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Treatment of natural geometry in finite volume river flow computations

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dc.contributor.author CAPART, H en_US
dc.contributor.author ELDHO, TI en_US
dc.contributor.author HUANG, SY en_US
dc.contributor.author YOUNG, DL en_US
dc.contributor.author ZECH, Y en_US
dc.date.accessioned 2011-07-18T15:03:22Z en_US
dc.date.accessioned 2011-12-26T12:50:41Z en_US
dc.date.accessioned 2011-12-27T05:36:39Z
dc.date.available 2011-07-18T15:03:22Z en_US
dc.date.available 2011-12-26T12:50:41Z en_US
dc.date.available 2011-12-27T05:36:39Z
dc.date.issued 2003 en_US
dc.identifier.citation JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 129(5), 385-393 en_US
dc.identifier.issn 0733-9429 en_US
dc.identifier.uri http://dx.doi.org/10.1061/(ASCE)0733-9429(2003)129:5(385) en_US
dc.identifier.uri http://dspace.library.iitb.ac.in/xmlui/handle/10054/4961 en_US
dc.identifier.uri http://hdl.handle.net/10054/4961
dc.description.abstract A method is proposed for the treatment of irregular bathymetry in one-dimensional finite volume computations of open-channel flow. The strategy adopted is based on a reformulation of the Saint-Venant equations. In contrast with the usual treatment of topography effects as source terms, the method accounts for slope and nonprismaticity by modifying the momentum flux. This makes it possible to precisely balance the hydrostatic pressure contributions associated with variations in valley geometry. The characteristic method is applied to the revised equations, yielding topographic corrections to the numerical fluxes of an upwind scheme. Further adaptations endow the scheme with an ability to capture transcritical sections and wetting fronts in channels of abrupt topography. To test the approach, the scheme is first applied to idealized benchmark problems. The method is then used to route a severe flood through a complex river system: the Tanshui in Northern Taiwan. Computational results compare favorably with gauge records. Discrepancies in water stage represent no more than a fraction of the magnitude of typical bathymetry variations. en_US
dc.language.iso en en_US
dc.publisher ASCE-AMER SOC CIVIL ENGINEERS en_US
dc.subject Open-Channel Flows en_US
dc.subject Experimental Water Transients en_US
dc.subject Hyperbolic Conservation-Laws en_US
dc.subject Free-Surface Flows en_US
dc.subject Sewer Pipes en_US
dc.subject Equations en_US
dc.subject Schemes en_US
dc.subject Simulation en_US
dc.subject Model en_US
dc.subject.other Open-Channel Flow en_US
dc.subject.other Algorithms en_US
dc.subject.other Geometry en_US
dc.subject.other Flood Routing en_US
dc.subject.other River Systems en_US
dc.title Treatment of natural geometry in finite volume river flow computations en_US
dc.type Article en_US


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