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dc.contributor.authorAtangana, A; Bildik, N
dc.date.accessioned2020-07-01T08:40:25Z
dc.date.available2020-07-01T08:40:25Z
dc.date.issued2013
dc.identifier.urihttp://hdl.handle.net/20.500.12481/7569
dc.description.abstractThe aim of this work was to convert the Thiem and the Theis groundwater flow equation to the time-fractional groundwater flow model. We first derived the analytical solution of the Theim time-fractional groundwater flow equation in terms of the generalized Wright function. We presented some properties of the Laplace-Carson transform. We derived the analytical solution of the Theis time-fractional groundwater flow equation (TFGFE) via the Laplace-Carson transform method. We introduced the generalized exponential integral, as solution of the TFGFE. This solution is in perfect agreement with the data observed from the pumping test performed by the Institute for Groundwater Study on one of its borehole settled on the test site of the University of the Free State. The test consisted of the pumping of the borehole at the constant discharge rate Q and monitoring the piezometric head for 350 minutes.
dc.titleThe Use of Fractional Order Derivative to Predict the Groundwater Flow
dc.title.alternativeMATHEMATICAL PROBLEMS IN ENGINEERING
dc.identifier.DOI-ID10.1155/2013/543026
dc.identifier.volume2013
dc.identifier.issn/e-issn1024-123X
dc.identifier.issn/e-issn1563-5147


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