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首页> 外文期刊>The Canadian Journal of Chemical Engineering >OPTIMISATION OF PETROLEUM REFINERY WATER NETWORK SYSTEMS RETROFIT INCORPORATING REUSE, REGENERATION AND RECYCLE STRATEGIES
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OPTIMISATION OF PETROLEUM REFINERY WATER NETWORK SYSTEMS RETROFIT INCORPORATING REUSE, REGENERATION AND RECYCLE STRATEGIES

机译:结合重复利用,再生和循环策略优化石油炼制水网络系统

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摘要

Scarcities in freshwater supply and increasingly stringent rules on wastewater discharges have emerged as major environmental concerns for petroleum refineries. Hence, this work attempts to develop an optimisation framework for refinery water network systems design and retrofit that integrates the complementary advantageous features of water pinch analysis (WPA). The framework explicitly incorporates water minimisation strategies by first postulating a superstructure representation that embeds all feasible flowsheet alternatives for implementing water reuse, regeneration and recycle (W3R) opportunities. Subsequently, a nonlinear programming (NLP) model is formulated based on the superstructure and computational experiments on a real-world case study are conducted using the CAMS/CONOPT3 modelling language platform. Post-optimality analysis on the numerical results are performed to achieve the desired water reuse quality, hence presenting a viable framework to aid decision-making in water network systems synthesis.
机译:淡水供应的短缺和对废水排放的日益严格的规定已经成为炼油厂的主要环境问题。因此,这项工作试图为炼油厂水网络系统的设计和改造开发一个优化框架,该框架整合了水夹点分析(WPA)的互补优势。该框架通过首先假设一个上层建筑表示形式明确地纳入了水最小化策略,该形式嵌入了所有可行的流程替代方案,以实现水的再利用,再生和再循环(W3R)机会。随后,基于上层结构制定了非线性规划(NLP)模型,并使用CAMS / CONOPT3建模语言平台在实际案例中进行了计算实验。对数值结果进行后优化分析,以达到所需的水回用质量,因此提出了一个可行的框架,以帮助水网络系统综合决策。

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