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Steady state optimization of design and operation of desalination systems using Aspen Custom Modeler

机译:使用Aspen Custom Modeler对海水淡化系统的设计和运行进行稳态优化

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In this paper Multistage flash (MSF), Reverse Osmosis (RO) and hybrid MSF/RO desalination systems are optimized. A superstructure is set up for analyzing various process configurations in a single flowsheet. Detailed steady state models for MSF and RO sections of the superstructure are developed incorporating comprehensive physio-chemical properties and design characteristics. The model for the hybrid system combines individual models of MSF and RO systems and additional separators and mixers. The optimization variables consist of the operating and design variables, and the objective function is developed on the basis of economic and technical performance indicators. Primary results show that the hybridization of MSF and RO systems sharing common intake-outfall facilities presents lower cost with the additional benefits of higher overall recovery than MSF system and higher product quality than RO system. The sensitivity analysis of the cost parameters is performed to realize their effects on the selection of process configuration.
机译:本文对多级闪蒸(MSF),反渗透(RO)和混合MSF / RO脱盐系统进行了优化。建立了上层结构,以在单个流程图中分析各种过程配置。结合综合的理化性质和设计特征,开发了上层建筑的MSF和RO截面的详细稳态模型。混合系统的模型结合了MSF和RO系统的各个模型以及附加的分离器和混合器。优化变量由运行和设计变量组成,目标函数是根据经济和技术性能指标开发的。初步结果表明,共享公共进水口设施的MSF和RO系统的杂交具有较低的成本,并且具有比MSF系统更高的总体回收率和比RO系统更高的产品质量的额外好处。进行成本参数的敏感性分析,以了解其对工艺配置选择的影响。

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