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When climate change is a fact! Adaptive strategies for drinking water production in a changing natural environment

机译:当气候变化成为事实时!不断变化的自然环境中适应性生产饮用水的策略

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摘要

Climate change increases water system dynamics through temperature changes, changes in precipitation patterns, evaporation, and water quality and water storage in ice packs. Water system dependent economical stakeholders, such as drinking water companies in the Netherlands, have to cope with consequences of climate change, e.g. floods and water shortages in river systems, upcoming of brackish ground water, salt water intrusion, increasing peak demands and microbiological activity due to temperature rise. In the past decades, however, both water systems and drinking water production have become more and more inflexible; water systems have been heavily regulated aiming at maximum security and economic functions and the drinking water supply in the Netherlands has grown into an inflexible, but cheap and reliable, system. At a water catchment scale, flexibility and adaptation are solutions to overcome climate change related consequences. Flexible adaptive strategies for drinking water production comprise new sources for drinking water production, application of storage concepts in the short term, and a redesign of large centralized systems, including flexible treatment plants, in the long term. Transition to flexible concepts will take decades because investment depreciation periods of assets are long. These strategies must be based on thorough knowledge of current assets to seize opportunities for change.
机译:气候变化通过温度变化,降水模式变化,蒸发,水质以及冰袋中的水存储来增加水系统动态。依赖水系统的经济利益相关者,例如荷兰的饮用水公司,必须应对气候变化的后果,例如洪水和河流系统缺水,即将到来的咸水,盐水的入侵,由于温度升高而导致的高峰需求和微生物活动增加。然而,在过去的几十年中,供水系统和饮用水生产都变得越来越缺乏灵活性。为了最大程度地保证安全和经济运行,对水系统进行了严格的监管,荷兰的饮用水供应已发展成为一种不灵活但价格便宜且可靠的系统。在集水规模上,灵活性和适应性是克服气候变化相关后果的解决方案。灵活的饮用水生产适应性策略包括新的饮用水生产来源,短期内应用存储概念以及长期重新设计大型的集中式系统,包括柔性处理厂。由于资产的投资折旧期很长,因此过渡到灵活的概念将需要数十年的时间。这些策略必须基于对流动资产的透彻了解,以抓住变化的机会。

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