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1

Schumm, S. A. "Erroneous perceptions of fluvial hazards." Geomorphology 10, no. 1-4 (1994): 129–38. http://dx.doi.org/10.1016/0169-555x(94)90012-4.

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Apel, H., O. M. Trepat, N. N. Hung, D. T. Chinh, B. Merz, and N. V. Dung. "Combined fluvial and pluvial urban flood hazard analysis: method development and application to Can Tho City, Mekong Delta, Vietnam." Natural Hazards and Earth System Sciences Discussions 3, no. 8 (2015): 4967–5013. http://dx.doi.org/10.5194/nhessd-3-4967-2015.

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Abstract. Many urban areas experience both fluvial and pluvial floods, because locations next to rivers are preferred settlement areas, and the predominantly sealed urban surface prevents infiltration and facilitates surface inundation. The latter problem is enhanced in cities with insufficient or non-existent sewer systems. While there are a number of approaches to analyse either fluvial or pluvial flood hazard, studies of combined fluvial and pluvial flood hazard are hardly available. Thus this study aims at the analysis of fluvial and pluvial flood hazard individually, but also at developin
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Apel, Heiko, Oriol Martínez Trepat, Nguyen Nghia Hung, Do Thi Chinh, Bruno Merz, and Nguyen Viet Dung. "Combined fluvial and pluvial urban flood hazard analysis: concept development and application to Can Tho city, Mekong Delta, Vietnam." Natural Hazards and Earth System Sciences 16, no. 4 (2016): 941–61. http://dx.doi.org/10.5194/nhess-16-941-2016.

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Abstract. Many urban areas experience both fluvial and pluvial floods, because locations next to rivers are preferred settlement areas and the predominantly sealed urban surface prevents infiltration and facilitates surface inundation. The latter problem is enhanced in cities with insufficient or non-existent sewer systems. While there are a number of approaches to analyse either a fluvial or pluvial flood hazard, studies of a combined fluvial and pluvial flood hazard are hardly available. Thus this study aims to analyse a fluvial and a pluvial flood hazard individually, but also to develop a
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Arosio, Marcello, Chiara Arrighi, Luigi Cesarini, and Mario L. V. Martina. "Service Accessibility Risk (SAR) Assessment for Pluvial and Fluvial Floods in an Urban Context." Hydrology 8, no. 3 (2021): 142. http://dx.doi.org/10.3390/hydrology8030142.

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The development of strategies to adapt to and mitigate the potential adverse consequences of natural hazards requires support from risk assessment studies that quantify the impacts of hazardous events on our society. A comprehensive analysis of risk commonly evaluates the elements exposed to the hazard probabilistic scenarios and their vulnerabilities. However, while significant advances have been made in the assessment of direct losses, indirect impacts are less frequently examined. This work assesses the indirect consequences of two hydrologic hazards, i.e., pluvial and fluvial floods, in an
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Allende Ccahuana, Teófilo. "Análisis de los peligros hidrometeorológico y caída de roca en la ciudad de Pucalá y CP Huaca Rajada y Sipán." Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas 27, no. 53 (2024): e25046. http://dx.doi.org/10.15381/iigeo.v27i53.25046.

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The objective of the research is to develop an analysis of the hydrometeorological and rockfall hazards that impact the city of Pucalá and the populated centers of Huaca Rajada and Sipán, based on multi-criteria evaluation (MCE) techniques, where the variables of the susceptibility of the territory and the evaluation parameters for fluvial flooding, flooding, debris flow and rockfall hazards are identified. In addition, a matrix is used to assign weightings according to the relative importance of each variable and its descriptors with respect to the probability of increasing hazard levels. The
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Zazo, Santiago, Pablo Rodríguez-Gonzálvez, José-Luis Molina, Diego González-Aguilera, Carlos Agudelo-Ruiz, and David Hernández-López. "Flood Hazard Assessment Supported by Reduced Cost Aerial Precision Photogrammetry." Remote Sensing 10, no. 10 (2018): 1566. http://dx.doi.org/10.3390/rs10101566.

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Increasing flood hazards worldwide due to the intensification of hydrological events and the development of adaptation-mitigation strategies are key challenges that society must address. To minimize flood damages, one of the crucial factors is the identification of flood prone areas through fluvial hydraulic modelling in which a detailed knowledge of the terrain plays an important role for reliable results. Recent studies have demonstrated the suitability of the Reduced Cost Aerial Precision Photogrammetry (RC-APP) technique for fluvial applications by accurate-detailed-reliable Digital Terrai
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Moftakhari, Hamed R., Gianfausto Salvadori, Amir AghaKouchak, Brett F. Sanders, and Richard A. Matthew. "Compounding effects of sea level rise and fluvial flooding." Proceedings of the National Academy of Sciences 114, no. 37 (2017): 9785–90. http://dx.doi.org/10.1073/pnas.1620325114.

