Downloads provided by UsageCounts
<script type="text/javascript">
<!--
document.write('<div id="oa_widget"></div>');
document.write('<script type="text/javascript" src="https://www.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=undefined&type=result"></script>');
-->
</script>doi: 10.5281/zenodo.17402
{"references": ["[1] P.D. De Lemos, \u201cSurface mining technology: Managing the paradigm shif,\u201d Minig Engineering, Vol. 65 No. 12, 2013, pp. 36-40.", "[2] A. Goodbody, \u201cA deeper design,\u201d Mining Magazine, March 2012, pp. 25-35.", "[3] P. Moore, \u201cBetter planning. International Mining,\u201d Team Publishing Ltd., Herts, UK, July 2011, pp. 54-62 .", "[4] J. Jessop, \u201cBridging functional silos to improve business performance,\u201d International Mining, Team Publishing Ltd., Herts, UK, November 2010, pp. 44-46.", "[5] S. Asghar and M. Umar, \u201cRequirement engineering challenges in development of software applications and selection of customer-off-the-shelf (COTS) components,\u201d International Journal of Software Engineering, Vol. 1, Issue 2, 2010, pp. 32-50.", "[6] Moore, P.: \u201cE-mine excellence,\u201d International Mining, Team Publishing Ltd., Herts, UK, 42-61 (Jan. 2013)", "[7] M. Avdic, and A. Nuric, Programiranje i primjena u inzenjerstvu, Univerzitet u Tuzli, Tuzla, Bosnia and Herzegovina, 2008", "[8] B. Wilkinson, \u201cDevising the best plan,\u201d Mining Magazine, March 2012, pp- 37-39.", "[9] S. Walker, \u201cPumps and pipelines keep mines on the move,\u201d E&JM, April 2013, pp. 68-79.", "[10]Review: \u201cPlanning for the future,\u201d Mining Magazine, Vol. 201, No. \u00bd, 2010, pp. 22-28.", "[11] P. Moore, \u201cBrave new world,\u201d International Mining, July 2012, pp. 34-47.", "[12] C. Lovejoy, \u201cA gem of a company,\u201d Mining Magazine, March 2012, pp. 20-24.", "[13]Review: \u201cFunctionality to the fore,\u201d Mining Magazine, Vol. 198, No. 2, February 2008, pp. 53-59.", "[14] R.A. Carter, \u201cMultiplication factor,\u201d E&MJ, April 2013, pp. 56-67.", "[15] R.A. Carter, \u201cPump technology produces new models, new design,\u201d E&MJ, August 2013, pp. 38-42.", "[16] K. Lang, and B.Buhl, \u201cUse of high-efficiency electrical submersible pumps for mine dewatering,\u201d Mining Engineering, Vol. 65, No. 9, September 2013, pp. 64-70.", "[17] A. Aryafar, F.D.Ardejani, R. Singh and B.J. Shokri, online available: http://3.academia-asset.com/ima", "[18] U. Hohna, V. Pavlovic and U. Schmidt, \u201cFuture lignite mines of Serbia,\u201d World of mining, Vol. 62, No. 1, 2010, pp. 28-37.", "[19] S. Walker, \u201cTools to assist in planning and design,\u201d E&MJ, January 2013, pp. 34-39.", "[20] M. Struzina and J. Benndorf, \u201cEfficient planning and modelling for modern dewatering concepts in unconsolidated rock under geological uncertainty,\u201d World of Mining.,Vol. 2, 2011, pp. 66-75.", "[21] H. El Idrysy, R. Bowell, M. Dey and W. Harding,:\u201cMaking the most of mine water,\u201d Mining Magazine, October 2011, pp. 46-48.", "[22] K. Boyce, \u201cSelecting a reliable dewatering pump for mining applications,\u201d E&MJ, August 2013, pp. 36-37.", "[23] R.A.Carter, \u201cDesignin mines with data in mind,\u201d E&MJ, January 2014, pp. 42-44.", "[24] R.A. Carter, \u201cExploring the dimensions of digital solutions in mine mapping,\u201d Coal Age, February 2013, pp. 34-37.", "[25] S.Sedgwick, \u201cGetting the balance right,\u201d Mining Magazine, October 2011, pp. 57-58.", "[26] T. Woldai and T. Taranik, \u201cEnvironmental impact assessment of mining related dewatering activities using integrated Insar, Optical remote sensing and pumping data,\u201d The International Archives of The Photogrammetry, Remote Sensing and Spatial Information Science,.Vol.37, part B7, Beijing, 2008, pp. 191-197.", "[27] A. Nuric, S. Nuric, E. Hercegovac, S. Lapandic and M. Delic, \u201cMethodologies of calculation mass for construction plateau on the site ''Streliste'' Velika Ribnica \u2013 Banovici,\u201d Proceedings 42th IOC on mining and metallurgy, Technical faculty at Bor University of Belgrade, Copper Institute Bor, Kladovo, Serbia, 2010, pp. 364-367.", "[28] W. Hustrulid and M.Kuchta, Open pit mine, planning & design, A.A.Balkema, Rotterdam, Netherland, 1995", "[29] S. Nuric, A. Nuric, T. Knezicek, M. Kukic and M. Klopic, \u201cDefine optimal technical-technologic parameters drainage of the pit mine,\u201d Proceedings 38th IOC on Mining and Metallurgy, Donji Milanovac, Technical faculty Bor University of Belgrade and Copper Institute Bor, 2006, pp. 112-124.", "[30] T.Knezicek, Racunarski podrzano projektovanje povrsinskih kopova, JU Univerzitet u Tuzli, Tuzla, Bosnia and Herzegovina,2004", "[31] A. Nuric, S. Nuric and E. Haracic, \u201cVisualization of outer waste dump \u2018Zapad\u2019 at pit mine Dubrave by using computer technique,\u201d Zbornik radova RGGF-a Tuzla, No. XXXIII, Tuzla, 2007, pp. 183-187.", "[32] S. Nuric, Kamionski transport u povrsinskoj eksploataciji, Microtrik, Banovici, Bosina and Herzegovina, 2009", "[33] D.M. Potts, and L. Zdravkovic, Finite element analysis in geotechnical engineering, Thomas Telford Publishing, London, UK, 2001"]}
The aim of this paper is to demonstrate a software development process for estimation of drainage parameters and its concrete application in practice. It is necessary to use knowledge from the field of programming and mathematics to create the software, which can find its application in various conditions of earthworks as well as the landfills, earthen embankments, etc. With this paper is integrated a design process of the earthen embankment with drainage canals, process of program development for calculation of the parameters and dimensions of drainage canals and display the results of calculations as different methods contained in on methodology for obtaining results. Results of this investigations are established design of embankments and software for estimation of drainage parameters at designed location. This process shows how it is possible to include discipline of the engineering design, information technology and the software engineering. Advantages of this approach are multiple efficiencies in process of the embankments and waste dump design and estimation of drainage parameters. This approach to problems in mining, civil engineering and geology, greatly facilitates and accelerates the process of decision making as well as offering multi-variant solutions.
design, drainage, earth embankment, programming, software
design, drainage, earth embankment, programming, software
| citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | 0 | |
| popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network. | Average | |
| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Average | |
| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Average |
| views | 6 | |
| downloads | 3 |

Views provided by UsageCounts
Downloads provided by UsageCounts