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Tytuł artykułu

ICS System Supporting the Water Networks Management by Means of Mathematical Modelling and Optimization Algorithms

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Języki publikacji
EN
Abstrakty
EN
In the/this paper a concept of an integrated information system for complex management of water networks is presented. The ICT system is under development at the Systems Research Institute (IBS PAN) in Warsaw for a couple of years and it is gradually tested in some Polish communal waterworks of differentiated size. Several waterworks management tasks requiring mathematical modelling, optimization and approximation algorithms can be solved using this system. Static optimization and multi-criteria algorithms are used for solving more complicated tasks like calibration of the water net hydraulic model, water net optimization and planning, control of pumps in the water net pump stations etc. [4] But some of the management tasks are simpler and can be performed by means of repetitive simulation runs of the water net hydraulic model. The water net simulation, planning of the SCADA system, calculation of water age and chlorine concentration in the water net, localization of hidden water leaks occurring in the network and planning of water net revitalization works are the examples of such tasks executed by the ICT system. They are described in this paper.
Twórcy
  • Systems Research Institute Polish Academy of Sciences, Newelska 6, 01–447 Warszawa, Poland
Bibliografia
  • [1] Bogdan L., Studzinski J., „Modeling of water pressure distribution in water nets using the kriging algorithms”. In: Industrial Simulation Conference ISC’2007 (J. Ottjes and H. Vecke, eds.) Delft, TU Delft Netherlands, 52–56.
  • [2] Hryniewicz O., Studzinski J., „Development of computer science tools for solving the environmental engineering problems”. In: Enviroinfo’ 2006 Conference, Graz.
  • [3] Saegrov S., Care-W – Computer Aided Rehabilitation for Water Networks, IWA Publishing, Alliance House, London, 2005.
  • [4] Stachura M., Fajdek B., Studzinski J. 2012. „Model based decision support system for communal water networks”, ISC’2012 Conference, Brno.
  • [5] Sluzalec A., Studzinski J., Ziolkowski A., “MOSKAN-W - the web application for modelling and designing of water supply system”. In: Simulation in Umwelt- und Geowissenschaften, Reihe: Umweltinformatik, ASIM-Mitteilung AM 150, Workshop Osnabrück 2014 (J. Wittmann, Hrsg.), Shaker Verlag, Aachen 2014, 143–153.
  • [6] Straubel R., Holznagel B., „Mehrkriteriale Optimierung fuer Planung und Steuerung von Trink- und Abwasser-Verbundsystemen”. In: Wasser•Abwasser, 140, No. 3, 1999, 191–196.
  • [7] Studzinski J., „Computer aided management of waterworks”. In: Proceedings of QRM’2007 (R.A. Thomas, ed.), Oxford 2007, 254–258.
  • [8] Studzinski J., „Rechnerunterstützte Endscheidungshilfe für kommunale Wasserwerke mittels mathematischer Modelle, Krigingsapproximation und Optimierung”. In: Modellierung und Simulation von Ökosystemen. Workshop Kölpinsee (A. Gnauck, Hrsg.), Shaker Verlag, Aachen 2012.
  • [9] Wojtowicz P., Pawlak A., Studzinski J., “Preliminary results of hydraulic modelling and calibration of the Upper Silesian Waterworks in Poland”. In: 11th International Conference on Hydroinformatics HIC 2014, NY City, USA, 2014A.
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bwmeta1.element.baztech-488f4b59-ea8b-498f-8a9b-85db43cc4bc3
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