Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 68 checked references that resolve
resolves10.4236/ijg.2014.59083Flash Floods and Groundwater Recharge Potentials in Arid Land Alluvial Basins, Southern Red Sea Coast, Egypt
resolves10.3390/w13121650Flash Flood Susceptibility Assessment and Zonation Using an Integrating Analytic Hierarchy Process and Frequency Ratio Model for the Chitral District, Khyber Pakhtunkhwa, Pakistan
resolves10.1007/s12517-021-06942-6The use of remotely sensed data to reveal geologic, structural, and hydrologic features and predict potential areas of water resources in arid regions
resolves10.1002/qj.29Flash flood forecasting: What are the limits of predictability?
resolves10.1007/s10584-006-0472-xAssessing the Impact of Climate Change on Water Supply and Flood Hazard in Ireland Using Statistical Downscaling and Hydrological Modelling Techniques
resolves10.1371/journal.pone.0189451Integrative assessment of climate change for fast-growing urban areas: Measurement and recommendations for future research
resolves10.1007/s10661-016-5665-9Flash flood susceptibility analysis and its mapping using different bivariate models in Iran: a comparison between Shannon’s entropy, statistical index, and weighting factor models
resolves10.1371/journal.pone.0229153GIS-based flood hazard mapping using relative frequency ratio method: A case study of Panjkora River Basin, eastern Hindu Kush, Pakistan
resolves10.3390/w11112370Urban Flood Hazard Modeling Using Self-Organizing Map Neural Network
resolves10.1007/s12517-021-09422-zIntegration of remote sensing and a GIS-based method for revealing prone areas to flood hazards and predicting optimum areas of groundwater resources
resolves10.1007/s12517-018-4095-0Evaluation of flood susceptibility mapping using logistic regression and GIS conditioning factors
resolves10.1016/j.jhydrol.2018.12.002Urban flood risk mapping using the GARP and QUEST models: A comparative study of machine learning techniques
resolves10.1007/s00477-019-01689-9Flash-flood Potential Index mapping using weights of evidence, decision Trees models and their novel hybrid integration
resolves10.1007/s11069-014-1554-0Increased frequency of flash floods in Dire Dawa, Ethiopia: Change in rainfall intensity or human impact?
resolves10.3390/rs11010062A Hybrid GIS Multi-Criteria Decision-Making Method for Flood Susceptibility Mapping at Shangyou, China
resolves10.1007/s11269-020-02603-7Improvement of Best First Decision Trees Using Bagging and Dagging Ensembles for Flood Probability Mapping
resolves10.3390/w11020364Flood Susceptibility Mapping on a National Scale in Slovakia Using the Analytical Hierarchy Process
resolves10.3390/su14137871Fusion of Remote Sensing Data Using GIS-Based AHP-Weighted Overlay Techniques for Groundwater Sustainability in Arid Regions
resolves10.1186/s40677-016-0044-yFlood risk assessment and mapping in Abidjan district using multi-criteria analysis (AHP) model and geoinformation techniques, (cote d’ivoire)
resolves10.1016/j.jhydrol.2017.12.043A GIS-based model of potential groundwater yield zonation for a sandstone aquifer in the Juye Coalfield, Shangdong, China
resolves10.1038/s41598-019-38567-xGIS and AHP Techniques Based Delineation of Groundwater Potential Zones: a case study from Southern Western Ghats, India
resolves10.1016/j.gsd.2022.100733Applications of geospatial analysis and analytical hierarchy process to identify the groundwater recharge potential zones and suitable recharge structures in the Ajani-Jhiri watershed of north Maharashtra, India
resolves10.3390/su14095640Sustainable Groundwater Potential Zoning with Integrating GIS, Remote Sensing, and AHP Model: A Case from North-Central Bangladesh
resolves10.1127/zfg/2021/0672The devastating flood in the arid region a consequence of rainfall and dam failure: Case study, Al-Lith flood on 23th November 2018, Kingdom of Saudi Arabia
resolves10.1007/s12665-015-4830-8Flash flood susceptibility assessment in Jeddah city (Kingdom of Saudi Arabia) using bivariate and multivariate statistical models
resolves10.1007/s12517-009-0098-1Hydrologic behavior and flood probability for selected arid basins in Makkah area, western Saudi Arabia
resolves10.3390/rs12091361Mapping the Distribution of Shallow Groundwater Occurrences Using Remote Sensing-Based Statistical Modeling over Southwest Saudi Arabia
resolves10.1093/gji/ggy220Gravity interpretation to image the geologic structures of the coastal zone in al Qunfudhah area, southwest Saudi Arabia
resolves10.1007/s12665-011-1504-zAn artificial neural network model for flood simulation using GIS: Johor River Basin, Malaysia
resolves10.1016/j.jhydrol.2014.03.008Flood susceptibility mapping using a novel ensemble weights-of-evidence and support vector machine models in GIS
resolves10.3390/w13050579Mapping Groundwater Potential Zones Using a Knowledge-Driven Approach and GIS Analysis
resolves10.1007/s41748-019-00123-yFlood Susceptibility Assessment in Bangladesh Using Machine Learning and Multi-criteria Decision Analysis
