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Designing Rainwater Harvesting Systems Cost-Effectively in a Urban Water-Energy Saving Scheme by Using a GIS-Simulation Based Design System

机译:使用基于GIS仿真的设计系统以经济高效的方式设计城市节水方案中的雨水收集系统

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Current centralized urban water supply depends largely on energy consumption, creating critical water-energy challenge especially for many rapid growing Asian cities. In this context, harvesting rooftop rainwater for non-potable use has enormous potential to ease the worsening water-energy issue. For this, we propose a geographic information system (GIS)-simulation-based design system (GSBDS) to explore how rainwater harvesting systems (RWHSs) can be systematically and cost-effectively designed as an innovative water-energy conservation scheme on a city scale. This GSBDS integrated a rainfall data base, water balance model, spatial technologies, energy-saving investigation, and economic feasibility analysis based on a case study of eight communities in the Taipei metropolitan area, Taiwan. Addressing both the temporal and spatial variations in rainfall, the GSBDS enhanced the broad application of RWHS evaluations. The results indicate that the scheme is feasible based on the optimal design when both water and energy-savings are evaluated. RWHSs were observed to be cost-effective and facilitated 21.6% domestic water-use savings, and 138.6 (kWh/year-family) energy-savings. Furthermore, the cost of per unit-energy-saving is lower than that from solar PV systems in 85% of the RWHS settings. Hence, RWHSs not only enable water-savings, but are also an alternative renewable energy-saving approach that can address the water-energy dilemma caused by rapid urbanization.
机译:当前的集中式城市供水很大程度上取决于能源消耗,这给水能源挑战带来了严峻的挑战,尤其是对于许多快速增长的亚洲城市而言。在这种情况下,为非饮用水收集屋顶雨水具有巨大的潜力,可以缓解日益严重的水能问题。为此,我们提出了一种基于地理信息系统(GIS)的模拟设计系统(GSBDS),以探索如何系统地和成本有效地设计雨水收集系统(RWHS),作为城市规模的创新节水方案。 。该GSBDS结合了降雨资料库,水平衡模型,空间技术,节能研究和经济可行性分析,并基于台湾台北市辖区的八个社区进行了案例研究。针对降雨的时空变化,GSBDS增强了RWHS评估的广泛应用。结果表明,该方案是在优化设计的基础上进行节水节能的同时可行的。据观察,RWHS具有成本效益,可节省21.6%的国内用水量,并节省138.6(kWh /年家庭)的能源。此外,在85%的RWHS设置中,单位节能成本比太阳能光伏系统低。因此,RWHS不仅可以节水,而且还是一种可替代的可再生节能方法,可以解决由快速城市化引起的水能困境。

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