Search results for " rainfall"

showing 10 items of 117 documents

Temporal evolution of heavy rainfall in the southern West Africa coastline belt.

2018

The Southern Coastalbelt of West Africa (SCWA) is exposed to recurrent flooding. The two objectives of the study are to show thespecificity of SCWA to heavy rainfall occurrence and to determine the trends of the latter. Daily rainfall data of41 stations in the southern parts of Côte d’Ivoire, Ghana, Togo and Benin for the period 1951–2015 and ClimateHazards Group InfraRed Precipitation data were used. The approach is based on the determination (for eachstation and grid point) of the 95th centile (P95) of precipitations greater than or equal to 1 mm. Results indicatethat rainfall is heavier on the coastal belt than inland (average P95 is 65,4 and 45,5 m/day for coastal and inlandstations res…

[SDU.STU.CL] Sciences of the Universe [physics]/Earth Sciences/Climatologytrendrégion méridionale côtière ouest-africaine[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/ClimatologyExtreme rainfallPrécipitations intensesSouthern coastal belt of West Africatendance
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Influence of temperature on extreme rainfall intensity in Sicily (Italy)

2018

Some climate model experiments suggest an intensification of short-duration extreme precipitation in many parts of the world associated with a warming climate. This behavior could have a physical motivation due to the fact that warmer air has the potential to hold more atmospheric moisture and, then, to provide more water to rainfall events. The theoretical basis of the relationship that links air temperature and atmospheric humidity is provided by the Clausius-Clapeyron relation, according to which, if the relative humidity remains constant, then atmospheric humidity will increase with temperature at a rate (often referred to as CC-rate) in the order of 6-7% °C-1, following the saturation …

climate changeClausius-Clapeyron; extreme rainfall; temperatureextreme rainfallscaling rateSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologiatemperature; scaling rate; extreme rainfall; climate changeTemperature
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Investigating the Reliability of Stationary Design Rainfall in a Mediterranean Region under a Changing Climate

2023

Extreme rainfall events have been more frequent in recent decades, potentially as a climate change effect. This has been leading to a higher risk of the failure of existing hydraulic infrastructures, and to a higher awareness regarding the unreliability of design rainfall calculated with reference to historical data recorded in the last century. With this in mind, the present study questions the stationary assumption of the rainfall Depth–Duration–Frequency curves commonly used in Sicily, the biggest island of the Mediterranean Sea. Quantiles derived from the most up-to-date regional method, regarding Sicily, based on observations in the period 1928–2010, have been compared with those extra…

climate changedesign rainfallSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologiahydrological riskhydraulic infrastructureextreme rainfall event
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The use of barley straw residues to avoid high erosion and runoff rates on persimmon plantations in Eastern Spain under low frequency-high magnitude …

2016

[EN] Soil and water losses due to agricultural mismanagement are high and non-sustainable in many orchards. An experiment was set up with rainfall simulation at 78 mm h(-1) over 1 hour on 20 paired plots of 2 m(2) (bare and straw covered) in new persimmon plantations in Eastern Spain. Effects of straw cover on the control of soil and water losses were assessed. An addition of 60% straw cover (75 gm(-2)) resulted in delayed ponding and runoff generation and consequently reduced water losses from 60% to 13% of total rainfall. The straw cover reduced raindrop impact and thus sediment detachment from 1014 to 47 g plot(-1) h(-1). The erosion rate was reduced from 5.1 to 0.2 Mg ha-(1) h(-1). The …

erosion; hydrology; management; persimmon plantations; rainfall simulation.; Soil Science;Soil Sciencehydrology010501 environmental sciencesEnvironmental Science (miscellaneous)01 natural sciencesHydrology (agriculture)0105 earth and related environmental sciencesEarth-Surface Processes2. Zero hungerSoil healthSoil organic matterPersimmon plantations04 agricultural and veterinary sciencesCOMERCIALIZACION E INVESTIGACION DE MERCADOSpersimmon plantations15. Life on landStrawBodemfysica en LandbeheerPE&RCerosion6. Clean waterManagementpersimmon plantationSoil Physics and Land ManagementAgronomyErosionEarth-Surface ProcesseSoil water040103 agronomy & agricultureErosionRainfall simulation0401 agriculture forestry and fisheriesEnvironmental scienceHydrologySurface runoffMulchmanagementrainfall simulation.
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Extreme rainfall changes induced by future climate in Mediterranean area

2016

Extreme rainfall events have large impacts on society and are likely to continue to do so under predicted future climate change. Indeed, extreme precipitations show intensification in many regions of the world and this is of key importance to society as a result of the large impact of flooding. Thus, for planning and management decisions of the hydraulic infrastructures, accurate estimates of precipitation magnitudes at different durations are needed. Moreover, extreme precipitation events represent an increasing threat to society under global warming and are among the most serious challenges. In fact, future climate change is likely to lead to the change of extremes events that will become…

extreme rainfall
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Uncertainty Analysis in the Evaluation of the DDF Curves Parameters in Climate Change Scenarios