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Sea level rise (SLR), a well-documented and urgent aspect of anthropogenic global warming, threatens population and assets located in low-lying coastal regions all around the world. Common flood hazard assessment practices typically account for one driver at a time (e.g., either fluvial flooding only or ocean flooding only), whereas coastal cities vulnerable to SLR are at risk for flooding from multiple drivers (e.g., extreme coastal high tide, storm surge, and river flow). Here, we propose a bivariate flood hazard assessment approach that accounts for compound flooding from river flow and coa
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8

Sunarto, S. "Pemaknaan Filsafati Kearifan Lokal untuk Adaptasi Masyarakat terhadap Ancaman Bencana Marin dan Fluvial di Lingkungan Kepesisiran." Forum Geografi 25, no. 1 (2011): 1. http://dx.doi.org/10.23917/forgeo.v25i1.5026.

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The purpose of this research was to study the philosophical meaning of local wisdom that developed in the communities in the coastal environment, particularly in the eastern coast of Central Java. The method used for this philosophical meaning using the approach of geomorphological hermeneutics and disaster semiotics. The results of this research indicate that identified local wisdom in the form of cultural semiotics and faunal semiotics to anticipate the hazards of climate change as marine hazard and fluvial hazard. Cultural semiotics found in the form of advice that still need to be interpre
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9

Quan, Nguyen Cong, Pham Van Hung та Nguyen Van Dung. "ĐẶC ĐIỂM ĐỊA MẠO VÙNG CỬA SÔNG VEN BIỂN SÔNG THẠCH HÃN VÀ TAI BIẾN TỰ NHIÊN LIÊN QUAN". Tạp chí Khoa học và Công nghệ Biển 18, № 1 (2018): 27–38. http://dx.doi.org/10.15625/1859-3097/18/1/8831.

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Study on the geomorphological features, landform changes and correlated natural hazardous events was based on analyzing available literature and data. The coastal landform of Thach Han river mouth is a result from fluvial, fluvial - marine and marine accumulation along with local tectonic activities during Pliocene - Quaternary. During Pliocene - Pleistocene, western uplift and eastern subsidence movements were forming the types of landforms such as hills, erosion and abrasion terraces and accumulated plains of fluvial and fluvial - marine sediments. From early to middle Holocene, subsidence m
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10

Victorov, A. S., T. V. Orlov, S. A. Sadkov, and O. N. Trapeznikova. "Remote assessment of natural hazards on the base of the mathematical morphology of landscape." Геоэкология. Инженерная геология. Гидрогеология. Геокриология, no. 5 (September 20, 2019): 61–73. http://dx.doi.org/10.31857/s0869-78092019561-73.

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The aim of this paper is to show approaches for the quantitative evaluation of natural hazards using the remote sensing data and basing on the results of the mathematical morphology of landscape. The mathematical model of the morphological pattern for lacustrine thermokarst plains with fluvial erosion was taken for the decision of the problem in case of an asynchronous start of the thermokarst process with the continuous generation of new thermokarst depressions.
 The mathematical analysis of assumptions taken in the model gives us the regularities of the morphological pattern for the the
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11

Voženílek, Vít, and Jaromír Demek. "Modeling of soil erosion hazards as a response of land use changes." Geografie 105, no. 2 (2000): 166–76. http://dx.doi.org/10.37040/geografie2000105020166.

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It is generally accepted that land use changes influence fluvial regime, especially generation of surface runoff, water discharge in water courses, and soil erosion. The disturbances in fluvial systems of old cultural landscapes caused by land use changes bring many difficulties in landscape management (floods, accelerated soil erosion, silting of river beds, etc.). The land use structure in the Trkmanka River catchment in the Czech Republic consisted until 1953 of fragmented plots (small patches of land, ribbons) and later has been changed into large fields with agricultural monocultures. The
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12

Gurung, Narayan, Monique Fort, Rainer Bell, Gilles Arnaud-Fassetta, and Narayan Raj Maharjan. "Hydro-torrential hazard vs. anthropogenic activities along the Seti valley, Kaski, Nepal: Assessment and recommendations from a risk perspective." Journal of Nepal Geological Society 62 (September 14, 2021): 58–87. http://dx.doi.org/10.3126/jngs.v62i0.38695.

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The Seti River originates from the Annapurna Massif in the Higher Himalaya of Nepal and flows through the Pokhara valley in the Lesser Himalaya. The Seti River witnessed a disastrous flash flood on May 5th, 2012 causing the death of 72 people, obliterating dozens of homes and damaging infrastructures worth millions of dollars. Despite the 2012 flood event and several warnings by scientists for more yet bigger scale future floods in the Seti valley, fluvial risk is being aggravated by anthropogenic activities such as unplanned human settlement, encroachment of riverbanks, haphazard construction
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13

Sturm, Michael, Bernhard Gems, Florian Keller, et al. "Experimental analyses of impact forces on buildings exposed to fluvial hazards." Journal of Hydrology 565 (October 2018): 1–13. http://dx.doi.org/10.1016/j.jhydrol.2018.07.070.

