Numerical prediction of developing flow in gas pipelines

dc.contributor.authorNouri-Borujerdi, A.
dc.contributor.authorZiaei-Rad, M.
dc.date.accessioned2015-06-24T07:58:03Z
dc.date.available2015-06-24T07:58:03Z
dc.date.issued2007
dc.description.abstractPaper presented at the 5th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics, South Africa, 1-4 July, 2007.en_ZA
dc.description.abstractIn this paper the numerical modeling of the dynamic behavior of compressible gas flow is investigated in pipelines. The numerical simulation is performed by solving the coupled conservation form of the governing equations for twodimensional, laminar, viscous, supersonic flow in developing region under different thermal boundary conditions. The numerical procedure is a finite-volume based finite-element method applied on unstructured grids. The convection terms are discretized by well-defined Roe Method and diffusion terms by a Galerkin finite element formulation. The temporal terms are evaluated based on an explicit fourth order Runge-Kutta scheme. The results indicate that heating the gas flow leads to an increase in pressure loss. In the other words, cooling the gas flow leads to decrease the pressure drop or power consumption of booster pressure station. Furthermore, change in the gas viscosity has considerable effects on the flow quantities such as pressure loss and friction factor.en_ZA
dc.format.extent8 pagesen_ZA
dc.format.mediumPDFen_ZA
dc.identifier.citationNouri-Borujerdi, A & Ziaei-Rad, M 2007, 'Numerical prediction of developing flow in gas pipelines', Paper presented to the 5th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics, South Africa, 1-4 July 2007.en_ZA
dc.identifier.isbn9781868546435
dc.identifier.urihttp://hdl.handle.net/2263/45761
dc.language.isoenen_ZA
dc.publisherInternational Conference on Heat Transfer, Fluid Mechanics and Thermodynamicsen_ZA
dc.relation.ispartofHEFAT 2007
dc.rightsUniversity of Pretoriaen_ZA
dc.rights.uriUniversity of Pretoriaen_US
dc.subjectCompressible gas flowen_ZA
dc.subjectRoe Methoden_ZA
dc.subjectGas pipelinesen_ZA
dc.titleNumerical prediction of developing flow in gas pipelinesen_ZA
dc.typePresentationen_ZA

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