Modes, Parameters and Efficiency of the Functioning of Electric Supply Systems of Underground Mine
Keywords:
method, load, efficiency, power supply, power consumptionAbstract
The paper considers the issue of increasing the efficiency of electricity use in iron ore mines. The process of underground mines’ electricity consumption is considered probabilistic. To increase the accuracy and reliability of the assessment of the state of the process of electricity consumption, its description requires the use of methods that allow you to make decisions in the current conditions of uncertainty and incompleteness of information. Practice shows that the actual load is very different from the calculated; therefore, there is a need to clarify the method of determining loads. Technologies have changed today and the working conditions have changed, that is, it is necessary to determine new demand ratios for individual groups of consumers, which is practically impossible, because at the enterprise all groups of consumers work from the same network, that is, the method of the demand factor does not correspond to the current structure of electricity supply. Improvement of the method of demand factor was carried out by introducing empirical coefficients into it.
A new generalized method for calculating the technological groups of consumers is proposed, which differs from the known ones by the absence of an artificial separation of them according to the operating modes corresponding to the real structure of power supply systems for mining and a number of other industrial enterprises. The proposed calculation method can be used with the help of conventional metering devices that are in the network or determine the coefficients in the reference literature. The calculation procedure for electrical loads is universal and acceptable for any production and power supply systems.
According to the results of comparative calculations, the calculated power, obtained by the generalized method, is 30...40 % less than other applied methods and is much closer to the actual values, and the loading of power transformers of mine district substations is only about 30 %. It is estimated that the total transformer power at underground substations of mines can be reduced by 1,5—2 times. The analysis of the obtained results on the example of the real power supply scheme of the mine shows a discrepancy in the direction of overestimation of 50...70 % of the installed capacities of the transformers of the substation.
The prospects of increase of indicators of power supply in mines networks are determined. The main reason for the overestimated losses of electric energy in the power supply systems of mines is the imperfection of structures and their parameters, which is laid down at the design stage, and is associated with the use of a determinant criterion focused on saving investments, and not on energy efficiency.
References
[2] Е. К. Бабец, и др., «Анализ мировой конъюнктуры рынка ЖРС 2004—2011 гг.» в Сборник технико-экономических показателей горнодобывающих предприятий Украины в 2009—2010 гг. Кривой Рог, Украина: Видавничий дім, 2011, 329 с.
[3] А. А. Азарян, та ін., Комплекс ресурсо- і енергозберігаючих геотехнологій видобутку та переробки мінеральної сировини, технічних засобів їх моніторингу із системою управління і оптимізації гірничорудних виробництв. Кривий Ріг,Україна: Мінерал, 2006. 219 с.
[4] И. О. Синчук, Э. С. Гузов, и А. Н. Яловая, Потенциал электроэнергоэффективности и пути его реализации на производствах с подземными способами добычи железорудного сырья. Кременчук, Украина: изд-во ПП Щербатих О. В., 2015, 296 с.
[5] Р. А. Пархоменко, и А. Н. Яловая, «Основные процедуры оценки режимов электропотребления горнорудными предприятиями в условиях неопределённости и неполноты информации,» Електромеханічні і енергозберігаючі системи. Щоквартальний науково-виробничий журнал, вип. 2/2013(22), ч. 2, с. 256-259. 2013.
[6] O. N. Sinchuk, E. S. Guzov, and R. A. Parkhomenko, «Refinement of Calculation Methods for Electrical Load in Industry,» Balkan Journal of Electrical & Computer Engineering, vol. 1, no. 2, pp. 6-9, 2014. ISSN: 2147-284Х.
[7] О. Н. Синчук, Э. С. Гузов, В. П. Розен, и Р. А. Пархоменко, «Совершенствование методов расчета нагрузок систем электроснабжения рудных шахт,» Горный журнал, № 12/2013, с. 87-90. 2013.
[8] О. Н. Синчук, Э. С. Гузов, В. П. Розен, и Р. А. Пархоменко, «Анализ энергетических режимов электропотребителей железорудных шахт Криворожского железорудного басейна,» Електромеханічні і енергозберігаючі системи, Щоквартальний науково-виробничий журнал, вип. 2/2013(22), ч. 2, с. 256-259. 2013.
[9] О. Н. Синчук, Э. С. Гузов, И. О. Синчук, и Р. А. Пархоменко, «Повышение эффективности функционирования подземных участковых подстанций,» Наукові праці Донецького національного технічного університету. Серія: "Електротехніка і енергетика", № (14), с. 256-260, 2013.
Downloads
-
PDF (Українська)
Downloads: 468
Published
How to Cite
Issue
Section
License
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgment of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).