Engineering

Engineering

ISSN Print: 1947-3931
ISSN Online: 1947-394X
www.scirp.org/journal/eng
E-mail: eng@scirp.org
"Developing Intensity-Duration-Frequency Curves in Scarce Data Region: An Approach using Regional Analysis and Satellite Data"
written by Ayman G. Awadallah, Mohamed ElGamal, Ashraf ElMostafa, Hesham ElBadry,
published by Engineering, Vol.3 No.3, 2011
has been cited by the following article(s):
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[2] Framework for developing IDF curves using satellite precipitation: a case study using GPM-IMERG V6 data
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[3] Causal Inference, Nonlinear Dynamics, and Information Theory Applications in Hydrometeorological Systems
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[4] Determinación de las intensidades máximas de precipitación y zonificación de la cuenca del río Pampas
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[5] Rainfall Intensity–Duration–Frequency (IDF) Curves: Effects of Uncertainty on Flood Protection and Runoff Quantification in Southwestern Saudi Arabia
Areeq, M Al-Zahrani, S Chowdhury - Arabian Journal for Science and …, 2021
[6] Identification of the best-fit probability distribution and modeling short-duration intensity-duration-frequency curves—mangalore
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[7] Assessment of Rainfall–Runoff Due to the Impacts of Land-Use Changes by Integrated Geospatial Empirical Approach: Study on Koraiyar Basin, Tiruchirappalli City …
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[8] Volatility in Rainfall and Predictability of Droughts in Northwest Bangladesh
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[9] Dryland Precipitation Climatology from Satellite Observations
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[10] PERSIANN-CDR for Hydrology and Hydro-climatic Applications
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[11] Projeto de drenagem de águas pluviais. Caso de estudo de uma via rodoviária em Angola
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[12] Extreme Precipitation Modeling Using Remotely-Sensed Information and Advanced Statistical Techniques
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[13] Precipitation Frequency Analysis from Remotely Sensed Datasets: A Focused Review
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[14] Rainfall Intensity-Duration-Frequency relationship for Trichy and Kumulur
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[15] Rainfall Frequency Analysis for Ungauged Regions using Remotely Sensed Precipitation Information
Journal of Hydrology, 2018
[16] Developing Intensity‐Duration‐Frequency (IDF) Curves From Satellite‐Based Precipitation: Methodology and Evaluation
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[17] Joint Use of Tropical Rainfall Measurement Mission (TRMM) and Ground Station Data to Develop Intensity Duration Frequency Relationships in Scarce data Arid Regions: Case Study in KSA
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[18] Generic Method for Merging Satellite and Historical Ground Station Data to Design Rainfall Intensity Duration Frequency (IDF) Curves in Recordless Sub …
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[19] Spatially Index-based Assessment of Flash Flood Potential Under Sparse Data Availability
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[20] Relationships between High Impact Tropical Rainfall Events and Environmental Conditions
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[21] Intensity-duration-frequency curves from remote sensing rainfall estimates: comparing satellite and weather radar over the eastern Mediterranean
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[22] Rainfall Extremes: a Novel Modeling Approach for Regionalization.
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[23] ASSESSMENT OF RAINFALL INTENSITY EQUATIONS ENLISTED IN THE EGYPTIAN CODE FOR DESIGNING POTABLE WATER AND SEWAGE NETWORKS
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[24] Intensity–duration–frequency curves from remote sensing rainfall estimates: comparing satellite and weather radar over the eastern Mediterranean
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[25] vorheriger Artikel Analysis of Irrigation Water Use Efficiency Bas... nächster Artikel Optimal Design of Pressurized Irrigation Networ...
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[26] Rainfall Extremes: a Novel Modeling Approach for Regionalization
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[27] Assessing the potential of satellite-based precipitation estimates for flood frequency analysis in ungauged or poorly gauged tributaries of China's Yangtze River basin
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[28] Effects of Rainfall Intensity-Duration-Frequency Curves Reformation on Urban Flood Characteristics in Semiarid Environment
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[29] Generation of Rainfall Intensity Duration Frequency (IDF) Curves for Ungauged Sites in Arid Region
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[30] Rainfall frequency analysis for ungauged sites using satellite precipitation products
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[31] Modelling and assessment of urban flood hazards based on rainfall intensity-duration-frequency curves reformation
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[32] RAINFALL INTENSITY–DURATION–FREQUENCY RELATIONSHIP FOR DIFFERENT REGIONS OF KASHMIR VALLEY (J&K) INDIA
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[33] Using high‐resolution satellite precipitation for flood frequency analysis: case study over the Connecticut River Basin
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[34] Estimating flooding extent at high return period for ungauged braided systems using remote sensing: a case study of Cuvelai Basin, Angola
Journal of the International Society for the Prevention and Mitigation of Natural Hazards, 2015
[35] Evaluation of extreme precipitation estimates from TRMM in Angola
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[36] IDF curves and daily rainfall generation for Al-Madinah city, western Saudi Arabia
Arabian Journal of Geosciences, 2015
[37] Estudio del comportamiento hídrico de una cuenca hidrológica en Angola
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[38] Use of radar QPE for the derivation of Intensity–Duration–Frequency curves in a range of climatic regimes
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[39] INTENSITY DURATION FREQUENCY CURVES FOR SINAI PENINSULA, EGYPT
I FATHY, AM NEGM, M EL-FIKY, M NASSAR - oaji.net, 2014
[40] Characterising the space–time structure of rainfall in the Sahel with a view to estimating IDAF curves
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[41] Characterising the space-time structure of rainfall in the Sahel with a view to estimating IDAF curves.
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[42] The use of geostationary satellite based rainfall estimation and rainfall-runoff modelling for regional flash flood assessment
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[43] A novel approach for the joint use of rainfall monthly and daily ground station data with TRMM data to generate IDF estimates in a poorly gauged arid region
Open Journal of Modern Hydrology, 2013
[44] An Approach to Quantifying Uncertainty in Estimates of Intensity Duration Frequency (IDF) Curves
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[45] Developing rainfall intensity–duration–frequency relationship for two regions in Saudi Arabia
Journal of King Saud University-Engineering Sciences, Elsevier, 2012
[46] The use of geostationary based rainfall estimation for characterizing storm severity
Journal of Japan Society of Civil Engineers, Ser. B1 (Hydraulic Engineering), 2012
[47] Modelos de las Intensidades–Duraciones y Frecuencias de las Tormentas en la estación Meteorológica Yanacancha (Huari–Ancash)
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