depicted quantitatively. Based on this new method, a typical case study is presented, in which the cooling capacity of a radiant floor in the large spaces of an airport is calculated. The case study also showcases designs of radiant floors in large spaces with different material emissivity and transient solar radiation values. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在大型空间建筑中,例如机场的登机大厅和离境大厅,围护结构主要是玻璃立面,天窗和金属天花板。由于辐射地板与高温壁表面直接进行长波辐射热交换并吸收太阳辐射,因此它是有效的显热除热终端。大空间中的金属天花板和许多先进材料(例如低辐射涂层)的发射率范围为0.2至0.9,与传统建筑材料的发射率(0.9-0.95)显着不同,这影响了室内长波热交换。而且,入射到地板表面的瞬态太阳辐射的数量可能会发生巨大变化,从而导致辐射地板的冷却能力出现显着差异,例如,从30到40 W / m(2)到超过100 W / m(2) )。提出了一种考虑发射率的长波辐射热交换的简单计算方法,定量描述了大空间中天窗和侧窗对太阳辐射的位置和持续时间。基于这种新方法,提出了一个典型的案例研究,其中计算了机场大空间中辐射地板的冷却能力。该案例研究还展示了具有不同材料发射率和瞬态太阳辐射值的大空间中辐射地板的设计。 (C)2015 Elsevier Ltd.保留所有权利。

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