Modelling, simulation and optimisation of parabolic trough power plants
We present a mathematical model built to describe the fluid dynamics for the heat transfer fluid in a parabolic trough power plant. Such a power plant consists of a network of tubes for the heat transport fluid. In view of optimisation tasks in the planning and in the operational phase, it is crucia...
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Published in | European journal of applied mathematics Vol. 34; no. 3; pp. 592 - 615 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Cambridge, UK
Cambridge University Press
01.06.2023
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Subjects | |
Online Access | Get full text |
ISSN | 0956-7925 1469-4425 |
DOI | 10.1017/S0956792522000274 |
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Abstract | We present a mathematical model built to describe the fluid dynamics for the heat transfer fluid in a parabolic trough power plant. Such a power plant consists of a network of tubes for the heat transport fluid. In view of optimisation tasks in the planning and in the operational phase, it is crucial to find a compromise between a very detailed description of many possible physical phenomena and a necessary simplicity needed for a fast and robust computational approach. We present the model, a numerical approach, simulation for single tubes and also for realistic network settings. In addition, we optimise the power output with respect to the operational parameters. |
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AbstractList | We present a mathematical model built to describe the fluid dynamics for the heat transfer fluid in a parabolic trough power plant. Such a power plant consists of a network of tubes for the heat transport fluid. In view of optimisation tasks in the planning and in the operational phase, it is crucial to find a compromise between a very detailed description of many possible physical phenomena and a necessary simplicity needed for a fast and robust computational approach. We present the model, a numerical approach, simulation for single tubes and also for realistic network settings. In addition, we optimise the power output with respect to the operational parameters. |
Author | PARFENOV, E. BAKHTI, H. GASSER, I. SCHUSTER, S. |
Author_xml | – sequence: 1 givenname: H. surname: BAKHTI fullname: BAKHTI, H. email: hamzah.bakhti@uni-hamburg.de organization: 1Department of Mathematics, Universität Hamburg, Hamburg, Germany emails: hamzah.bakhti@uni-hamburg.de, ingenuin.gasser@uni-hamburg.de – sequence: 2 givenname: I. orcidid: 0000-0002-7820-9803 surname: GASSER fullname: GASSER, I. email: hamzah.bakhti@uni-hamburg.de organization: 1Department of Mathematics, Universität Hamburg, Hamburg, Germany emails: hamzah.bakhti@uni-hamburg.de, ingenuin.gasser@uni-hamburg.de – sequence: 3 givenname: S. surname: SCHUSTER fullname: SCHUSTER, S. email: susanne.schuster@msg.group organization: 2MSG Group Hamburg, Germany email: susanne.schuster@msg.group – sequence: 4 givenname: E. surname: PARFENOV fullname: PARFENOV, E. email: e.parfenov@gmx.com organization: 3Hamburg, Germany email: e.parfenov@gmx.com |
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Cites_doi | 10.1016/j.apm.2012.06.010 10.1002/er.1153 10.1016/j.enconman.2017.10.059 10.1115/DETC2010-28997 10.1007/978-3-642-37380-0 10.1016/j.solener.2003.01.002 10.1016/j.energy.2019.04.160 10.1016/S0038-092X(98)00031-0 10.1016/j.solener.2017.10.023 10.1115/ES2007-36052 10.1002/app.1990.070410518 10.1016/j.solener.2016.06.057 10.1016/j.ijheatmasstransfer.2020.119541 10.1016/j.apm.2018.07.023 10.1016/j.rser.2017.08.056 10.1016/j.renene.2017.06.063 10.1137/100813580 10.1016/j.camwa.2014.02.006 10.1115/ESDA2010-25137 10.3934/nhm.2008.3.691 10.1137/100797977 10.3934/krm.2009.2.191 10.1016/B978-0-12-397270-5.00009-1 10.1016/j.solener.2009.08.010 10.2172/15004820 10.1016/j.rser.2010.03.012 10.1515/green-2011-0019 |
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SubjectTerms | Applied mathematics Energy consumption Fluid dynamics Heat Mathematical models Optimization Power plants Radiation Renewable resources Robustness (mathematics) Simulation Software Solar energy Tubes Variables |
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