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Project CARE: reducing wet weather overflows to improve beach water quality

机译:关心项目:减少雨水过多以改善海滩水质

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The people who live in North Shore City (New Zealand) consider the beaches as their greatest asset. Following public outcry on frequent beach pollution caused by wet weather sewer overflows, Project CARE commenced in 1998 to plan the improvements to the city's separated wastewater and stormwater systems to protect the streams and beaches, particularly from a public health perspective. The investigation included building hydrological and hydraulic models to represent the wastewater and stormwater systems and a receiving waters model to simulate the impacts on the beaches. These models were later used to explore options for improvement. It was found that North Shore City has a very leaky wastewater system that is undercapacity. The resulting wet weather overflows (12 per year on average) are the most important contributor to the problem although stormwater pollution alone is big enough to cause problems (at a smaller magnitude). A cost optimisation model (iterative process using performance/cost relationships) was then used to assist in identifying the optimal set of improvement works (storage, repair and increased capacity, wastewater treatment plant) to meet different performance targets and to cater for growth up to the year 2050. Cost Benefit analyses, looking at improvements in system performance and water quality, show diminishing returns for performance levels better than 2 overflows per year. The total costs that meet this target are estimated at almost NZ
机译:住在北岸市(新西兰)的人们认为海滩是他们最大的财富。在公众对由潮湿的天气下水道溢流引起的频繁海滩污染的强烈抗议之后,CARE项目于1998年开始,计划改善该市分离的废水和雨水系统,以保护溪流和海滩,特别是从公共卫生角度而言。调查包括建立代表废水和雨水系统的水文和水力模型,以及模拟对海滩的影响的接收水模型。这些模型后来被用于探索改进方案。结果发现,北岸市的污水处理系统漏水严重,产能不足。造成的潮湿天气溢出(平均每年12次)是造成该问题的最重要因素,尽管仅雨水污染就足以引起问题(幅度较小)。然后,使用成本优化模型(使用性能/成本关系的迭代过程)来帮助确定最佳的改进工作集(存储,维修和增加容量,废水处理厂),以满足不同的性能目标并满足增长直至2050年的成本效益分析,着眼于系统性能和水质的改善,结果表明性能水平的回报递减,每年优于2次溢流。达到此目标的总费用估计约为NZ

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