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Implementation of sustainable sanitation in existing urban areas: long-term strategies for an optimised solution

机译:在现有城市地区实施可持续卫生设施:优化解决方案的长期战略

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If technologies for decentralised sanitation and reuse (DESAR) and for natural stormwater management should at least partially replace existing systems, then intensive reconstruction work becomes essential. A conversion can only be realised successively over a long period due to high construction and financial expenses and requires new strategies. This paper presents the development and practical implementation of a mathematical tool to find an optimised strategy for the realisation of alternative and more decentralised drainage and sanitation concepts in existing urban areas. The succession of construction measures (e.g. the implementation of decentralised greywater recycling) for the whole period of consideration is determined based upon a mathematical optimisation model on the condition that the favoured future state is known. The model describes the complex interdependencies of the urban water and nutrient cycle and enables the minimisation of both financial efforts and ecological impacts on the way toward the future state. The results of the implementation for a rural area in Germany show that the mathematical optimisation is an adequate instrument to support decision-making processes in finding strategies for the realisation of sustainable urban water management.
机译:如果用于分散式卫生和再利用(DESAR)的技术以及用于天然雨水管理的技术至少应部分取代现有系统,那么密集的重建工作就变得至关重要。由于高昂的建设和财务费用,转换只能在很长一段时间内连续实现,并且需要新的策略。本文介绍了一种数学工具的开发和实际实施,以寻找一种优化的策略,以在现有的城市地区实现替代性的和更分散的排水和卫生概念。在考虑到有利的未来状态的条件下,基于数学优化模型确定整个考虑期间的一系列施工措施(例如,实施分散式灰水循环利用)。该模型描述了城市水和养分循环的复杂相互依存关系,并能将财务努力和生态影响最小化,以实现未来状态。在德国农村地区实施的结果表明,数学优化是支持决策过程寻找实现可持续城市水管理策略的适当工具。

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