“…The first insight-based PI approach was developed by Savulescu et al (2002), and an optimisation based approach by Bagajewicz et al (2002). Bogataj and Bagajewicz (2008) proposed an MINLP approach by combining WN with the HEN model by , modified for the case of mixing and splitting of streams within a HEN superstructure. Dong et al (2008) employed the modified state-space superstructure for WNs and HEN.…”
Section: Water Pinch Analysis For Water Management and Minimisationmentioning
“…The first insight-based PI approach was developed by Savulescu et al (2002), and an optimisation based approach by Bagajewicz et al (2002). Bogataj and Bagajewicz (2008) proposed an MINLP approach by combining WN with the HEN model by , modified for the case of mixing and splitting of streams within a HEN superstructure. Dong et al (2008) employed the modified state-space superstructure for WNs and HEN.…”
Section: Water Pinch Analysis For Water Management and Minimisationmentioning
“…The approach is an insight-based sequential procedure where direct heat transfer is maximized, while maintaining the minimum freshwater consumption in the first stage, and then the HEN is designed in the second stage. A superstructure-based mathematical optimization model is then presented by Bogataj and Bagajewicz [19] for non-isothermal multi-contaminant WN with only water-using process units. This MINLP model considers the typical WNf model simultaneously with a modified HEN superstructure presented by Yee and Grossmann [2].…”
Section: Projected Global Water Scarcity 2025mentioning
This paper provides an overview of recent development in the area of optimal synthesis of process water networks in which a major goal is to reduce the freshwater consumption by the reuse and recycle of process and treatment streams. The recent models can globally optimize these networks through mixed-integer nonlinear programming techniques. We discuss the application and impact of these techniques to biofuel plants, which are known to consume large amounts of water.
“…The method has also considered a trade-off between water network and HEN, non-isothermal and generation of separate systems. Another MINLP model for HIWNs synthesis has been determined by Bogataj and Bagajewicz (2008). The established model includes the NLP formulation of water network superstructure and the MINLP formulation of heat exchange network superstructure for non-isothermal stream mixing.…”
Section: Heat Integrated Water Networkmentioning
confidence: 99%
“…The models presented by Leewongtanawit and Kim (2008) and Bogataj and Bagajewicz (2008) utilised heuristics to reduce the number of hot and cold streams in the HEN, which had reduced the size of the model. However, the limitation of these approaches is that, they might exclude the potential promising HIWNs.…”
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