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Fuzzy optimization model for integrated management of total nitrogen loads from distributed point and nonpoint sources in watershed

机译:流域分布点和非点源总氮负荷综合管理的模糊优化模型

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摘要

A fuzzy optimization model is developed to allocate allowable total nitrogen (T-N) loads to distributed nonpoint sources (NPSs) and point sources (PSs) in a watershed for river water quality management using the linear programing technique. The watershed is divided into uniform grid cells on which T-N loads issuing from NPSs such as paddy fields, upland crop fields and cities are controlled. A geographic information system integrated with the digital elevation model facilitates computation of route lengths of surface and subsurface flows from cells to a river running through the watershed. The T-N loads discharged from their sources are assumed to decay, subject to distance-related first-order kinetics. As management goals, maximizations of total allowable NPS loads, total allowable PS loads and total yield of rice are considered from environmental and economic viewpoints. A prime constraint is an effluent limitation standard for the aggregate amount of loads that arrive at the downstream end of the river. The fuzzy sets theory helps appropriately describe vague attitudes of decision-makers (i.e., stakeholders and management authorities) in terms of constraints and conflicting goals. An application of the fuzzy optimization model, developed as animprovement over our last nonfuzzy model, to a real watershed in Shiga prefecture, Japan, demonstrates that the fuzzy model embodies our last model, and is capable of creating management alternatives for T-N load allocation in a more practical and flexible manner.
机译:开发了一种模糊优化模型,用于使用线性编程技术将允许的总氮(T-N)负载分配到分布的河流水质管理中的分布式非点源(NPS)和点源(PSS)。流域分为均匀的网格细胞,在其中控制从NPS(如稻田),旱地庄稼和城市等NPS的T-N负载。与数字高度模型集成的地理信息系统有助于计算从细胞到穿过流域的河流中的表面和地下流量的路径长度。假设从它们的源放电的T-N负载衰减,受距离相关的一阶动力学。作为管理目标,从环境和经济观点考虑了总允许的NPS负荷,总允许的NPS负荷,总允许的PS载荷和总产量的最大化。主要约束是到达河下游末端的荷载量的流出限制标准。模糊集合理论有助于在制约因素和冲突的目标方面适当地描述决策者(即利益攸关方和管理部门)的模糊态度。在日本滋贺县的真正流域中,发展模糊优化模型的应用,展示了模糊模型体现了我们的最后一个模型,并且能够在一个中创建管理替代品的替代品更实用灵活的方式。

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