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TN-24 : Exchange of flow between river and aquifer system

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dc.contributor.author Mishra, G. C.
dc.date.accessioned 2019-03-08T06:55:42Z
dc.date.available 2019-03-08T06:55:42Z
dc.date.issued 1986
dc.identifier.uri http://117.252.14.250:8080/xmlui/handle/123456789/558
dc.description.abstract A mathematical ground water flow model has been developed to predict the exchange of flow between a partially penetrating river and a homogeneous infinite aquifer. The model considers the changes in river stage and corresponding changes in river width. Given the values of aquifer parameters, the transmissivity and the storage coefficient, the saturated thickness below the river bed, saturated thickness far away from the river, the initial width of river at the water surface and depth of water in the river, the model can predict the exchange flow rate between the aquifer and the river consequent to passage of a single or several successive floods. From the study it is found that in case of a partially penetrating river the exchange flow rates are reduced significantly in comparison to those of a fully penetrating river due to river resistance. In case of a partially penetrating river the peak inflow occurs simultaneously with the occurrence of peak stage. It is found that about 25% of the aquifer recharge comes back to river after the recession of a typical flood. A five times increase in river width during the passage of a flood may cause the maximum inflow rate from river to increase by two times in comparison to the maximum inflow rate from a river whose width does not change abruptly. en_US
dc.language.iso en en_US
dc.publisher National Institute of Hydrology en_US
dc.relation.ispartofseries ;TN-24
dc.subject Mathematical ground water flow model en_US
dc.subject Flow exchange between river and aquifer en_US
dc.title TN-24 : Exchange of flow between river and aquifer system en_US
dc.type Technical Report en_US


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