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Model Predictive Control of Salinity in a Polder Ditch Under High Saline Groundwater Exfiltration Conditions: A Test Case

机译:高盐水地下水抗污染条件下膨胀沟渠盐度模型预测控制:测试用例

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Surface water salinization in deltaic areas due to saline groundwater exfiltration is an important issue. Saline surface water will not be appropriate for drinking water production, agricultural and industrial use, and therefore, freshwater diverted from rivers is used for flushing the canals and ditches in coastal areas. The effects of climate change, sea level increase and fresh water availability increases the stress on deltaic areas resulting in questioning current fresh water management strategies. In this paper, a Model Predictive Control (MPC) scheme is developed and tested for combined salinity and water level control of a polder ditch. The MPC scheme is coupled with Rapid Saline Groundwater Exfiltration Model (RSGEM) developed for fast calculation of exfiltration flux and concentration in a low-lying polder. For the test case presented in this paper, real data from Lissertocht catchment in Netherlands is used for RSGEM to see the performance of the MPC scheme for a real scenario. With open space for further research, results presented on this paper show that MPC of salinity in polders is capable of dealing with saline groundwater exfiltration modeled by RSGEM.
机译:在三角洲地区由于含盐地下水渗出地表水盐碱化是一个重要问题。盐水的地表水不适合饮用的水生产,农业和工业用途,因此,用于冲洗沟渠沿海地区河流淡水转移。气候变化,海平面上升和淡水供应的影响增加了造成当前质疑淡水管理战略三角洲地区的压力。在本文中,一个模型预测控制(MPC)方案被开发和用于圩田沟的组合盐度和水位控制测试。所述MPC方案耦接用于在低洼圩田渗出通量和浓度的快速计算开发快速咸水渗出的模型(RSGEM)。对于本文介绍的测试情况下,从荷兰Lissertocht流域实际数据用于RSGEM看到MPC方案的性能进行一个真实的情景。随着进一步的研究空地,结果呈现在本文中显示,盐度的MPC在圩田能够处理由RSGEM模拟地下咸水渗出的。

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