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14

Říha, Jaromír, Tomáš Julínek, and David Duchan. "Quantification of Groundwater Hazards Related to Fluvial Floods via Groundwater Flow Modelling: A Review." Water 15, no. 6 (2023): 1145. http://dx.doi.org/10.3390/w15061145.

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Flood-related issues include the impact of groundwater on flood protection measures and other subsurface structures in a protected area. At the same time, subsurface elements of flood protection structures may significantly influence the natural groundwater regime and affect existing structures during non-flood periods. The paper provides an overview of hazardous factors linked to groundwater and specifies variables for the quantification of related hazards. Appropriate hydraulic groundwater flow models are presented and discussed, and their suitability for the modelling of individual typical
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15

Merz, B., J. Hall, M. Disse, and A. Schumann. "Fluvial flood risk management in a changing world." Natural Hazards and Earth System Sciences 10, no. 3 (2010): 509–27. http://dx.doi.org/10.5194/nhess-10-509-2010.

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Abstract. Flood risk emerges from the interaction of hazard and vulnerability. Over recent decades the notion of risk being the basis for flood management decisions has become widely accepted and operationalised through the use of models and quantified risk analysis providing the evidence for risk-informed decision making. However, it is now abundantly apparent that changes in time, at a range of scales, of pertinent variables that determine risk are not a second order consideration but, instead, fundamentally challenge the conventional approach to flood risk management. The nature of some of
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16

Patidar, Sandhya, Deonie Allen, Rick Haynes, and Heather Haynes. "Stochastic modelling of flow sequences for improved prediction of fluvial flood hazards." Geological Society, London, Special Publications 488, no. 1 (2018): 205–19. http://dx.doi.org/10.1144/sp488.4.

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AbstractThe availability of historical streamflow data of the desired length is often limited and, in these situations, the ability to synthetically generate statistically significant datasets becomes important. We previously developed a highly efficient stochastic modelling approach for the synthetic generation of daily streamflow sequences using the systematic combination of a hidden Markov model with the generalized Pareto distribution (the HMM-GP model). Daily streamflow sequences provide limited information on various significant small duration flooding events exceeding the peak over thre
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17

Lucey, Joseph, and Timu Gallien. "MULTIVARIATE COASTAL FLOOD RISK ALONG THE US PACIFIC." Coastal Engineering Proceedings, no. 37 (September 1, 2023): 60. http://dx.doi.org/10.9753/icce.v37.management.60.

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Urban coastal flooding is an increasing humanitarian and socioeconomic hazard. Flood assessments do not typically consider multivariate (marine and hydrologic) and multi-pathway (e.g., precipitation-surge, overtopping- overflow, surface–sewer) flooding, which may amplify coastal hazards and vulnerability. Notably, flood extent is underestimated when compounded hydrologic and marine impacts are not considered (Chen and Liu, 2014). Previous multivariate flooding studies typically consider the joint impacts of storm surge and fluvial sources. This study explores multivariate flooding caused by ma
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18

Sinha, Rajiv. "On the controls of fluvial hazards in the north Bihar plains, eastern India." Geological Society, London, Engineering Geology Special Publications 15, no. 1 (1998): 35–40. http://dx.doi.org/10.1144/gsl.eng.1998.015.01.04.

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19

Teofilo, Gianvito, Dario Gioia, and Luigi Spalluto. "Integrated Geomorphological and Geospatial Analysis for Mapping Fluvial Landforms in Murge Basse Karst of Apulia (Southern Italy)." Geosciences 9, no. 10 (2019): 418. http://dx.doi.org/10.3390/geosciences9100418.

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An integrated geomorphological and geospatial study was performed in order to map fluvial landforms in a sector of Lama Lamasinata close to the town of Binetto in the Murge Basse karst (metropolitan area of Bari, Apulia, Southern Italy). This study describes a combined approach, based on geomorphological fieldwork and topographical position index (TPI)-based landform classification, aimed at identifying the main landforms in an anthropically-modified environment, which suffered a progressive transformation of original morphologies. The resulting geomorphological map of fluvial features was the
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20

Quan, Nguyen Cong, та Pham Van Hung. "ĐẶC ĐIỂM ĐỊA MẠO VÀ TAI BIẾN TỰ NHIÊN LIẾN QUAN Ở VÙNG CỬA SÔNG VEN BIỂN SÔNG HƯƠNG". Tạp chí Khoa học và Công nghệ biển 19, № 1 (2019): 15–29. http://dx.doi.org/10.15625/1859-3097/19/1/9421.

