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2019 | vol. 2(1) cz.I Part I: Modern Machines and Technologies for Mining | 20--27
Tytuł artykułu

Components of an Innovative Electro-Control System for Undeground Mining - Analysis

Autorzy
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the era of Industry 4.0, coal companies began to reach for new innovative technologies that increase work safety and their possible use affects the economic improvement of companies. One of them is to equip a powered roof support section with an electrohydraulic control system with a monitoring system that tracks operating parameters. The development of a monitoring system for a powered roof support is a key investment in new longwall complexes. It allows rapid diagnostics of status of the support. Currently used system designed to control the powered roof support are based on blocks of manually controlled distributors. The pilot control is currently the leading control that properly functions in all conditions, allowing to adapt to the requirements resulting from the construction of the section. A number of tests and analyses must be conducted prior to introducing the new control based on an innovative approach into operation. The basic research has focused on identifying the user interface that will potentially be the solution for the entire system. The user has defined how the driver should look like and how it will be operated and maintained. The results of the first series of tests on the elements of an innovative electronic control system of the powered roof support enabled to develop a prototype version. The assumptions for the system were verified during the conducted development studies. The article presents preliminary results of development research for devices included in the innovative control system of the powered roof support. (original abstract)
Twórcy
  • Center of Hydraulics DOH Ltd, Poland
Bibliografia
  • Brodny, J. and Tutak, M. (2016). Determination of the zone endangered by methane explosion in goaf with caving of operating longwalls. 16th International Multidisciplinary Scientific SGEM Conference Proceedings, Book 1 Vol. 2, pp. 299-306. DOI:10.5593/SGEM2016/B12/S03.039
  • Brodny, J. and Tutak, M. (2018a). Determination of the Zone with a Particularly High Risk of Endogenous Fires in the Goaves of a Longwall with Caving. Journal of Applied Fluid Mechanics, Vol. 11, No. 3, pp. 545-553. DOI: 10.18869/acadpub.jafm.73.246.27240
  • Dyrektywa, (2006): Dyrektywa 2006/42/WE Parlamentu Europejskie i Rady z dnia 17 maja 2006 r. w sprawie maszyn, zmieniająca dyrektywę 95/16/WE. Dziennik Urzędowy Unii Europejskiej L157/24.
  • Figiel, A. (2014). Bezpieczeństwo funkcjonalne układów sterowania maszyn górniczych. [Functional safety of mining machine control systems]. Maszyny Górnicze, vol 4, pp. 33-39.
  • PN-EN 62061:2008P+A1:2013-6E Safety of machinery - Functional safety of safetyrelated electrical, electronic and programmable electronic control systems.
  • PN-EN 61508 Functional safety of electrical / electronic / programmable electronic safety related systems.
  • PN-EN ISO 13849-1:2008. Safety of machinery. Safety related parts of control systems. Part 1: General principles for design.
  • PN-EN 62061:2008. Safety of machinery. Functional safety of safety-related electrical, electronic and programmable electronic control systems.
  • Kasprusz, A. Mikuła, S. Wojtas, M. (2013). Sterowanie elektrohydrauliczne DOH-matic do automatyzacji pracy obudowy zmechanizowanej, Wiadomości Górnicze nr 5.
  • Krauze, K. (2012). Urabianie skał strugami statycznymi. Podstawy doboru i projektowania kompleksów strugowych. Wydaw. Śląsk, Katowice.
  • Szurgacz, D. (2018). Analysis Characteristics determination of electrohydraulic control system operation to reduce the operation time of a powered roof support, E3S Web of Conferences 29, 00007 XVIIth Conferences of PhD Students and Young Scientist doi.org/10.1051/e3sconf/20182900006
  • Szurgacz, D. and Brodny, J. (2018). Dynamic resistance test for safety valve in electro hydraulic control system for powered roof supports, 18th International multidisciplinary scientific geoconference SGEM 2018, 2 July-8 July, 2018, Albena, Bulgaria. Conference proceedings Volume 18. Science and technologies in geology, Exploration and Mining, Issue 1.3. pp. 343-350. doi.org/10.5593/sgem2018/1.3
  • Tutak. M, and Brodny, J. (2019). Predicting Methane Concentration in Longwall Regions Using Artificial Neural Networks. Inernational Journal Environmental Research Public Health 16, 1406; pp. 1-22. doi:10.3390/ijerph16081406
  • Tutak. M, and Brodny, J. (2018b). Analysis of the Impact of Auxiliary Ventilation Equipment on the Distribution and Concentration of Methane in the Tailgate. Energies 11(11), 3076, pp. 1-28. https://doi.org/10.3390/en11113076
  • WUG, (2018). Ocena stanu bezpieczeństwa pracy, ratownictwa górniczego oraz bezpieczeństwa powszechnego w związku z działalnością górniczo-geologiczną w 2018 roku.
Typ dokumentu
Bibliografia
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Identyfikator YADDA
bwmeta1.element.ekon-element-000171587718

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