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Title

FLOOD HYDROGRAPH SIMULATION WITH UNCERTAINTY IN RAINFALL - RUNOFF PARAMETERS

Pages

  93-112

Abstract

 Flood hydrograph simulation is affected by uncertainty in Rainfall - Runoff (RR) parameters. Uncertainty of RR parameters in Gharasoo catchment, part of the great KARKHEH river basin, is evaluated by Monte-Carlo (MC) approach. A conceptual-distributed model, called Monte- Carlo, was used for basin simulation, in which the basin's hydrograph was determined using the superposition of runoff generated by individual cells dividing the catchment in a raster-based discretization. A narrow parameter range was obtained through application of the MC method. Parameter range depended on goodness -of-fit measures. The results of various goodness-of-fit measures are discussed in this paper. The selected goodness-of-fit measures gave high weight to peak discharge to reduce peak discharge error.

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    APA: Copy

    HEYDARI, A., SAGHFIAN, B., & MAKNOUN, R.. (2005). FLOOD HYDROGRAPH SIMULATION WITH UNCERTAINTY IN RAINFALL - RUNOFF PARAMETERS. ESTEGHLAL, 23(2), 93-112. SID. https://sid.ir/paper/5961/en

    Vancouver: Copy

    HEYDARI A., SAGHFIAN B., MAKNOUN R.. FLOOD HYDROGRAPH SIMULATION WITH UNCERTAINTY IN RAINFALL - RUNOFF PARAMETERS. ESTEGHLAL[Internet]. 2005;23(2):93-112. Available from: https://sid.ir/paper/5961/en

    IEEE: Copy

    A. HEYDARI, B. SAGHFIAN, and R. MAKNOUN, “FLOOD HYDROGRAPH SIMULATION WITH UNCERTAINTY IN RAINFALL - RUNOFF PARAMETERS,” ESTEGHLAL, vol. 23, no. 2, pp. 93–112, 2005, [Online]. Available: https://sid.ir/paper/5961/en

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