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The geomorphological features and related geological hazards of the estuarine and coastal area of the Huong river are concluded from latest synthetic data. The estuarine terrain of Huong river was the result of interaction amongst neo and modern tectonic activities with exogenic dynamic factors as marine, marine - fluvial and fluvial. The estuary of Huong river is placed on the northwest - southeast neo - modern tectonic Quang Dien - Phu Vang depressed plate which has 3 local depressed blocks where then were filled by marine, marine - fluvial and fluvial sediment. The marine sediment was mostl
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21

Garrote, Julio, Andrés Díez-Herrero, Mar Génova, José Bodoque, María Perucha, and Pablo Mayer. "Improving Flood Maps in Ungauged Fluvial Basins with Dendrogeomorphological Data. An Example from the Caldera de Taburiente National Park (Canary Islands, Spain)." Geosciences 8, no. 8 (2018): 300. http://dx.doi.org/10.3390/geosciences8080300.

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Flash floods represent one of the more usual natural hazards in mountain basins, and, combined with the lack of reliable flow data and the recreational use of the drainage basin by tourists and hikers, there is a significant risk of catastrophe. Here, we present a dendro-geomorphological reconstruction of a past flash flood event in the Caldera de Taburiente N.P. (Canary Islands, Spain), an ungauged drainage basin in the SW side of the volcanic island of La Palma. We couple two-dimensional hydraulic modelling in a highly-resolved topographic environment (LiDAR data) with (1) peak flow data for
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22

Preisser, Matthew, Paola Passalacqua, R. Patrick Bixler, and Julian Hofmann. "Intersecting near-real time fluvial and pluvial inundation estimates with sociodemographic vulnerability to quantify a household flood impact index." Hydrology and Earth System Sciences 26, no. 15 (2022): 3941–64. http://dx.doi.org/10.5194/hess-26-3941-2022.

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Abstract. Increased interest in combining compound flood hazards and social vulnerability has driven recent advances in flood impact mapping. However, current methods to estimate event-specific compound flooding at the household level require high-performance computing resources frequently not available to local stakeholders. Government and non-governmental agencies currently lack the methods to repeatedly and rapidly create flood impact maps that incorporate the local variability in both hazards and social vulnerability. We address this gap by developing a methodology to estimate a flood impa
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23

Gao, Mingxing, Ming Hao, Gerold Zeilinger, and Xiwei Xu. "Recent Uplift Characteristics of the Southeast Tibetan Plateau, an Analysis Based on Fluvial Indices." Remote Sensing 15, no. 2 (2023): 433. http://dx.doi.org/10.3390/rs15020433.

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The southeastern Tibetan Plateau (SETP) is well known for its large strike–slip faults with high slip rates and a high potential for seismic hazards. However, little is known about its thrust faults and associated seismic hazards, even though they can produce devastating earthquakes despite their relatively low slip rate. Here we investigated the thrust faults and the recent tectonic uplift pattern in the SETP on a regional scale by combining geomorphic analysis and geodetic data. We quantify the potential differential uplift in the SETP recorded in the long-term landscape evolution with geomo
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24

Chrysanti, Asrini, Ariz Adhani, Ismail Naufal Azkiarizqi, Mohammad Bagus Adityawan, Muhammad Syahril Badri Kusuma, and Muhammad Cahyono. "Assessing Compound Coastal–Fluvial Flood Impacts and Resilience Under Extreme Scenarios in Demak, Indonesia." Sustainability 16, no. 23 (2024): 10315. http://dx.doi.org/10.3390/su162310315.

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Demak is highly vulnerable to flooding from both fluvial and coastal storms, facing increasing pressures on its sustainability and resilience due to multiple compounding flood hazards. This study assesses the inundation hazards in Demak coastal areas by modeling the impacts of compound flooding. We modeled eight scenarios incorporating long-term forces, such as sea level rise (SLR) and land subsidence (LS), as well as immediate forces, like storm surges, wind waves, and river discharge. Our findings reveal that immediate forces primarily increase inundation depth, while long-term forces expand
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M., N. Ezemonye, S. Umo Ikpong, C. Ojinma C., C. Ike M., and Iweka Enwereuzor A. "Geomorphometric Parameters of Ikpa River and its Implications for the Planning of Fluvial Hazards in the Northeast of Akwa Ibom State." Journal of Geography, Environment and Earth Science International 11, no. 1 (2017): 1–12. https://doi.org/10.9734/JGEESI/2017/34674.

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This article examines the geomorphometry of Ikpa River as a major determinant of the planning pattern for fluvial hazards in the Northeast of Akwa Ibom State. Geomorphometric parameters were computed for the entire area and the seven sub-basins sampled within the main watershed. A descriptive analysis of the parameters indicates that the dendritic Ikpa Watershed is a natural river with homogenous geologic formation and possesses high degree of integration of the smaller rivers. Sixteen geomorphometric parameters were measured for the seven sub-basins. Using Principal Component Analysis, four m
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26

Bernet, Daniel B., Volker Prasuhn, and Rolf Weingartner. "Surface water floods in Switzerland: what insurance claim records tell us about the damage in space and time." Natural Hazards and Earth System Sciences 17, no. 9 (2017): 1659–82. http://dx.doi.org/10.5194/nhess-17-1659-2017.

