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首页> 外文期刊>Environmental Science and Pollution Research >Life-cycle impacts of shower water waste heat recovery: case study of an installation at a university sport facility in the UK
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Life-cycle impacts of shower water waste heat recovery: case study of an installation at a university sport facility in the UK

机译:淋浴水废热回收的生命周期影响:英国大学体育设施安装的案例研究

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Recovering heat from waste water discharged from showers to preheat the incoming cold water has been promoted as a cost-effective, energy-efficient, and low-carbon design option which has been included in the UK’s Standard Assessment Procedure (SAP) for demonstrating compliance with the Building Regulation for dwellings. Incentivized by its carbon cost-effectiveness, waste water heat exchangers (WWHX) have been selected and incorporated in a newly constructed Sports Pavilion at the University of Brighton in the UK. This £2-m sports development serving several football fields was completed in August 2015 providing eight water- and energy-efficient shower rooms for students, staff, and external organizations. Six of the shower rooms are located on the ground floor and two on the first floor, each fitted with five or six thermostatically controlled shower units. Inline type of WWHX were installed, each consisted of a copper pipe section wound by an external coil of smaller copper pipe through which the cold water would be warmed before entering the shower mixers. Using the installation at Sport Pavilion as the case study, this research aims to evaluate the environmental and financial sustainability of a vertical waste heat recovery device, over a life cycle of 50?years, with comparison to the normal use of a PVC-u pipe. A heat transfer mathematical model representing the system has been developed to inform the development of the methodology for measuring the in-situ thermal performance of individual and multiple use of showers in each changing room. Adopting a system thinking modeling technique, a quasi-dynamic simulation computer model was established enabling the prediction of annual energy consumptions under different shower usage profiles. Data based on the process map and inventory of a functional unit of WWHX were applied to a proprietary assessment software to establish the relevant outputs for the life-cycle environmental impact assessment. Life-cycle cost models were developed and industry price book data were applied. The results indicated that the seasonal thermal effectiveness was over 50% enabling significant energy savings through heat recovery that led to short carbon payback time of less than 2?years to compensate for the additional greenhouse gas emissions associated with the WWHX. However, the life-cycle cost of the WWHX is much higher than using the PVC pipe, even with significant heat recovered under heavy usage, highlighting the need to adopt more economic configurations, such as combining waste water through fewer units, in order to maximize the return on investment and improve the financial viability.
机译:从淋浴中排出的废水中恢复热量以预热进入的冷水已被推广为具有符合英国标准评估程序(SAP)中包含的具有成本效益,节能和低碳设计选项,以证明遵守住宅的建设规则。通过其碳成本效益激励,废水热交换器(WWHX)被选中并在英国布莱顿大学的新建的体育馆中融入了新建的体育馆。这款2美元的体育开发服务于若干足球场于2015年8月完成,为学生,员工和外部组织提供八个水和节能淋浴房。六个淋浴间位于底层和两块楼层,每个淋浴间都配有五个或六个恒温控制淋浴单元。安装了内联类型的WWHX,每个都是由铜管部分由较小的铜管的外部线圈缠绕,在进入淋浴间搅拌机之前将温暖冷水。在体育馆的安装作为案例研究中,本研究旨在评估垂直废热回收装置的环境和金融可持续性,在50岁的50岁以下的生命周期中,与PVC-U管的正常使用相比。已经开发出一种表示系统的传热数学模型,以便于开发用于测量单个更换室中的个体的原位热性能和多次使用的方法。采用系统思维建模技术,建立了一种准动态仿真计算机模型,从而能够在不同淋浴使用型材下预测年度能量消耗。基于流程图和WWHX功能单元的数据应用于专有的评估软件,以确定生命周期环境影响评估的相关产出。开发了生命周期成本模型,并应用了行业价格账簿数据。结果表明,季节性热效率超过50%,通过热量回收,使得碳回收时间短于2多年的碳回收时间少于2岁以弥补与WWHX相关的额外温室气体排放量。然而,WWHX的生命周期成本远远高于使用PVC管道,即使在大量使用下恢复的显着热量,突出了采用更具经济配置的需要,例如将废水组合通过更少的单位,以便最大化投资回报和改善金融活力。

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