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Controllability Study of a Dual Condenser Four Product DWC (CROSBI ID 723696)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Lukač, Goran ; Halvorsen, Ivar Johan ; Olujić, Žarko ; Dejanović, Igor Controllability Study of a Dual Condenser Four Product DWC. 2022

Podaci o odgovornosti

Lukač, Goran ; Halvorsen, Ivar Johan ; Olujić, Žarko ; Dejanović, Igor

engleski

Controllability Study of a Dual Condenser Four Product DWC

The sustainability of distillation operations could be maximized by implementation of four-product dividing wall columns (DWC), where appropriate, but this is hampered by the lack of related know-how and concerns about controllability of a demanding separation process occurring within a complex internal configuration including up to three liquid and three vapor splits. Due to its unique design featuring two separate overhead condensers, so-called 2-3-3 DWC configuration offers extra degrees of freedom compared to other feasible configurations of a four-product DWC, which, in theory, gives a possibility of manipulating directly one of the vapor splits. Present study is concerned with dynamic properties of a 2-3-3 DWC, and was carried out using established modelling methods and mathematical tools for control system synthesis, but at the same time taking practical limitations and feasibility into consideration. Therefore, a realistic multicomponent feed composition was used, as well as simple, established means of control. Closed-loop performance was evaluated using a series of controlled disturbances. Although the operation could be successfully stabilized, using simple temperature control without active vapor split manipulation could prove insufficient in regard to maintaining desired product composition in certain scenarios.

Distillation ; Dividing wall column ; Column control ; Dynamic simulation

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Podaci o prilogu

1151

2022.

objavljeno

Podaci o matičnoj publikaciji

Podaci o skupu

12th international conference Distillation & Absorption

poster

18.09.2022-21.09.2022

Toulouse, Francuska

Povezanost rada

Kemijsko inženjerstvo