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Numerical study on energy efficiency and economy of a pipe-embedded glass envelope directly utilizing ground-source water for heating in diverse climates

机译:直接利用地源水在多种气候下供暖的嵌入式玻璃外壳的能效和经济性的数值研究

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摘要

Heat dissipation through glass envelopes accounts for a large proportion of building heating loads in winter. Limiting heat transfer through windows is critical, especially considering the rapid development of glass buildings. A pipe-embedded glass envelope that arranges pipes in the shading device of a double window system is combined with a ground-source heat exchanger (GSHE) for heating in this study. The heat transfer process and energy efficiency of the presented system are simulated in consideration of diverse climatic regions. The results show that the water even much cooler than the room temperature is adequate for auxiliary heating by this system. Water at 12 degrees C can reduce 30% of the heat flux when the outdoor temperature is 0 degrees C. In addition, the coefficient of the performance of the piping system exceeds a value of 10 because water temperatures are low. The energy saving rates of the system when applied to Beijing, Shanghai, Guangzhou are 16.8%, 20.2%, and 55.9% during the heating season. In the meantime, capacity of the traditional heating system can be reduced as peak heating loads have been decreased, e.g., a reduction of 40.7% in Shanghai. And the payback period is acceptable in these cities. However, in severely cold regions such as Harbin, the energy efficiency is low because the soil temperature is too low. Overall, the studied heating system is very promising as an energy saving method for glass buildings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在冬天,通过玻璃外壳散发的热量占建筑供暖负荷的很大一部分。限制通过窗户的传热至关重要,特别是考虑到玻璃建筑的快速发展。在本研究中,将管道嵌入双窗口系统的遮阳设备中的管道嵌入式玻璃外壳与地源热交换器(GSHE)结合使用。考虑到不同的气候区域,模拟了所提出系统的传热过程和能源效率。结果表明,即使温度比室温低得多的水也足以通过该系统进行辅助加热。当室外温度为0摄氏度时,处于12摄氏度的水可以减少30%的热通量。此外,由于水温低,管道系统的性能系数超过10的值。在供暖季节,将系统应用于北京,上海,广州的节能率分别为16.8%,20.2%和55.9%。同时,传统的供暖系统的容量可以随着峰值供热负荷的降低而降低,例如,上海的供暖负荷降低了40.7%。这些城市的投资回收期是可以接受的。但是,在哈尔滨等严寒地区,土壤温度过低,能源效率低。总体而言,所研究的供暖系统作为玻璃建筑的节能方法非常有前途。 (C)2017 Elsevier Ltd.保留所有权利。

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