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  <doc>
    <id>268</id>
    <completedYear>2018</completedYear>
    <publishedYear/>
    <thesisYearAccepted/>
    <language>eng</language>
    <pageFirst/>
    <pageLast/>
    <pageNumber/>
    <edition/>
    <issue/>
    <volume/>
    <type>article</type>
    <publisherName/>
    <publisherPlace/>
    <creatingCorporation/>
    <contributingCorporation/>
    <belongsToBibliography>1</belongsToBibliography>
    <completedDate>2019-04-25</completedDate>
    <publishedDate>2019-04-25</publishedDate>
    <thesisDateAccepted>--</thesisDateAccepted>
    <title language="eng">Stationary Gas Networks with Compressor Control and Random Loads: Optimization with Probabilistic Constraints</title>
    <abstract language="eng">We introduce a stationary model for gas flow based on simplified isothermal Euler equations in a non-cycled pipeline network.&#13;
Especially the problem of the feasibility of a random load vector is analyzed. Feasibility in this context means the existence of a&#13;
flow vectormeeting these loads, which satisfies the physical conservation laws with box constraints for the pressure. An important&#13;
aspect of the model is the support of compressor stations, which counteract the pressure loss caused by friction in the pipes.The&#13;
network is assumed to have only one influx node; all other nodes are efflux nodes.With these assumptions the set of feasible loads&#13;
can be characterized analytically. In addition we show the existence of optimal solutions for some optimization problems with&#13;
probabilistic constraints. A numerical example based on real data completes this paper.</abstract>
    <parentTitle language="eng">Mathematical Problems in Engineering</parentTitle>
    <identifier type="doi">https://doi.org/10.1155/2018/7984079</identifier>
    <enrichment key="review.accepted_by">2</enrichment>
    <licence>Creative Commons - CC BY-ND - Namensnennung - Keine Bearbeitungen 4.0 International</licence>
    <author>Martin Gugat</author>
    <author>Michael Schuster</author>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>Validation of nominations, Stationary states, Isothermal Euler equations, Ideal Gas, Gas network,  Gas transport, Compressor control, Uncertainty, Chance Constraints, Spheric-radial decomposition</value>
    </subject>
    <collection role="institutes" number="">Friedrich-Alexander-Universität Erlangen-Nürnberg</collection>
    <collection role="subprojects" number="">C03</collection>
    <file>https://opus4.kobv.de/opus4-trr154/files/268/Hindawi_StationaryGasNetworks.pdf</file>
  </doc>
</export-example>
