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首页> 外文期刊>The Science of the Total Environment >Combining climatic and geo-hydrological preconditions as a method to determine world potential for aquifer thermal energy storage
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Combining climatic and geo-hydrological preconditions as a method to determine world potential for aquifer thermal energy storage

机译:结合气候和地球水文前提条件,确定含水层热能存储的世界潜力

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摘要

A heat pump combined with Aquifer Thermal Energy Storage (ATES) is proven technology to economically and sustainably provide space heating and cooling. The two most important preconditions for the applicability of ATES are favorable climatic conditions and the availability of a suitable aquifer. This paper shows how these two preconditions can be combined to identify where in the world ATES potential is present, or will become present as a consequence of climate change. Countries and regions are identified where regulation and stimulation measures may increase application of ATES technologies and thus help reduce CO_2- emissions. Two types of data determine ATES suitability, and their combination with a 3rd identifies potential hot-spots in the world: 1) geo-hydrological conditions, 2) current and projected climate classification and 3) urbanization. Our method combines the data into an ATES-suitability score as explained in this paper. On the one hand the results confirm the suitability for ATES where it is already applied and on the other they identify places where the technology is or will become suitable. About 15% of urban population lived in areas with high potential for ATES at the start of the 21st century, but this figure will decrease to about 5% during the 21st century as a consequence of expected climate change. Around 50% of urban population currently lives in areas of medium ATES suitability, a percentage that will remain constant Demand for ATES is likely to exceed available subsurface space in a significant part of the urban areas.
机译:结合了含水层热能存储(ATES)的热泵是行之有效的技术,可以经济,可持续地提供空间供暖和制冷。适用于ATES的两个最重要的前提条件是有利的气候条件和合适的含水层的可用性。本文展示了如何将这两个前提条件结合起来,以确定世界上存在或可能因气候变化而出现的ATES潜力。确定了监管和刺激措施可以增加ATES技术应用并因此有助于减少CO_2-排放的国家和地区。两种类型的数据可确定ATES的适用性,将它们与第三种数据结合使用可确定世界上潜在的热点:1)地理水文条件,2)当前和预计的气候分类以及3)城市化。如本文所述,我们的方法将数据合并到ATES适用性评分中。一方面,结果证实了已应用ATES的适用性,另一方面,它们确定了该技术适用或将变得适用的地方。在21世纪初,约有15%的城市人口居住在极有可能发生ATES的地区,但是由于预期的气候变化,这一数字在21世纪将减少到5%。当前约有50%的城市人口居住在中等ATES适宜性地区,这一比例将保持不变。在很大一部分城市地区,对ATES的需求可能会超过可用的地下空间。

著录项

  • 来源
    《The Science of the Total Environment》 |2015年第15期|621-633|共13页
  • 作者单位

    Delft University of Technology, Department of Water Management, PO Box 5048, 2600 GA, Delft, The Netherlands,KWR, Water cycle Research Institute, Nieuwegein, The Netherlands;

    Department of water management, Delft University of Technology, Delft, The Netherlands,Waternet, Public Water Cycle Company Amsterdam, The Netherlands;

    Department of water management, Delft University of Technology, Delft, The Netherlands,Deltares, Water Research Institute, Utrecht, The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aquifer thermal energy storage (ATES); World potential for ATES;

    机译:含水层热能存储(ATES);ATES的世界潜力;

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