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How global warming and building envelope will change buildings energy use in central Europe

机译:全球变暖和建筑围护结构将如何改变中欧的建筑能耗

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摘要

Due to its high thermal performance, ground source heat pump systems (GSHP_s) have been introduced as an alternative to reduce energy consumption of heating and cooling systems. The thermal performance of GSHP_s strongly depends on ground temperature and energy demand for heating and cooling during the year. Certainly, increasing the global temperature means warmer ground. On the other hand, the thermal load of a building is influenced by thermal quality of building envelop (TQBE) and also influenced by the ambient air temperature. There is absolutely no doubt that the global temperature has increased during the last century. Over time, the buildings designs are changing. These result in changed thermal load of the buildings, ground temperature, and thereby changed the thermal performance of GSHP_s. The objective of current work was to investigate the impact of TQBE under different global warming scenarios on driving energy and construction cost of GSHPs in Vienna. This was achieved by comparing the driving energy of the GSHP as well the required total length of the borehole heat exchanger for different GW scenarios and different TQBE. Under climate conditions of Vienna city study shows that improving the TQBE and increasing ambient air temperature result in reduced driving energy of GSHP. While is it not obvious for the required total borehole depth. Namely, after a certain degree of GW, increasing TQBE might result in increased required borehole depth.
机译:由于其较高的热性能,已引入了地源热泵系统(GSHP_s)作为替代方案,以减少加热和冷却系统的能耗。 GSHP_s的热力性能很大程度上取决于地面温度以及一年中加热和冷却的能源需求。当然,升高全球温度意味着地面变暖。另一方面,建筑物的热负荷受建筑物封壳(TQBE)的热质量影响,并且还受环境空气温度影响。毫无疑问,上个世纪全球气温上升。随着时间的流逝,建筑物的设计正在发生变化。这些导致建筑物的热负荷,地面温度发生变化,从而改变了GSHP_s的热性能。当前工作的目的是研究在不同的全球变暖情景下TQBE对维也纳GSHP的驱动能源和建筑成本的影响。这是通过比较GSHP的驱动能量以及不同GW场景和不同TQBE所需的井壁热交换器总长度来实现的。在维也纳城市气候条件下的研究表明,改善TQBE和提高周围空气温度会导致GSHP的驱动能量降低。虽然对于所需的总钻孔深度而言并不明显。即,在一定程度的GW之后,增加的TQBE可能导致所需的井眼深度增加。

著录项

  • 来源
    《Applied Energy》 |2012年第2012期|p.999-1004|共6页
  • 作者单位

    Department of Civil, Environmental and Natural Resources Engineering, Lulea University of Technology, SE-97187 Lulea, Sweden;

    Department of Engineering Sciences and Mathematics, Lulea University of Technology, SE-97187 Lulea, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    global warming; building envelope; ground source heat pump;

    机译:全球暖化;建筑围护结构;地源热泵;

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