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Abstract. Surface water floods (SWFs) have received increasing attention in the recent years. Nevertheless, we still know relatively little about where, when and why such floods occur and cause damage, largely due to a lack of data but to some degree also because of terminological ambiguities. Therefore, in a preparatory step, we summarize related terms and identify the need for unequivocal terminology across disciplines and international boundaries in order to bring the science together. Thereafter, we introduce a large (n = 63 117), long (10–33 years) and representative (48 % of all Swiss bu
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27

A.Khan, A., and A. C. Chaterjee. "EVOLUTION OF FLUVIAL TERRACES OF ALAKNANDA AND ITS TRIBUTARIES AND IMPRINTS OF NEOTECTONISAM IN UPPER GANGA BASIN, GARHWAL HIMALAYA, PARTS OF CHAMOLI TEHRI UTTAKASHI & PAURI DISTRICT UTTAR PRADESH (UTTRARKHAND) INDIA." International Journal of Advanced Research 11, no. 01 (2023): 1203–40. http://dx.doi.org/10.21474/ijar01/16138.

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The Geomorphological study in in Alaknanda and its tributaries Ganga basin Garhwal Himalya parts of Chamoli Tehri Uttarkashiand Pauri district Uttar Pradesh (Uttrarkhand with special reference to fluvial terraces has been studied . An area about 10000 Sq.kms in parts of QA sheet 53Jand 53 N on 1:1000000/ 1:50000 scale of has been covered. The area of Upper Ganga basin genetically comprised of terraces of three domains, viz. glacial, fluvio-glacial and fluvial which represent distinct environment of sedimentation of Pleistocene, late Pleistocene and Holocene time during Quaternary period. The g
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28

Meslard, Florian, Yann Balouin, Nicolas Robin, and François Bourrin. "Assessing the Role of Extreme Mediterranean Events on Coastal River Outlet Dynamics." Water 14, no. 16 (2022): 2463. http://dx.doi.org/10.3390/w14162463.

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River mouths are highly dynamic environments responding very rapidly to changes in wave energy or river floods. While the morphological response during floods or during marine storm events has been widely documented in the literature, little is known about the mechanisms acting during the co-occurrence of fluvial and marine hazards. This concomitance of river flood and marine storm is quite common in the western Mediterranean Sea, and was the case for the Gloria event, considered to be the most extreme event in recent decades. During this event, monitoring of hydrodynamics and morphological ev
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Faccini, Francesco, Fabio Luino, Guido Paliaga, Anna Roccati, and Laura Turconi. "Flash Flood Events along the West Mediterranean Coasts: Inundations of Urbanized Areas Conditioned by Anthropic Impacts." Land 10, no. 6 (2021): 620. http://dx.doi.org/10.3390/land10060620.

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Flash floods represent one of the natural hazards that causes the greatest number of victims in the Mediterranean area. These processes occur by short and intense rainfall affecting limited areas of a few square kilometers, with rapid hydrological responses. Among the causes of the flood frequency increase in the last decades are the effects of the urban expansion in areas of fluvial pertinence and climatic change, namely the interaction between anthropogenic landforms and hydro-geomorphological dynamics. In this paper the authors show a comparison between flood events with very similar weathe
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Christopher, Christopher, Bashiru Turay, and Sampson Akwafuo. "Does Flooding Undermine the Management Capacities of the COVID-19 Pandemic? A Study of Lagos State, Nigeria." Central European Journal of Geography and Sustainable Development 4, no. 2 (2022): 50. http://dx.doi.org/10.47246/cejgsd.2022.4.2.3.

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Given the dynamics of climate events (hazards) and their linkages to human health, it is imperative to continuallly check the impacts of these events on the public health system. While efforts have been made to understand fluvial flood and COVID-19 vulnerability and impacts, substantial gaps about impacts of their simultaneous occurrence on densely-populated communities abound. This paper presents an assessement of the occurrence of fluvial flooding and its potential to undermine the management of the COVID-19 pandemic in Lagos State, Nigeria. This study applied the indicator-based risk assess
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Dousari, Ali Al, Modi Ahmed, Noor Al Dousari, Abeer Al Saleh, and Teena William. "Managing the Hazards of Aeolian, Fluvial and Coastal Erosion in Gudhi Area-Northern Kuwait Bay." IOP Conference Series: Earth and Environmental Science 904, no. 1 (2021): 012040. http://dx.doi.org/10.1088/1755-1315/904/1/012040.

