Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure

The aim of this study is application of an approach for solution of two-stage stochastic optimization problem for design of heat-integrated Autothermal Thermophilic Aerobic Digestion (ATAD) bioreactors system for municipal wastewater treatment operating under uncertainties. It incorporates in a comm...

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Main Authors: Rayka K. Vladova, Natasha Gr. Vaklieva-Bancheva, Elisaveta G. Kirilova
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/601
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spelling doaj-8b6f31c2a36f4464a7ce2c15f1f9f8e52021-02-17T20:58:50ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-08-017010.3303/CET1870171Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure Rayka K. VladovaNatasha Gr. Vaklieva-BanchevaElisaveta G. KirilovaThe aim of this study is application of an approach for solution of two-stage stochastic optimization problem for design of heat-integrated Autothermal Thermophilic Aerobic Digestion (ATAD) bioreactors system for municipal wastewater treatment operating under uncertainties. It incorporates in a common superstructure of two models of heat integration with one heat storage tank and two heat storage tanks for storing the heat used for preheating the incoming into the ATAD system cold raw sludge. On the first stage of the approach heat exchanger networks areas and the volumes of the heat storage tanks are determined. On the second stage - the flows rates represented by respective heating and cooling times are determined. As an optimization criterion - the annual capital costs for needed for the purpose of redesign of the ATAD system equipment as heat exchangers, heat storage tanks and pumps is determined as well as operating costs related with energy consumption of used pumps. The optimization problem is solved using genetic algorithm. Implementation of the proposed approach results in reduction of the depth of the thermal shock and achievement of sustainability improvement of the ATAD system. https://www.cetjournal.it/index.php/cet/article/view/601
collection DOAJ
language English
format Article
sources DOAJ
author Rayka K. Vladova
Natasha Gr. Vaklieva-Bancheva
Elisaveta G. Kirilova
spellingShingle Rayka K. Vladova
Natasha Gr. Vaklieva-Bancheva
Elisaveta G. Kirilova
Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure
Chemical Engineering Transactions
author_facet Rayka K. Vladova
Natasha Gr. Vaklieva-Bancheva
Elisaveta G. Kirilova
author_sort Rayka K. Vladova
title Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure
title_short Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure
title_full Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure
title_fullStr Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure
title_full_unstemmed Improving the Energy Efficiency of the ATAD System through Redesign using Integration Superstructure
title_sort improving the energy efficiency of the atad system through redesign using integration superstructure
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2018-08-01
description The aim of this study is application of an approach for solution of two-stage stochastic optimization problem for design of heat-integrated Autothermal Thermophilic Aerobic Digestion (ATAD) bioreactors system for municipal wastewater treatment operating under uncertainties. It incorporates in a common superstructure of two models of heat integration with one heat storage tank and two heat storage tanks for storing the heat used for preheating the incoming into the ATAD system cold raw sludge. On the first stage of the approach heat exchanger networks areas and the volumes of the heat storage tanks are determined. On the second stage - the flows rates represented by respective heating and cooling times are determined. As an optimization criterion - the annual capital costs for needed for the purpose of redesign of the ATAD system equipment as heat exchangers, heat storage tanks and pumps is determined as well as operating costs related with energy consumption of used pumps. The optimization problem is solved using genetic algorithm. Implementation of the proposed approach results in reduction of the depth of the thermal shock and achievement of sustainability improvement of the ATAD system.
url https://www.cetjournal.it/index.php/cet/article/view/601
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AT natashagrvaklievabancheva improvingtheenergyefficiencyoftheatadsystemthroughredesignusingintegrationsuperstructure
AT elisavetagkirilova improvingtheenergyefficiencyoftheatadsystemthroughredesignusingintegrationsuperstructure
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