Energy efficiency solutions for driers used in the glass manufacturing and processing industry

Energy conservation is relevant to increasing efficiency in energy projects, by saving energy, by its’ rational use or by switching to other forms of energy. The goal is to secure energy supply on short and long term, while increasing efficiency. These are enforced by evaluating the companies’ energ...

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Main Authors: Pătrașcu Roxana, Minciuc Eduard, Darie George, Voronca Ștefan-Dominic, Bădicu Andreea-Ioana
Format: Article
Language:English
Published: Sciendo 2017-07-01
Series:Proceedings of the International Conference on Business Excellence
Subjects:
Online Access:https://doi.org/10.1515/picbe-2017-0021
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spelling doaj-57e5224b945246eabcaa57e1af40a5872021-09-05T13:59:39ZengSciendoProceedings of the International Conference on Business Excellence2558-96522017-07-0111119920810.1515/picbe-2017-0021picbe-2017-0021Energy efficiency solutions for driers used in the glass manufacturing and processing industryPătrașcu Roxana0Minciuc Eduard1Darie George2Voronca Ștefan-Dominic3Bădicu Andreea-Ioana4Universitatea POLITEHNICA București, Bucharest, RomaniaUniversitatea POLITEHNICA București, Bucharest, RomaniaUniversitatea POLITEHNICA București, Bucharest, RomaniaUniversitatea POLITEHNICA București, Bucharest, RomaniaUniversitatea POLITEHNICA București, Bucharest, RomaniaEnergy conservation is relevant to increasing efficiency in energy projects, by saving energy, by its’ rational use or by switching to other forms of energy. The goal is to secure energy supply on short and long term, while increasing efficiency. These are enforced by evaluating the companies’ energy status, by monitoring and adjusting energy consumption and organising a coherent energy management. The manufacturing process is described, starting from the state and properties of the raw material and ending with the glass drying technological processes involved. Raw materials are selected considering technological and economic criteria. Manufacturing is treated as a two-stage process, consisting of the logistic, preparation aspect of unloading, transporting, storing materials and the manufacturing process itself, by which the glass is sifted, shredded, deferrized and dried. The interest of analyzing the latter is justified by the fact that it has a big impact on the final energy consumption values, hence, in order to improve the general performance, the driers’ energy losses are to be reduced. Technological, energy and management solutions are stated to meet this problem. In the present paper, the emphasis is on the energy perspective of enhancing the overall efficiency. The case study stresses the effects of heat recovery over the efficiency of a glass drier. Audits are conducted, both before and after its’ implementation, to punctually observe the balance between the entering and exiting heat in the drying process. The reduction in fuel consumption and the increase in thermal performance and fuel usage performances reveal the importance of using all available exiting heat from processes. Technical faults, either in exploitation or in management, lead to additional expenses. Improving them is in congruence with the energy conservation concept and is in accordance with the Energy Efficiency Improvement Program for industrial facilities.https://doi.org/10.1515/picbe-2017-0021energy efficiencyheat recoveryglass industrydrierenergy audit
collection DOAJ
language English
format Article
sources DOAJ
author Pătrașcu Roxana
Minciuc Eduard
Darie George
Voronca Ștefan-Dominic
Bădicu Andreea-Ioana
spellingShingle Pătrașcu Roxana
Minciuc Eduard
Darie George
Voronca Ștefan-Dominic
Bădicu Andreea-Ioana
Energy efficiency solutions for driers used in the glass manufacturing and processing industry
Proceedings of the International Conference on Business Excellence
energy efficiency
heat recovery
glass industry
drier
energy audit
author_facet Pătrașcu Roxana
Minciuc Eduard
Darie George
Voronca Ștefan-Dominic
Bădicu Andreea-Ioana
author_sort Pătrașcu Roxana
title Energy efficiency solutions for driers used in the glass manufacturing and processing industry
title_short Energy efficiency solutions for driers used in the glass manufacturing and processing industry
title_full Energy efficiency solutions for driers used in the glass manufacturing and processing industry
title_fullStr Energy efficiency solutions for driers used in the glass manufacturing and processing industry
title_full_unstemmed Energy efficiency solutions for driers used in the glass manufacturing and processing industry
title_sort energy efficiency solutions for driers used in the glass manufacturing and processing industry
publisher Sciendo
series Proceedings of the International Conference on Business Excellence
issn 2558-9652
publishDate 2017-07-01
description Energy conservation is relevant to increasing efficiency in energy projects, by saving energy, by its’ rational use or by switching to other forms of energy. The goal is to secure energy supply on short and long term, while increasing efficiency. These are enforced by evaluating the companies’ energy status, by monitoring and adjusting energy consumption and organising a coherent energy management. The manufacturing process is described, starting from the state and properties of the raw material and ending with the glass drying technological processes involved. Raw materials are selected considering technological and economic criteria. Manufacturing is treated as a two-stage process, consisting of the logistic, preparation aspect of unloading, transporting, storing materials and the manufacturing process itself, by which the glass is sifted, shredded, deferrized and dried. The interest of analyzing the latter is justified by the fact that it has a big impact on the final energy consumption values, hence, in order to improve the general performance, the driers’ energy losses are to be reduced. Technological, energy and management solutions are stated to meet this problem. In the present paper, the emphasis is on the energy perspective of enhancing the overall efficiency. The case study stresses the effects of heat recovery over the efficiency of a glass drier. Audits are conducted, both before and after its’ implementation, to punctually observe the balance between the entering and exiting heat in the drying process. The reduction in fuel consumption and the increase in thermal performance and fuel usage performances reveal the importance of using all available exiting heat from processes. Technical faults, either in exploitation or in management, lead to additional expenses. Improving them is in congruence with the energy conservation concept and is in accordance with the Energy Efficiency Improvement Program for industrial facilities.
topic energy efficiency
heat recovery
glass industry
drier
energy audit
url https://doi.org/10.1515/picbe-2017-0021
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AT dariegeorge energyefficiencysolutionsfordriersusedintheglassmanufacturingandprocessingindustry
AT voroncastefandominic energyefficiencysolutionsfordriersusedintheglassmanufacturingandprocessingindustry
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