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Material flow analysis and integration of watersheds and drain systems: II. Integration and solution strategies with application to ammonium management in Bahr El-Baqar drain system

机译:流域和排水系统的物质流分析和集成:II。集成和解决方案策略在Bahr El-Baqar排水系统的铵盐管理中的应用

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The objective of this paper is to develop a systematic methodology for mass integration in drain systems and watersheds. Mass integration is a holistic approach to the tracking, transformation, and allocation of species and streams. The watershed and drain system is first discretized into reaches. The MFA model developed in part I of this work (Simulation and Application to Ammonium Management in Bahr El-Baqar Drain System) is used to describe the environmental phenomena that affect the fate and transport of targeted species and the operators that characterize the system inputs and outputs as they relate to the surroundings. Next, we develop an integration framework which encompasses sources, sinks, and interception technologies to aid in the development for nitrogen-management strategies. The simulation model was transformed into a synthesis model by introducing optimization variables and including models for the potential management strategies. The problem of minimizing negative environmental impact subject to technical, social, economic, and regulatory constraints was posed as a nonlinear optimization program whose solution identified and synthesized the most effective solution strategies. These mathematical models and management strategies were coded into a computer-aided tool using LINGO programming platform. The program can be readily modified to address a variety of cases. Tradeoffs and sensitivity analysis were established using the devised model. The devised framework was applied to an Egyptian drain system (Bahr El-Baqar) along with the outfall to Lake Manzala. The results of the case study provide solution strategies for nitrogen management along with their technical, economic, and environmental implications.
机译:本文的目的是为排水系统和流域中的质量集成开发一种系统的方法。大规模整合是对物种和河流进行跟踪,转化和分配的整体方法。分水岭和排水系统首先离散到河段。在这项工作的第一部分(Bahr El-Baqar排水系统中铵盐管理的模拟和应用)中开发的MFA模型用于描述影响目标物种的命运和运输以及表征系统输入和输出的操作员的环境现象。与周围环境有关的输出。接下来,我们将开发一个包含源,汇和拦截技术的集成框架,以帮助开发氮管理策略。通过引入优化变量并包括潜在管理策略的模型,将仿真模型转换为综合模型。最小化受技术,社会,经济和法规约束的负面环境影响的问题是一个非线性优化程序,其解决方案确定并综合了最有效的解决方案策略。使用LINGO编程平台,将这些数学模型和管理策略编码到计算机辅助工具中。可以轻松修改该程序以解决各种情况。使用设计的模型建立了权衡和敏感性分析。设计的框架连同通往曼萨拉湖的排水口一起应用于埃及的排水系统(Bahr El-Baqar)。案例研究的结果为氮管理及其技术,经济和环境影响提供了解决方案。

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