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Abstract Kuwait Institute for Scientific Research plans to set up some research facilities within the Gudhi area, which lies north of the coastal spill of Kuwait Bay. The area is about 653,000 m2, the region highly sensitive from an environmental perspective and ecological. It is a coastal strip dominated by rich fauna and flora mainly Nitraria retusa forming large nabkhas that attract many wildlife scientists. The presence of nabkhas is a good indicator of fluvial and aeolian activities in the area. The establishment of infrastructures within this area is anticipated to cause significant dama
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32

De Luca, Paolo, Colin Harpham, Robert L. Wilby, John K. Hillier, Christian L. E. Franzke, and Gregor C. Leckebusch. "Past and Projected Weather Pattern Persistence with Associated Multi-Hazards in the British Isles." Atmosphere 10, no. 10 (2019): 577. http://dx.doi.org/10.3390/atmos10100577.

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Hazards such as heatwaves, droughts and floods are often associated with persistent weather patterns. Atmosphere-Ocean General Circulation Models (AOGCMs) are important tools for evaluating projected changes in extreme weather. Here, we demonstrate that 2-day weather pattern persistence, derived from the Lamb Weather Types (LWTs) objective scheme, is a useful concept for both investigating climate risks from multi-hazard events as well as for assessing AOGCM realism. This study evaluates the ability of a Coupled Model Intercomparison Project Phase 5 (CMIP5) multi-model sub-ensemble of 10 AOGCM
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Florsheim, Joan L., Jeffrey F. Mount, Christopher Hammersmark, William E. Fleenor, and Geoffrey S. Schladow. "Geomorphic Influence on Flood Hazards in a Lowland Fluvial-Tidal Transitional Area, Central Valley, California." Natural Hazards Review 9, no. 3 (2008): 116–24. http://dx.doi.org/10.1061/(asce)1527-6988(2008)9:3(116).

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López-Tarazón, José A., Axel Bronstert, Annegret H. Thieken, and Theresia Petrow. "The effects of global change on floods, fluvial geomorphology and related hazards in mountainous rivers." Science of The Total Environment 669 (June 2019): 7–10. http://dx.doi.org/10.1016/j.scitotenv.2019.03.026.

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Badoux, A., N. Andres, and J. M. Turowski. "Damage costs due to bedload transport processes in Switzerland." Natural Hazards and Earth System Sciences Discussions 1, no. 4 (2013): 4181–222. http://dx.doi.org/10.5194/nhessd-1-4181-2013.

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Abstract. In Alpine regions, floods are often associated with bedload erosion, transport and deposition along the streams. These processes pose hazard in addition to the elevated water discharge. However, it is unclear to what extent they contribute to total damage caused by natural hazards. Using the Swiss flood and landslide data base, which collects financial damage data of naturally triggered floods, debris flows and landslides, we estimated the contribution of fluvial bedload transport processes to total damage costs in Switzerland. For each data base entry an upper and lower limit of fin
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Cubelos, Carlota, A. Kularathna, Ven Bruno Valenzuela, et al. "Understanding Community-Level Flooding Awareness in Remote Coastal Towns in Northern Chile through Community Mapping." Geosciences 9, no. 7 (2019): 279. http://dx.doi.org/10.3390/geosciences9070279.

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In 2015 and 2017 unusual ocean and atmospheric conditions produced many years’ worth of rainfall in short periods over Northern Chile’s Atacama Desert, resulting in catastrophic flooding in the town of Chañaral. However, the town is not only at risk of fluvial flooding, it is also at risk of tsunamis. Through a community mapping exercise, the authors attempted to establish the level of community awareness about tsunamis, and contrasted it with that of other types of water-related hazards facing the town (namely that of flooding due to high intensity rain). This was then compared with the resul
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Comer, Joanne, Agnieszka Indiana Olbert, Stephen Nash, and Michael Hartnett. "Development of high-resolution multi-scale modelling system for simulation of coastal-fluvial urban flooding." Natural Hazards and Earth System Sciences 17, no. 2 (2017): 205–24. http://dx.doi.org/10.5194/nhess-17-205-2017.

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Abstract. Urban developments in coastal zones are often exposed to natural hazards such as flooding. In this research, a state-of-the-art, multi-scale nested flood (MSN_Flood) model is applied to simulate complex coastal-fluvial urban flooding due to combined effects of tides, surges and river discharges. Cork city on Ireland's southwest coast is a study case. The flood modelling system comprises a cascade of four dynamically linked models that resolve the hydrodynamics of Cork Harbour and/or its sub-region at four scales: 90, 30, 6 and 2 m. Results demonstrate that the internalization of the
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James M. Fitton, Barry O'Dwyer, and Breda Maher. "Developing a social vulnerability to environmental hazards index to inform climate action in Ireland." Irish Geography 54, no. 2 (2022): 157–80. http://dx.doi.org/10.55650/igj.2021.1464.

