确定英国利用稳态和动态模型从废水中回收热量的潜力-初步结果

Shazia F. Ali, A. Gillich
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引用次数: 9

摘要

到2050年,英国计划创建“低碳社会”。为了实现这一雄心勃勃的目标,英国的供暖部门必须完全脱碳。因此,确定和部署低碳热源是一项紧迫的政策和研究重点。从污水中回收热量是一个相对较新的、有吸引力的选择,因为它可以帮助英国实现其气候变化目标,同时使供暖部门脱碳,减少对化石燃料的依赖。在生活环境中,废水通常在比环境温度更高的温度下排放(热/热能的载体),在到达污水处理厂之前,其能量会损失到(地面)环境中。从废水中回收这种热量可以成为相当大的能源和收入来源,并且对环境友好,因为它可以减少温室气体排放,节约资源并增加可再生能源的份额。在过去的十年中,世界上许多城市都成功地实施了废水热能回收,但英国是落后的。苏格兰的试点项目正在引领这一方向,但需要进一步的研究来建立证据基础,并在英国其他地方复制这一概念。伦敦南岸大学(LSBU)的家庭能源4明天(HE4T)项目就是为了解决这一证据差距而创建的。该项目的目标包括确定指定地点废水可回收热势的大小。目前的论文是HE4T项目的一部分,也是英国废水热回收系列产出的第二部分。在本文中,我们提供了一些初步测量数据,废水温度和流量的变化,稳态和动态模型结果,废水温度和指定地点的潜在热回收。早期的结果,他们的局限性和可能的路线,以解决这些限制与政策影响英国热战略一起讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determining the UK’s potential for heat recovery from wastewater using steady state and dynamic modelling - preliminary results
By 2050, UK plans to create ‘low carbon society’. To meet this ambitious target, UK’s heating sector must be completely decarbonized. The identification and deployment of low carbon heating sources is thus an urgent policy and research priority. Recovering heat from sewage wastewater is relatively new and attractive option as it can help UK move towards its climate change targets while decarbonising the heating sector & reducing the reliance on fossil fuels. In the domestic context, wastewater is normally discharged at higher temperature than ambient (a carrier of heat/ thermal energy) losses its energy to (ground) environment before it reaches to WWTP. Recovering this heat from wastewater could be a considerable source of energy, revenue and is environmental friendly as it results in the reduction of GHG emissions, resource conservation and in increase share of renewable energy. In last decade, many cities around the world have successfully implemented wastewater thermal energy recovery but UK is lagging behind. Pilot project such as in Scotland is leading the way, but further research is needed to build the evidence base and replicate the concept elsewhere in UK. The Home Energy 4 Tomorrow (HE4T) project at London South Bank University (LSBU) was created to address this evidence gap. The project objectives include sizing the heat potential recoverable from wastewater at designated sites. The current paper forms part of the HE4T project and the second in series of output on wastewater heat recovery in UK. In this paper we present some initially measured data, variations in wastewater temperature and flow, steady state and dynamic model results wastewater temperature and the potential heat recovery of the designated site. Early results, their limitations and possible routes to address these limitations are discussed along with policy implications for UK heat strategy.
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