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Mapping Thermal Energy Resource Potentials from Wastewater Treatment Plants

机译:绘制污水处理厂的热能资源潜力图

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Wastewater heat recovery via heat exchangers and heat pumps constitutes an environmentally friendly, approved and economically competitive, but often underestimated technology. By introducing the spatial dimension in feasibility studies, the results of calculations change considerably. This paper presents a methodology to estimate thermal energy resource potentials of wastewater treatment plants taking spatial contexts into account. In close proximity to settlement areas, wastewater energy can ideally be applied for heating in mixed-function areas, which very likely have a continuous heat demand and allow for an increased amount of full-load hours compared to most single-use areas. For the Austrian case, it is demonstrated that the proposed methodology leads to feasible results and that the suggested technology might reduce up to 17% of the Austrian global warming potential of room heating. The method is transferrable to other countries as the input data and calculation formula are made available. A broad application of wastewater energy with regard to spatial structures and spatial development potentials can lead to (1) increasing energy efficiency by using a maximum of waste heat and (2) a significant reduction of (fossil) energy consumption which results in a considerable reduction of the global warming potential of the heat supply (GWP) if electricity from renewables is used for the operation of heat pumps.
机译:通过热交换器和热泵回收废水的热量构成了一种环境友好,经认可且在经济上具有竞争力的技术,但常常被低估。通过在可行性研究中引入空间维度,计算结果将发生很大变化。本文提出了一种在空间条件下估算污水处理厂热能资源潜力的方法。理想情况下,在靠近居民区的地方,废水能量可用于混合功能区域的供热,与大多数一次性使用区域相比,混合功能区域很可能需要持续供热,并增加了满负荷工作时间。对于奥地利的情况,证明了所提出的方法论可以得出可行的结果,并且所提出的技术可能会减少奥地利全球房间供暖的全球升温潜能的17%。由于提供了输入数据和计算公式,因此该方法可以转移到其他国家。废水能源在空间结构和空间发展潜力方面的广泛应用可导致(1)通过最大程度地利用余热提高能源效率;(2)显着减少(化石)能源消耗,从而显着降低如果将来自可再生能源的电力用于热泵的运行,则全球供热(GWP)的潜在变暖潜力的百分比。

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