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Ireland faces a wide range of impacts from climate change including increases in fluvial, pluvial and coastal flooding, coastal erosion and heat waves. In Ireland, there has been research undertaken to assess the spatial distribution of some these hazards, for example, the OPW Catchment Flood Risk Assessment and Management programme. However, these assessments do not take into account thatsome individuals or groups are disproportionately affected by climate change as they have less capacity to prepare for, respond to, and recover from climate-related hazards and effects. This concept is termed
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Aitken, Gordon, Lindsay Beevers, and Mike A. Christie. "Advanced Uncertainty Quantification for Flood Inundation Modelling." Water 16, no. 9 (2024): 1309. http://dx.doi.org/10.3390/w16091309.

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Flood hazards present a significant risk to the UK, with homes, businesses and critical infrastructure exposed to a mixture of fluvial, surface water and coastal flooding. Climate change is expected to influence river flows, changing the frequency and magnitude of future flood events. Flood hazard assessments are used by decision-makers to implement policies and engineering interventions to reduce the impacts of these flood events. Probabilistic flood modelling can explore input and parameter uncertainties in flood models to fully quantify inundation uncertainty. However, probabilistic methods
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Lumbanbatu, Ungkap M., and Suyatman Hidayat. "Evaluasi awal kerentanan pelulukan/likuefaksi daerah Kendal dan sekitarnya, Jawa Tengah." Indonesian Journal on Geoscience 2, no. 3 (2007): 159–76. http://dx.doi.org/10.17014/ijog.2.3.159-176.

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http://dx.doi.org/10.17014/ijog.vol2no3.20074The investigated area is a region prone to liquefaction hazards since it consists of loose, saturated Quaternary deposits. The Quaternary deposits were deposited in several sediment environments such as swamp, estuary, near shore, off shore, and fluvial (flood plain, flood basin and paleo channel). Among those Quaternary deposits, the paleo channel and estuary deposits which mainly consist of fine - to medium - sand have high susceptibility to liquefaction. An earthquake-source zone which is able to trigger earthquake and to cause liquefaction hazar
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Stoffel, M., and M. Bollschweiler. "Tree-ring analysis in natural hazards research – an overview." Natural Hazards and Earth System Sciences 8, no. 2 (2008): 187–202. http://dx.doi.org/10.5194/nhess-8-187-2008.

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Abstract. The understanding of geomorphic processes and knowledge of past events are important tasks for the assessment of natural hazards. Tree rings have on varied occasions proved to be a reliable tool for the acquisition of data on past events. In this review paper, we provide an overview on the use of tree rings in natural hazards research, starting with a description of the different types of disturbances by geomorphic processes and the resulting growth reactions. Thereafter, a summary is presented on the different methods commonly used for the analysis and interpretation of reactions in
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Riedel, Lukas, Thomas Röösli, Thomas Vogt, and David N. Bresch. "Fluvial flood inundation and socio-economic impact model based on open data." Geoscientific Model Development 17, no. 13 (2024): 5291–308. http://dx.doi.org/10.5194/gmd-17-5291-2024.

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Abstract. Fluvial floods are destructive hazards that affect millions of people worldwide each year. Forecasting flood events and their potential impacts therefore is crucial for disaster preparation and mitigation. Modeling flood inundation based on extreme value analysis of river discharges is an alternative to physical models of flood dynamics, which are computationally expensive. We present the implementation of a globally applicable, open-source fluvial flood model within a state-of-the-art risk modeling framework. It uses openly available data to rapidly compute flood inundation footprin
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Santiago-Collazo, Felix Luis, Logan Bayer, Matthew Bilskie, and Peter Bacopoulos. "ASSESSING COMPOUND FLOOD PROCESSES THROUGH A MULTIDIMENSIONAL FRAMEWORK IN COASTAL WATERSHEDS." Coastal Engineering Proceedings, no. 38 (May 29, 2025): 225. https://doi.org/10.9753/icce.v38.management.225.

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Water is vital for any civilization to prosper; thus, settlements have been established within the coastal or fluvial floodplain throughout history. These communities, especially low-gradient ones, are prone to flood hazards such as nuisance flooding, storm surges, extreme rainfall, and high river discharge. However, when two or more flood drivers (e.g., coastal, pluvial, and fluvial) coincide or are in close succession, it can be classified as a compound flood event (Bilskie and Hagen, 2018). Consequently, the inundation impacts can be exacerbated (rather than being a linear superposition) du
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Tehranirad, Babak, Liv Herdman, Kees Nederhoff, et al. "Effect of Fluvial Discharges and Remote Non-Tidal Residuals on Compound Flood Forecasting in San Francisco Bay." Water 12, no. 9 (2020): 2481. http://dx.doi.org/10.3390/w12092481.