2016

Abstract On the global scale, there is a robust observational evidence that, over the last decades, the frequency and intensity of extreme events significantly changed, even if regional and local studies have highlighted complex and non-uniform spatial patterns. Climate change can cause increased rainfall intensities which leads to an additional impact on drainage systems, due to the alteration of magnitude and frequency of peak flows over their service life. For this reason, the design criteria of urban drainage infrastructures need to be revised and updated, in order to take into account the possible variations of extreme rainfall. In particular, the Depth-Duration-Frequency (DDF) curves,…

extreme rainfall trend010504 meteorology & atmospheric sciencesMeteorology0208 environmental biotechnologyMagnitude (mathematics)Climate changeStorm02 engineering and technologyGeneral Medicine01 natural sciences020801 environmental engineeringclimate change scenariosSpatial ecologyEnvironmental sciencedetention tank design.DrainageScale (map)Baseline (configuration management)uncertainty analysisUncertainty analysisEngineering(all)0105 earth and related environmental sciencesProcedia Engineering
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Mobility of plume-derived volcanogenic elements in meteoric water at Nyiragongo volcano (Congo) inferred from the chemical composition of single rain…

2017

The chemical composition of single rainfall events was investigated at Nyiragongo volcano (Democratic Republic of Congo) with the aim of determining the relative contributions of plume-derived elements. The different locations of the sampling sites allowed both plume-affected samples (hereafter referred to as “fumigated samples”) and samples representative of the local background to be collected. The chemical composition of the local background reflects the peculiar geographic features of the area, being influenced by biomass burning, geogenic dust, and biological activity. Conversely, fumigated samples contain large amounts of volcanogenic elements that can be clearly distinguished from th…

geographygeography.geographical_feature_categoryVolcanogenic element010504 meteorology & atmospheric sciencesLavaGeochemistryMineralogyNyiragongo volcano010502 geochemistry & geophysics01 natural sciencesSilicateFumarolePlumechemistry.chemical_compoundchemistryVolcanoGeochemistry and PetrologyVolatilityMagmaMeteoric waterChemical compositionGeology0105 earth and related environmental sciencesSingle rainfall event
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Establishing a threshold for rainfall‐induced landslides by a kinetic energy–duration relationship

2020

Many investigators have attempted to define the threshold of landslide failure, that is, the level of the selected climatic variable above which a rainfall-induced landslide occurs. Intensity–duration (I–d) relationships are the most common type of empirical thresholds proposed in the literature for predicting landslide occurrence induced by rainfall. Recent studies propose the use of the kinetic power per unit volume of rainfall (J m−2 mm−1) to quantify the threshold of landslides induced by rainfall. In this paper, the relationship between rainfall duration and kinetic power corresponding to landslides triggered by rain was used to propose a new approach to define the threshold for predic…

landslide triggering rainfall kinetic power rainfall thresholdSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliLandslideDuration (project management)Kinetic energyAtmospheric sciencesGeologyWater Science and TechnologyHydrological Processes
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Accounting for soil parameter uncertainty in a physically based and distributed approach for rainfall-triggered landslides

2016

In this study we propose a probabilistic approach for coupled distributed hydrological-hillslope stability models that accounts for soil parameters uncertainty at basin scale. The geotechnical and soil retention curve parameters are treated as random variables across the basin and theoretical probability distributions of the Factor of Safety (FS) are estimated. The derived distributions are used to obtain the spatio-temporal dynamics of probability of failure, in terms of parameters uncertainty, conditioned to soil moisture dynamics. The framework has been implemented in the tRIBS-VEGGIE (Triangulated Irregular Network (TIN)-based Real-time Integrated Basin Simulator-VEGetation Generator fo…

landslidelandslides; rainfall; distributed hydrological modelling; parameters uncertaintylandslidesdistributed hydrological modellingSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologiarainfallparameters uncertainty
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Estimation of synthetic flood design hydrographs using a distributed rainfall–runoff model coupled with a copula-based single storm rainfall generator

2014

Abstract. In this paper a procedure to derive synthetic flood design hydrographs (SFDH) using a bivariate representation of rainfall forcing (rainfall duration and intensity) via copulas, which describes and models the correlation between two variables independently of the marginal laws involved, coupled with a distributed rainfall–runoff model, is presented. Rainfall–runoff modelling (R–R modelling) for estimating the hydrological response at the outlet of a catchment was performed by using a conceptual fully distributed procedure based on the Soil Conservation Service – Curve Number method as an excess rainfall model and on a distributed unit hydrograph with climatic dependencies for the …

lcsh:GE1-350Return periodHydrologyFlood mythMeteorologySettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologialcsh:QE1-996.5Copula (linguistics)lcsh:Geography. Anthropology. RecreationHydrographRunoff curve numberlcsh:TD1-1066Runoff modelDesign hydrographs Flood frequency estimation bivariate analysis copula distributed rainfall-runoff models flood risk analysislcsh:Geologylcsh:GGeneral Earth and Planetary SciencesEnvironmental sciencelcsh:Environmental technology. Sanitary engineeringDigital elevation modellcsh:Environmental sciencesFlow routingNatural Hazards and Earth System Sciences
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