resolves10.3390/w12020471Mapping of Groundwater Potential Zones in Crystalline Terrain Using Remote Sensing, GIS Techniques, and Multicriteria Data Analysis (Case of the Ighrem Region, Western Anti-Atlas, Morocco)
resolves10.3390/w12010239A Comparative Study of Kernel Logistic Regression, Radial Basis Function Classifier, Multinomial Naïve Bayes, and Logistic Model Tree for Flash Flood Susceptibility Mapping
resolves10.3390/su8090948Flash Flood Hazard Susceptibility Mapping Using Frequency Ratio and Statistical Index Methods in Coalmine Subsidence Areas
resolves10.3390/su11195426Prediction Success of Machine Learning Methods for Flash Flood Susceptibility Mapping in the Tafresh Watershed, Iran
resolves10.1016/j.rse.2014.05.013Optimization of landslide conditioning factors using very high-resolution airborne laser scanning (LiDAR) data at catchment scale
resolves10.1002/hyp.3360050103Digital terrain modelling: A review of hydrological, geomorphological, and biological applications
resolves10.1007/s41976-019-00018-6Application of the GIS-Based Probabilistic Models for Mapping the Flood Susceptibility in Bansloi Sub-basin of Ganga-Bhagirathi River and Their Comparison
resolves10.1016/j.catena.2020.104681Delineation of groundwater potential zones in a drought-prone semi-arid region of east India using GIS and analytical hierarchical process techniques
resolves10.1007/s12665-018-8041-yFlash flood susceptibility modeling using geo-morphometric and hydrological approaches in Panjkora Basin, Eastern Hindu Kush, Pakistan
resolves10.3390/ijgi10040247A Geomorphic Approach for Identifying Flash Flood Potential Areas in the East Rapti River Basin of Nepal
resolves10.1016/j.catena.2019.04.009A novel hybrid approach based on a swarm intelligence optimized extreme learning machine for flash flood susceptibility mapping
resolves10.4038/tar.v26i1.8082Morphometric analysis of the Gal Oya river basin using spatial data derived from GIS
resolves10.1007/s10040-011-0703-8Groundwater potentiality mapping in the Sinai Peninsula, Egypt, using remote sensing and GIS-watershed-based modeling
resolves10.1080/10106049.2021.2005155Revealing potential areas of water resources using integrated remote-sensing data and GIS-based analytical hierarchy process
The 13 references without a DOI — listed, not checked
no DOI — not checkedThe human impact of earthquakes: A historical review of events 1980–2009 and systematic literature review
no DOI — not checkedFlash Flood Hazard Mapping Using Satellite Images and GIS Tools: A case study of Najran City, Kingdom of Saudi Arabia (KSA)
no DOI — not checkedApplication of 2D numerical simulation for rating curve development and inundation area mapping: A case study of monsoon dominated Dwarkeswar River
no DOI — not checkedChow, V.T. (1964). Quantitative Geomorphology of Drainage Basins and Channel Networks. Handbook of Applied Hydrology, McGraw Hill Book Company. Section 4II.
no DOI — not checkedRaster procedure for multi-criteria/multi-objective decisions
no DOI — not checkedGeospatial mapping of flood susceptibility and hydro-geomorphic response to the floods in Ulhas basin, India
no DOI — not checkedMasoudian, M. (2009). The Topographical Impact on Effectiveness of Flood Protection Measures. [Ph.D. Thesis, Faculty of Civil Engineering, Kassel University]. Available online: https://books.google.co.jp/books?hl=zh-TW&lr=&id=JQuc15e5ukEC&oi=fnd&pg=PA72&dq=The+Topographical+Impact+on+Effectiveness+of+Flood+Protection+Measures.+Ph.D.+Thesis.+Faculty+of+Civil+Engineering,+Kassel+University:+Kassel,+Germany,+2009&ots=f-N5ezRQFV&sig=nOMXpD6Fr0yR42qedBCZdIPxS9M#v=onepage&q&f=false.
no DOI — not checkedBapalu, G.V., and Sinha, R. (2014, November 08). GIS in Flood Hazard Mapping: A Case Study of Kosi River Basin, India. Available online: https://www.researchgate.net/profile/Rajiv-Sinha-2/publication/200004867_GIS_in_Flood_Hazard_Mapping_a_case_study_of_Kosi_River_Basin_India/links/0046353bd6f9186023000000/GIS-in-Flood-Hazard-Mapping-a-case-study-of-Kosi-River-Basin-India.pdf.
no DOI — not checkedApplication of a rational model in GIS for flood risk assessment in Accra
no DOI — not checkedSafarina, A.B., Karnisah, I., and Permana, A.S. (2018, January 10–12). Study of the effect of river basin morphology change on threshold parameters in cimahi flood early warning system. Proceedings of the 11th Aceh International Workshop and Expo on Sustainable Tsunami Disaster Recovery, Banda Aceh, Indonesia.
no DOI — not checkedMiller, V.C. (1953). A Quantitative Geomorphic Study of Drainage Basin Characteristics on the Clinch Mountain Area, Virginia and Tennessee, Project NR 389–402. Technical Report 3, Department of Geology, ONR, Columbia University.
no DOI — not checkedThe index of drainage intensity—A provisional new drainage factor
no DOI — not checkedDavis, J.C. (1975). Statics and Data Analysis in Geology, Wiley.
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