Mostrar el registro sencillo del ítem

dc.contributor.authorSarduy Gómez, Julio R.spa
dc.contributor.authorFelipe Viego, Percy R.spa
dc.contributor.authorTorres Díaz, Yamilespa
dc.contributor.authorPlascencia Álvarez Guerra, Mario A.spa
dc.contributor.authorSousa, Vladimirspa
dc.contributor.authorHaeseldonckx, Driesspa
dc.date.accessioned2019-05-22T13:45:46Z
dc.date.available2019-05-22T13:45:46Z
dc.date.issued2018-03-24
dc.identifier.issn21464553spa
dc.identifier.urihttp://hdl.handle.net/11323/4686spa
dc.description.abstractIn this paper, a predictive tool for the energy consumption of wheat milling process using multiple linear regression and a new energy performance indicator (EnPI) is proposed. This EnPI does not only consider the production of flour but also the particle size of flour and added water for softening wheat. The results of the study, carried out in a wheat mill plant in Cuba, show a good coincidence between the predicted and real energy consumption for the developed model. It also demonstrates the effectiveness of EnPI proposed as a tool for management and energy savings in the company under study. Due to the complexity of the proposed model, for obtaining the baseline and estimating the energy saving potential, a probabilistic method was used. It was statistically demonstrated by the determination index (R2), that the new proposed model is superior to the conventional model of energy versus production.spa
dc.description.abstractEn este documento, se propone una herramienta predictiva para el consumo de energía del proceso de molienda de trigo mediante regresión lineal múltiple y un nuevo indicador de rendimiento energético (EnPI). Este EnPI no solo considera la producción de harina sino también el tamaño de partícula de la harina y el agua agregada para ablandar el trigo. Los resultados del estudio, llevado a cabo en una planta de molino de trigo en Cuba, muestran una buena coincidencia entre el consumo de energía previsto y real para el modelo desarrollado. También demuestra la efectividad del EnPI propuesto como una herramienta para la gestión y el ahorro de energía en la empresa en estudio. Debido a la complejidad del modelo propuesto, para obtener la línea de base y estimar el potencial de ahorro de energía, se utilizó un método probabilístico. El índice de determinación (R2) demostró estadísticamente que el nuevo modelo propuesto es superior al modelo convencional de energía en comparación con la producción.spa
dc.language.isoeng
dc.publisherInternational Journal of Energy Economics and Policyspa
dc.rightsAttribution-NonCommercial-ShareAlike 4.0 Internationalspa
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0/spa
dc.subjectEnergy efficiencyspa
dc.subjectEnergy performance indicatorsspa
dc.subjectWheat millingspa
dc.subjectEficiencia energéticaspa
dc.subjectIndicadores de eficiencia energéticaspa
dc.subjectMolienda de trigospa
dc.titleA new energy performance indicator for energy management system of a wheat mill plantspa
dc.typeArtículo de revistaspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.identifier.instnameCorporación Universidad de la Costaspa
dc.identifier.reponameREDICUC - Repositorio CUCspa
dc.identifier.repourlhttps://repositorio.cuc.edu.co/spa
dc.relation.referencesAiyedun, O.P., Adeyemi, A.O. (2008), Energy efficiency of a manufacturing industry: A case study of Nigeria eagle flour mills limited, Ibadan. ASSET. An International Journal (Series B), 7(2), 91-103. Balci, F. (2017), Energy Management in Flour Plants. Available from: http://www.millermagazine.com. Bogoviz, A.V., Lobova, S.V., Ragulina, Y.V., Alekseev, A.N. (2018), A critical review of Russia’s energy efficiency policies in agriculture. International Journal of Energy Economics and Policy, 8(3), 67-75. Dhotel, C.L. (2012), Damaged Starch in the Flour Mill: How to Reduce the Electricity Bill. Doctoral Dissertation, Kansas State University. Available from: http://www.krex.k-state.edu/dspace/bitstream/ handle/2097/13684/CharlesLoubersac2012.pdf;sequence=3. Steerneman, M. (2013), Energy Saving. Energy Experts International B.V. Available from: http://www.flourmillers.eu. Doblado-Maldonado, A.F., Pike, O.A., Sweley, J.C., Rose, D.J. (2012), Key issues and challenges in whole wheat flour milling and storage. Journal of Cereal Science, 56(2), 119-126. Dróźdż, B. (2010), Effectiveness of electrical energy consumption in milling plant. Annals of Warsaw University of Life Sciences-SGGW. Agriculture, 56, 57-65. El-Porai, E.S., Salama, A.E., Sharaf, A.M., Hegazy, A.I., Gadallah, M.G.E. (2013), Effect of different milling processes on Egyptian wheat flour properties and pan bread quality. Annals of Agricultural Sciences, 58(1), 51-59. Eras, J.J.C., Santos, V.S., Gutiérrez, A.S., Plasencia, M.