Engineering networks simulation and assessment of the mathematical model accuracy

The article shows the way to implement a quasilinear mathematical model of flow distribution in pipeline engineering networks that is effective in a wide range of changes in the multidimensional random vector of loads at network nodes and provides reliable determination of the parameters of the prob...

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Main Authors: Baxramov Umarkhodzha, Umarov Uchqun, Obidzhonov Axror
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_01047.pdf
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spelling doaj-c3fe5387cad24532b4c29aac6df324502021-06-11T07:16:39ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012640104710.1051/e3sconf/202126401047e3sconf_conmechydro2021_01047Engineering networks simulation and assessment of the mathematical model accuracyBaxramov UmarkhodzhaUmarov UchqunObidzhonov AxrorThe article shows the way to implement a quasilinear mathematical model of flow distribution in pipeline engineering networks that is effective in a wide range of changes in the multidimensional random vector of loads at network nodes and provides reliable determination of the parameters of the probability distribution functions of flows in active and passive network elements. The proposed model consists of determining the matrix of generalized network parameters-the load distribution coefficients along the branches of the circuit, calculated at the point corresponding to the mathematical expectation of the node loads. Based on the obtained model, the convergence of the results obtained with the results of simulation of engineering networks is proved using a numerical experiment on an electronic computer. The effectiveness of the developed model, the corresponding algorithms and a set of programs for an electronic computer is shown - the value of the criterion of reduced costs for parametric optimization of engineering networks can be reduced by 5-7% compared to the methods used in practice. The possibility of obtaining at the design stage the equivalent hydraulic characteristics of engineering networks in the form corresponding to the data of experimental measurements of pressures at the nodes of real complex engineering networks is proved.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_01047.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Baxramov Umarkhodzha
Umarov Uchqun
Obidzhonov Axror
spellingShingle Baxramov Umarkhodzha
Umarov Uchqun
Obidzhonov Axror
Engineering networks simulation and assessment of the mathematical model accuracy
E3S Web of Conferences
author_facet Baxramov Umarkhodzha
Umarov Uchqun
Obidzhonov Axror
author_sort Baxramov Umarkhodzha
title Engineering networks simulation and assessment of the mathematical model accuracy
title_short Engineering networks simulation and assessment of the mathematical model accuracy
title_full Engineering networks simulation and assessment of the mathematical model accuracy
title_fullStr Engineering networks simulation and assessment of the mathematical model accuracy
title_full_unstemmed Engineering networks simulation and assessment of the mathematical model accuracy
title_sort engineering networks simulation and assessment of the mathematical model accuracy
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The article shows the way to implement a quasilinear mathematical model of flow distribution in pipeline engineering networks that is effective in a wide range of changes in the multidimensional random vector of loads at network nodes and provides reliable determination of the parameters of the probability distribution functions of flows in active and passive network elements. The proposed model consists of determining the matrix of generalized network parameters-the load distribution coefficients along the branches of the circuit, calculated at the point corresponding to the mathematical expectation of the node loads. Based on the obtained model, the convergence of the results obtained with the results of simulation of engineering networks is proved using a numerical experiment on an electronic computer. The effectiveness of the developed model, the corresponding algorithms and a set of programs for an electronic computer is shown - the value of the criterion of reduced costs for parametric optimization of engineering networks can be reduced by 5-7% compared to the methods used in practice. The possibility of obtaining at the design stage the equivalent hydraulic characteristics of engineering networks in the form corresponding to the data of experimental measurements of pressures at the nodes of real complex engineering networks is proved.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_01047.pdf
work_keys_str_mv AT baxramovumarkhodzha engineeringnetworkssimulationandassessmentofthemathematicalmodelaccuracy
AT umarovuchqun engineeringnetworkssimulationandassessmentofthemathematicalmodelaccuracy
AT obidzhonovaxror engineeringnetworkssimulationandassessmentofthemathematicalmodelaccuracy
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