Journal of Water Resource and Protection

Journal of Water Resource and Protection

ISSN Print: 1945-3094
ISSN Online: 1945-3108
www.scirp.org/Journal/jwarp
E-mail: jwarp@scirp.org
"Calibration of Channel Roughness for Mahanadi River, (India) Using HEC-RAS Model"
written by Prabeer Kumar Parhi, R. N. Sankhua, G. P. Roy,
published by Journal of Water Resource and Protection, Vol.4 No.10, 2012
has been cited by the following article(s):
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[13] A flood assessment of data scarce region using an open-source 2D hydrodynamic modeling and Google Earth Image: a case of Sabarmati flood, India
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[15] Improved method for identifying Manning's roughness coefficients in plain looped river network area
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[16] Study on 1D-2D Hydraulic Modeling of a Diversion Channel on the Cavally River in Zouan-Hounien, Cote d'Ivoire
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[17] Assessing the nature of sediment transport with bridge scour by 1D sediment transport model in the sub-catchment basin of Bhagirathi–Hooghly river
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[18] Semi-arid River Basin Flood: Causes, Damages, and Measures
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[20] Hydraulic Simulation to Find Bottlenecks and Potential Flood Points in the Main Runoff Collection Channel by HEC-RAS 5 Model (Mianroud Canal, Tehran)
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[31] Water Productivity Enhancement through controlling the flood inundation of the surrounding region of Navsari Purna river, India
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[34] Trend Analysis of Variables and Modeling of Flow and Salinity of the Gorai River Using 1D HEC-RAS Model
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[36] 1D-2D Hydraulic Modeling of a Diversion Channel on the Cavally River in Zouan-Hounien, Cote d'Ivoire
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[39] Development of probabilistic inundation mapping for dam failure induced floods
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[41] A Study on Fluvial Flood Hazard and Risk Assessment of Arial Khan River Floodplain under Future Climate Change Scenarios
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[42] Calibration of channel roughness in intermittent rivers using HEC-RAS model: Case of Sarimsakli creek, Turkey
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[43] Using Detailed Terrain Analysis to Understand Spatiotemporal Patterns of Floodplain Hydraulics and Sediment Deposition
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[44] Hydrological and hydraulic modeling of an intra-urban river in a transboundary basin using a regional frequency analysis
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[45] Flood Flow Modelling and Embankment Protection of Mahanadi River using HEC-RAS
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[46] A Hydraulic Model for Identification of Surface Friction Coefficient for Euphrates River within Al Muthanna Governorate, Iraq
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[47] Hydrological and hydraulic modeling of an intra-urban river in a transboundary basin using a regional frequency analysis.
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[48] Manning's roughness coefficient for the Doce River
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[49] Estimation of Manning's Roughness Coefficient for Tigris River by Using HEC-RAS model
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[50] Flood Management in Mahanadi Basin using HEC-RAS and Gumbel's Extreme Value Distribution
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[51] Model-based analysis of macrophytes role in the flow distribution in the anastomosing river system
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[52] Effect of input data in hydraulic modeling for flood warning systems
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[53] Roughness Characteristics Of Kut-Hay Reach Of The Gharraf River And Its Impact On The Hay Regulator
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[54] Surrogate modeling-based calibration of hydrodynamic river model parameters
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[55] Planeación urbana y gestión de riesgo de inundación en ciudades de zonas semiáridas del noroeste de México, caso de estudio: Mexicali Baja California
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[56] A spatial decision support system for flood hazard in Quang Nam province, Vietnam
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[57] Single-and two-step optimization of infiltration parameters and Manning's roughness coefficients for a watershed using a multi-objective genetic algorithm
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[58] Análise das áreas inundadas e os respectivos impactos devido aos diferentes valores do coeficiente de rugosidade no rompimento da Barragem de Monjolinho
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[59] Simulated annealing for calibrating the Manning's roughness coefficients for general channel networks on a basin scale
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[60] Application of Numerical Modeling to Study River Dynamics: Hydro-Geomorphological Evolution Due to Extreme Events in the Sandy River, Oregon
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[61] Seasonality of Roughness-the Indicator of Annual River Flow Resistance Condition in a Lowland Catchment
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[62] Flow Analysis in a Meandering River Using HEC-RAS Model
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[63] Estimation and calibration of Manning's roughness coefficients for ungauged watersheds on coastal floodplains
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[64] Urban Flood Simulation and Integrated Flood Risk Management
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[65] Hydraulic Model Development using HEC-RAS and Determination of Manning Roughness Value for Shatt Al-Rumaith
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[66] Modelling of sedimentation dynamics in an underground canal in South West Kano Irrigation Scheme-Kenya
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[67] Simulation of sediment transport in the canal using the Hec-Ras (Hydrologic Engineering Centre–River Analysis System) in an underground canal in …
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[69] IMPACT OF CLIMATE CHANGE ON RIVER FLOWS IN THE SOUTHWEST REGION OF BANGLADESH
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[70] Simulation of Sediment Transport in the Canal Using the Hec-Ras (Hydrologic Engineering Centre-River Analysis System) In an Underground Canal in Southwest Kano Irrigation Scheme–Kenya
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[71] Application Of Adaptive Neuro-fuzzy Inference System For The Estimation Of Roughness Coefficient Of A Meandering Open-channel Flow
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[72] Calibration of Channel Roughness Coefficient for Thiba Main Canal Reach in Mwea Irrigation Scheme, Kenya
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[73] Avaliação de incerteza no mapeamento de áreas inundadas por rompimento de barragem devido à estimativa do coeficiente de rugosidade
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[74] Hydraulic Analysis of Irrigation Canals using HEC-RAS Model: A Case Study of Mwea Irrigation Scheme, Kenya
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[75] Simulation of sediment transport in the canal using the Hec-Ras (Hydrologic Engineering Centre–River Analysis System) in an underground canal in Southwest …
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[76] Simulation and comparison of stream power in-channel and on the floodplain in a German lowland area
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[77] Kalibrasi Nilai Kekasaran Manning pada Saluran Terbuka Komposit (Fiber Bergelombang-Kaca) Terhadap Variasi Kedalaman Aliran (Kajian Laboratorium)
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[78] HEC-RAS Model for Mannnig's Roughness: A Case Study
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