Distributed information system for water supply using prediction methods to prevent accidents
DOI:
https://doi.org/10.31548/energiya2022.01.111Abstract
The purpose of the study is the development and implementation of an information alarm system for the water supply system.
The article describes the developed information system for efficient water supply based on the parameters obtained from devices located on pipes. A conceptual, logical and physical model based on the description of the subject area has been developed. A water supply network database was developed using the MySQL Workbench tool. An interface has been created for monitoring the state of pipelines using the Angular framework and the programming languages TypeScript and JavaScript. The information system allows the user to view information from humidity and flow sensors. The application predicts the humidity around the pipes and the water flow for the subsequent period and receives the appropriate message if an accident is possible. The program provides the user with a convenient graphical interface for tracking possible accidents in the water supply network with reference to the coordinates of the pipes, so that the user can make a timely decision to carry out repairs and prevent such a situation.
Key words: water supply, consumption, humidity, accidents, forecasting, distributed information system, database, program, graphical interface
References
Metody prognozirovanija [Forecasting methods]. Available at: https://up-pro.ru/encyclopedia/metody-prognozirovaniya/ .
Razrabotka prognoza s pomoshh'ju metoda skol'zjashhej srednej. Primer reshenija zadachi [Development of a forecast using the moving average method. Problem solution example]. Available at:
http://www.ekonomika-st.ru/drugie/metodi/metodi-prognoz-1-3.html.
SP 31.13330.2012. Vodopostachannia. Zovnishni merezhi ta sporudy. Aktualizovana redaktsiia SNyP 2.04.02-84 [Water supply. External networks and structures. Updated edition of SNiP].
Repin, B. N. (1995). Vodosnabzhenie i vodootvedenie. Vneshnie seti i sooruzhenija: spravochnik [Water supply and drainage. External networks and structures: a guide]. Moscow: Vysshaja shkola, 1995, 431.
Kravchenko, V. S. (2009). Vodopostachannia ta kanalizatsiia [Water supply and sewerage]. Kyiv: Kondor, 288.
Vse vidy trub i ih harakteristiki [All types of pipes and their characteristics]. Available at: https://boiler.ua/vse-vidy-trub-i-ikh-kharakteristiki/.
Vplyv volohosti na vlastyvosti materialiv [The effect of humidity on the properties of materials]. Available at: http://www.dantherm.com.ua/topic3g.html.
Nguyen Hui Kyong (2019). Sovershenstvovanie rascheta i optimizacija sistemy vodosnabzhenija krupnyh gorodov s uchetom iznosa truboprovodov. [Improving the calculation and optimization of the water supply system of large cities, taking into account the wear of pipelines]. Dis. on the application. account Ph.D. tech. Science. Voronezh state. tech. university, 173.
Realizacija proekta «Sozdanie avtomatizirovannoj sistemy upravlenija Juzhnoj zony vodosnabzhenija Sankt-Peterburga» [Implementation of the project "Creation of an automated control system of the Southern water supply zone of St. Petersburg"].
Romanchuk, S. (2014). Napravlenija razvitija gorodskih ASU TP vodosnabzhenija i vodootvedenija [Directions for the development of urban automated process control systems for water supply and sanitation] Scientific works of DonNTU. Computer Science, Cybernetics and Computing Series, 1(19), 131-138.
Borodin, V. I. (2014). Sovershenstvovanie metodiki optimizacii razvivajushhihsja sistem vodootvedenija [Improving the methodology of optimization of developing drainage systems]. Author's ref. dis. on the application. account Ph.D. tech. Science. Irkutsk state. tech. univers, 20.
Kapansky, A. A. (2016). Jenergojeffektivnost' tehnologicheskih sistem vodosnabzhenija i vodootvedenija i metody ee ocenki [Energy efficiency of technological systems of water supply and sanitation and methods of its assessment]. Energy. News of higher educational institutions and energy associations of the CIS, 59 (5), 436–451.
Babinovich, D. E., Shutov, E. A. (2014). Forecast and optimisation device for the mode control of a pumping station. Energy Production and Management in the 21st Century, 1, 501-510.
AQUATORIA® – intellektual'noe reshenie dlja sistem vodosnabzhenija [intelligent solution for water supply systems]. Available at: https://ru3a.mitsubishielectric.com/fa/ru/dl/13231/405367.pdf .
Vplyv volohosti na vlastyvosti materialiv [Resolution of the Cabinet of Ministers of Ukraine "On the management of energy saving in agriculture"] of January 9, 1998, №20.
Vasylenkov, V. Ye. (2017). Hidravlika u proektuvanni system silskohospodarskoho vodopostachannia ta vodovidvedennia [Hydraulics in the design of agricultural water supply and sewerage systems]. Kyiv: NUBiP, 35.
Vasylenkov, V. Ye. (2015). Systemy vodopostachannia v silskomu hospodarstvi i yikh tekhnolohii osnashchennia [Water supply systems in agriculture and their equipment technologies]. Enerhetyka i avtomatyka, 1, 55-63.
Vasylenkov, V. Ye. (2015). Doslidzhennia deiakykh vyznachen v hidravlitsi za dopomohoiu modelei [Investigation of some definitions in hydraulics using models]. Enerhetyka i avtomatyka,3, 103-109.
Downloads
Published
Issue
Section
License
Relationship between right holders and users shall be governed by the terms of the license Creative Commons Attribution – non-commercial – Distribution On Same Conditions 4.0 international (CC BY-NC-SA 4.0):https://creativecommons.org/licenses/by-nc-sa/4.0/deed.uk
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- 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 acknowledgement 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).