Á.G., Haeseldonckx, D., Vandecasteele, C. (2016), Tools to improve forecasting and control of the electricity consumption in hotels. Journal of cleaner production, 137, 803-812. Fang, Q., Haque, E., Spillman, C.K., Steele, P.R.J. (1998), Energy requirements for size reduction of wheat using a roller mill. Transactions of the ASAE, 41(6), 1713-1720. Fišteš, A.Z. (2015), Comparative analysis of milling results on the tail-end reduction passages of the wheat flour milling process: Conventional versus eight-roller milling system. Hemijska Industrija, 69(4), 395-403. Introna, V., Cesarotti, V., Benedetti, M., Biagiotti, S., Rotunno, R. (2014), Energy management maturity model: An organizational tool to foster the continuous reduction of energy consumption in companies. Journal of Cleaner Production, 83, 108-117. ISO, International Standard ISO 50001. (2011), Energy Management Systems-Requirements with Guidance for Use. ISO, International Standard ISO 50006 standard. (2014), Energy Management Systems-Measuring Energy Performance using Energy Baselines (Enb) and Energy Performance Indicators (Enpi)-General Principles And Guidance. Madrigal, J.A., Eras, J.J.C., Herrera, H.H., Santos, V.S., Morejón, M.B. (2018), Planificación energética para el ahorro de fueloil en una lavandería industrial. Ingeniare. Revista Chilena de Ingeniería, 26(1), 86-96. Nabavi-Pelesaraei, A., Hosseinzadeh-Bandbafha, H., QasemiKordkheili, P., Kouchaki-Penchah, H., Riahi-Dorcheh, F. (2016), Applying optimization techniques to improve of energy efficiency and GHG (greenhouse gas) emissions of wheat production. Energy, 103, 672-678. Okonigene, R.E., Omondaigbe, C. (2009), Electrical energy consumption pattern of flour mill in Nigeria. The Pacific Journal of Science and Technology, 10(2), 514-519. Olaoye, O.S., Adefajo, A.A., Ekindayo, S.O. (2014), Energy analysis of wheat processing plant in Nigeria. ARPN Journal of Engineering and Applied Science, 9(9), 1586-1591. Pehlken, A., Decker, A., Kottowski, C., Kirchner, A., Thoben, K.D. (2015), Energy efficiency in processing of natural raw materials under consideration of uncertainties. Journal of Cleaner Production, 106, 351-363. Pusnik, M., Al-Mansour, F., Sucic, B., Gubina, A.F. (2016), Gap analysis of industrial energy management systems in Slovenia. Energy, 108, 41-49. Quispe, E.C., López, I.D., Ferreira, F.J., Sousa, V. (2018), Unbalanced voltages impacts on the energy performance of induction motors. International Journal of Electrical and Computer Engineering (IJECE), 8(3), 1412-1422. Safa, M., Samarasinghe, S. (2011), Determination and modelling of energy consumption in wheat production using neural networks: Acase study in Canterbury province, New Zealand. Energy, 36(8), 5140-5147. Santos, V.S., Felipe, P.R.V., Sarduy, J.R.G., Quispe, E.C., Balbis, M. (2016), Shaft power estimation in induction motor operating under unbalanced and harmonics voltages. IEEE Latin America Transactions, 14(5), 2309-2315. Sarduy, J.R.G., Di Santo, K.G., Saidel, M.A. (2016), Linear and nonlinear methods for prediction of peak load at University of São Paulo. Measurement, 78, 187-201. Todorov, G.N., Barbakov, O.M., Nikitina, N.I., Chernova, V.Y. (2018), Specifics in modeling of energy efficient production in agribusiness. International Journal of Energy Economics and Policy, 8(3), 51-57. Warechowska, M. (2014), Some physical properties of cereal grain and energy consumption of grinding. Agricultural Engineering, 1(149), 239-249.spa
dc.title.translatedUn nuevo indicador de rendimiento energético para el sistema de gestión energética de una planta de molino de trigospa
dc.type.coarhttp://purl.org/coar/resource_type/c_6501spa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/articlespa
dc.type.redcolhttp://purl.org/redcol/resource_type/ARTspa
dc.type.versioninfo:eu-repo/semantics/acceptedVersionspa
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aaspa
dc.rights.coarhttp://purl.org/coar/access_right/c_abf2spa


Ficheros en el ítem

Thumbnail
Thumbnail

Este ítem aparece en la(s) siguiente(s) colección(ones)

  • Artículos científicos [3156]
    Artículos de investigación publicados por miembros de la comunidad universitaria.

Mostrar el registro sencillo del ítem

Attribution-NonCommercial-ShareAlike 4.0 International
Excepto si se señala otra cosa, la licencia del ítem se describe como Attribution-NonCommercial-ShareAlike 4.0 International