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Operational Optimization of Large-Scale Parallel-Unit SWRO Desalination Plant Using Differential Evolution Algorithm

机译:基于差分进化算法的大型并联SWRO海水淡化厂运行优化

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摘要

A large-scale parallel-unit seawater reverse osmosis desalination plant contains many reverse osmosis (RO) units. If the operating conditions change, these RO units will not work at the optimal design points which are computed before the plant is built. The operational optimization problem (OOP) of the plant is to find out a scheduling of operation to minimize the total running cost when the change happens. In this paper, the OOP is modelled as a mixed-integer nonlinear programming problem. A two-stage differential evolution algorithm is proposed to solve this OOP. Experimental results show that the proposed method is satisfactory in solution quality.
机译:大型平行单元海水反渗透淡化厂包含许多反渗透(RO)单元。如果运行条件发生变化,则这些反渗透装置将无法在工厂建成之前计算出的最佳设计点上运行。工厂的运营优化问题(OOP)是找出运行计划,以在发生更改时最大程度地降低总运行成本。在本文中,将OOP建模为混合整数非线性规划问题。提出了一种两阶段差分进化算法来解决该OOP问题。实验结果表明,该方法在溶液质量上令人满意。

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