A power dispatch model for a ferrochrome plant heat recovery cogeneration system

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dc.contributor.author Zhang, Lijun
dc.contributor.author Chennells, Michael
dc.contributor.author Xia, Xiaohua
dc.date.accessioned 2017-12-01T06:13:45Z
dc.date.issued 2018-10
dc.description.abstract A Organic Rankine Cycle waste heat recovery cogeneration system for heat recovery and power generation to relieve grid pressure and save energy cost for a ferrochrome smelting plant is investigated. Through the recovery and utilization of previously wasted heat from the facility’s internal smelting process off-gases, the cogeneration system is introduced to generate electrical power to supply the on-site electricity demand and feed electricity back to the utility grid when it is necessary and beneficial to do so. In addition, the cogeneration system generates cooling power through a lithium bromide-water solution absorption refrigeration cycle to meet the cooling requirements of the plant. The heat recovery process for power generation is modeled and the optimal power dispatching between the on-site loads and the utility grid is formulated as an economic power dispatching (EPD) problem, which aims to maximize the plant’s economic benefits by means of minimizing the cost of purchasing electricity from the utility and maximizing revenue from selling the generated electricity to the grid. Application of the developed model to a ferrochrome smelting plant in South Africa is presented as a case study. It is found that, for the studied case, more than $1,290,000 annual savings can be obtained as a result of the proposed heat recovery power generation system and the associated EPD model. In addition to this, more than $920,000 annual savings is obtained as a result of the generated cooling power via the proposed absorption refrigeration system. The combined cogeneration system is able to generate up to 4.4 MW electrical power and 11.3 MW cooling power from the recovered thermal energy that was previously wasted. en_ZA
dc.description.department Electrical, Electronic and Computer Engineering en_ZA
dc.description.embargo 2019-10-01
dc.description.librarian hj2017 en_ZA
dc.description.uri http://www.elsevier.com/locate/apenergy en_ZA
dc.identifier.citation Zhang, L., Chennells, M. & Xia, X. A power dispatch model for a ferrochrome plant heat recovery cogeneration system. Applied Energy (2018) vol. 227, pp. 180-189, http://dx.doi.org/10.1016/j.apenergy.2017.08.019. en_ZA
dc.identifier.issn 0306-2619 (print)
dc.identifier.issn 1872-9118 (online)
dc.identifier.other 10.1016/j.apenergy.2017.08.019
dc.identifier.uri http://hdl.handle.net/2263/63409
dc.language.iso en en_ZA
dc.publisher Elsevier en_ZA
dc.rights © 2017 Elsevier Ltd. All rights reserved. Notice : this is the author’s version of a work that was accepted for publication in Applied Energy. Changes resulting from the publishing process, such as peer review, editing, corrections, structural formatting, and other quality control mechanisms may not be reflected in this document. A definitive version was subsequently published in Applied Energy, vol. 227, pp. 180-189, 2018, doi : 10.1016/j.apenergy.2017.08.019. en_ZA
dc.subject Optimal power flow en_ZA
dc.subject Economic power dispatching (EPD) en_ZA
dc.subject Organic Rankine cycle (ORC) en_ZA
dc.subject Waste heat recovery en_ZA
dc.subject Utilization en_ZA
dc.subject Recovery en_ZA
dc.subject Power generation systems en_ZA
dc.subject Power dispatching en_ZA
dc.subject Lithium-bromide water en_ZA
dc.subject Combined cogeneration en_ZA
dc.subject Absorption refrigeration system en_ZA
dc.subject Water absorption en_ZA
dc.subject Waste heat utilization en_ZA
dc.subject Waste heat en_ZA
dc.subject Refrigeration en_ZA
dc.subject Rankine cycle en_ZA
dc.subject Meteorology en_ZA
dc.subject Electric power transmission networks en_ZA
dc.subject Electric power system economics en_ZA
dc.subject Electric load flow en_ZA
dc.subject Economics en_ZA
dc.subject Cooling en_ZA
dc.subject Cogeneration plants en_ZA
dc.subject Absorption cooling en_ZA
dc.title A power dispatch model for a ferrochrome plant heat recovery cogeneration system en_ZA
dc.type Postprint Article en_ZA


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