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Research on the influence of uneven solar radiation distribution on the radiant floor heating system in railway stations on Tibetan Plateau

机译:藏高原火车站辐射地板加热系统对辐射地板加热系统影响的研究

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In cold regions, radiant floor heating systems are commonly used in public buildings due to better thermal comfort and lower energy consumption. However, in transportation buildings with many transparent envelopes such as railway stations on Tibetan Plateau, the strong solar radiation entering into the station may cause local overheating, which has a great effect on the radiant floor heating system. In this paper, a railway station on Tibetan Plateau is simulated to investigate the influence of uneven solar radiation distribution on the radiant floor heating system. Results show that due to the strong solar radiation, the floor surface temperature and indoor operative temperature in some parts of the waiting hall can reach up to 30 °C and 26 °C, respectively. The temperature difference of the floor surface can even exceed 5 °C occasionally during the heating period. According to the results, it can be found that the method of reducing the heating in the area with strong solar radiation and making full use of solar radiation for heating is an effective way to improve the indoor thermal comfort and reduce the heating energy consumption of heating system.
机译:在寒冷地区,由于更好的热舒适度和较低的能量消耗,辐射地板采暖系统通常用于公共建筑物。然而,在具有许多透明信封的运输建筑物,如藏高原的火车站,进入车站的强烈的太阳辐射可能导致局部过热,这对辐射地板采暖系统具有很大的效果。本文将模拟藏高平台的火车站探讨了不均匀太阳辐射分布对辐射地板加热系统的影响。结果表明,由于太阳辐射强,楼层表面温度和室内温度分别可达30°C和26°C。在加热时段期间,地板表面的温度差甚至可以超过5°C。根据结果​​,可以发现,在具有强大的太阳辐射和充分利用太阳辐射的区域中减少了该区域的加热方法是提高室内热舒适度并降低加热的加热能耗的有效方法系统。

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