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Addressing urban water scarcity: reduce, treat and reuse - the third generation of management to avoid local resources boundaries

机译:解决城市缺水问题:减少,处理和再利用 - 第三代管理,以避免当地资源的界限

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摘要

Urban growth leads to geographically concentrated demand for water and food -and to growing volumes of wastewater and organic waste. Left unattended by city authorities, both local and planetary resources boundaries for water and nutrients will be transgressed. A novel partly dynamic flexible water balance is developed to explore ways to address a looming water crisis. A systems-based flow chart shows how rainwater, groundwater and recycled water interact. Measures from supply-, demand-, and reuse management are combined to manipulate the water flows. Water management in Bangalore, India, focused on supply management over the period 1964 to 2015, tapping distant rivers. This mind-set was challenged by a Water Disputes Tribunal and international financiers. Residents and industry were losing faith in the erratic water supply, and met part or all their water needs by digging or drilling wells. The flexible water balance is tested on Bangalore for the year 2050 when the population has increased from 8 to 20 million. New housing complexes can provide opportunities for effective arrangements to recycle water and nutrients, save energy, and reduce water pollution and air emissions. The flexible water balance indicates that Bangaloreans can get enough household water without tapping river water and still recharge groundwater.
机译:城市的增长导致对水和食物的地理上集中的需求-以及不断增加的废水和有机废物的数量。城市当局无人看管时,水和养分的本地和星球资源边界都将被超越。开发了一种新颖的部分动态灵活水平衡,以探索解决迫在眉睫的水危机的方法。基于系统的流程图显示了雨水,地下水和循环水之间的相互作用。供应,需求和再利用管理中的措施相结合,以控制水流。印度班加罗尔的水资源管理着眼于1964年至2015年间的供应管理,主要用于开发遥远的河流。这种思想观念受到水争议法庭和国际金融家的挑战。居民和工业界对不稳定的供水失去了信心,并通过挖井或钻井来满足其部分或全部用水需求。当班加罗尔的人口从8增至2000万时,将在班加罗尔测试灵活的水平衡。新的住宅区可以提供有效安排的机会,以循环利用水和养分,节约能源,并减少水污染和空气排放。灵活的水量平衡表明,班加罗尔人可以获取足够的家庭用水,而无需自来水,而仍可补充地下水。

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