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Accurate and timely flood forecasts are critical for making emergency-response decisions regarding public safety, infrastructure operations, and resource allocation. One of the main challenges for coastal flood forecasting systems is a lack of reliable forecast data of large-scale oceanic and watershed processes and the combined effects of multiple hazards, such as compound flooding at river mouths. Offshore water level anomalies, known as remote Non-Tidal Residuals (NTRs), are caused by processes such as downwelling, offshore wind setup, and also driven by ocean-basin salinity and temperature
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Láng-Ritter, Josias, Marc Berenguer, Francesco Dottori, Milan Kalas, and Daniel Sempere-Torres. "Compound flood impact forecasting: integrating fluvial and flash flood impact assessments into a unified system." Hydrology and Earth System Sciences 26, no. 3 (2022): 689–709. http://dx.doi.org/10.5194/hess-26-689-2022.

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Abstract. Floods can arise from a variety of physical processes. Although numerous risk assessment approaches stress the importance of taking into account the possible combinations of flood types (i.e. compound floods), this awareness has so far not been reflected in the development of early warning systems: existing methods for forecasting flood hazards or the corresponding socio-economic impacts are generally designed for only one type of flooding. During compound flood events, these flood type-specific approaches are unable to identify overall hazards or impacts. Moreover, from the perspect
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Mondal, Kartick Chandra, Sutapa Saha, and Pritam Aitch. "Flood hazards and risk prediction by using the Analytical Hierarchy Process on GIS platform: a case study in lower Ajay basin, India." Disaster Advances 16, no. 1 (2022): 1–13. http://dx.doi.org/10.25303/1601da01013.

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Flood is the most common and natural disaster of the world. Fluvial flood basically occurred by the combination of hydro-geomorphological effect. But during the flood risk assessment, geomorphological condition analysis is ignored. Present research aimed to focus on flood assessment in the lower part of the Ajay river basin on the basis of present hydro-geomorphological conditions. Flood character analysis on the basis of present hydro-geomorphological status of the river also helps in the management strategy formulation. Remote sensing data, traditional topographical sheet and field work reac
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Chalov, Sergey R., Vsevolod Moreido, Marko Urošev, Valentin Golosov, Miodrag Zlatić, and Nikolay Kasimov. "Advances in catchment and river erosion and pollutants’ transport studies: from monitoring to modelling to management." GEOGRAPHY, ENVIRONMENT, SUSTAINABILITY 17, no. 4 (2025): 6–9. https://doi.org/10.24057/2071-9388-2024-0608.

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Catchment erosion, channel erosion and sediment transport are connected processes within fluvial system forming a sediment cascade. Studies related to connectivity between a specific source and its multiple sinks within catchment, and rivers, and their multiple impacts have expanded in scope and sophistication during the last two decades, and were recently broadly presented at numerous international conferences and workshops. The International conference on transboundary catchment erosion and pollution problems was held in Belgrade, Serbia, in July 2023. The outcome of this conference as compr
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Karam, Amir, Amir safari, and Shila Hajehforosh Nia. "Analysis of flood and fluvial processes in the occurrence of environmental hazards (Case Study: Arange Basin, Karaj River)." Journal of Spatial Analysis Environmental Hazarts 2, no. 2 (2015): 53–68. http://dx.doi.org/10.18869/acadpub.jsaeh.2.2.53.

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Chadwick, Austin J., Michael P. Lamb, and Vamsi Ganti. "Accelerated river avulsion frequency on lowland deltas due to sea-level rise." Proceedings of the National Academy of Sciences 117, no. 30 (2020): 17584–90. http://dx.doi.org/10.1073/pnas.1912351117.

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Sea-level rise, subsidence, and reduced fluvial sediment supply are causing river deltas to drown worldwide, affecting ecosystems and billions of people. Abrupt changes in river course, called avulsions, naturally nourish sinking land with sediment; however, they also create catastrophic flood hazards. Existing observations and models conflict on whether the occurrence of avulsions will change due to relative sea-level rise, hampering the ability to forecast delta response to global climate change. Here, we combined theory, numerical modeling, and field observations to develop a mechanistic fr
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Reynard, Nicholas S., Alison L. Kay, Molly Anderson, Bill Donovan, and Caroline Duckworth. "The evolution of climate change guidance for fluvial flood risk management in England." Progress in Physical Geography: Earth and Environment 41, no. 2 (2017): 222–37. http://dx.doi.org/10.1177/0309133317702566.

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Floods are one of the biggest natural hazards to society, and there is increasing concern about the potential impacts of climate change on flood occurrence and magnitude. Furthermore, flood risk is likely to increase in the future not just through increased flood occurrence, but also through socio-economic changes, such as increasing population. The extent to which adaptation measures can offset this increased risk will depend on the level of future climate change, but there exists an urgent need for information on the potential impacts of climate change on floods, so that these can be account
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