Search results for "Magnitude"

showing 10 items of 501 documents

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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Persistence in complex systems

2022

Persistence is an important characteristic of many complex systems in nature, related to how long the system remains at a certain state before changing to a different one. The study of complex systems' persistence involves different definitions and uses different techniques, depending on whether short-term or long-term persistence is considered. In this paper we discuss the most important definitions, concepts, methods, literature and latest results on persistence in complex systems. Firstly, the most used definitions of persistence in short-term and long-term cases are presented. The most relevant methods to characterize persistence are then discussed in both cases. A complete literature r…

fractal dimensionFOS: Computer and information sciencesComplex systemsRenewable energyglobal solar-radiationsystems' statesComplex networksGeneral Physics and AstronomyFOS: Physical scienceslong-term and short-term methodsadaptationzero-temperature dynamicsDynamical Systems (math.DS)Physics - GeophysicsneurosciencememoryMethodology (stat.ME)PersistenceOptimization and planningMemoryMachine learningearthquake magnitude seriesFOS: MathematicsAtmosphere and climateMathematics - Dynamical SystemsAdaptationcomplex systemslow-visibility eventstime-seriesStatistics - Methodologyinflation persistenceLong-term and short-term methodsdetrended fluctuation analysislong-range correlationspersistencecomplex networksSystems’ statesEconomyneural networksrenewable energyGeophysics (physics.geo-ph)atmosphere and climateeconomymachine learningoptimization and planningNeural networkswind-speedNeuroscience
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Acoustic detection of neutrinos in bedrock

2019

We propose to utilize bedrock as a medium for acoustic detection of particle showers following interactions of ultra-high energy neutrinos. With the density of rock three-times larger and the speed of sound four-times larger compared to water, the amplitude of the generated bipolar pressure pulse in rock should be larger by an order of magnitude. Our preliminary simulations confirm that prediction. Higher density of rock also guarantees higher interaction rate for neutrinos. A noticeably longer attenuation length in rock reduces signal dissipation. The Pyh\"asalmi mine has a unique infrastructure and rock conditions to test this idea and, if successful, extend it to a full-size experiment.

geographyPhysics - Instrumentation and Detectorsgeography.geographical_feature_categoryBedrockPhysicsQC1-999neutriinotAttenuation lengthFOS: Physical sciencesGeophysicsInstrumentation and Detectors (physics.ins-det)DissipationHigh Energy Physics - ExperimentPhysics::GeophysicsHigh Energy Physics - Experiment (hep-ex)AmplitudeilmaisimetkallioperäSpeed of soundNeutrinoAstrophysics - Instrumentation and Methods for AstrophysicsInstrumentation and Methods for Astrophysics (astro-ph.IM)Order of magnitudeEnergy (signal processing)Geology
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Recent Activity and Kinematics of the Bounding Faults of the Catanzaro Trough (Central Calabria, Italy): New Morphotectonic, Geodetic and Seismologic…

2021

A multidisciplinary work integrating structural, geodetic and seismological data was performed in the Catanzaro Trough (central Calabria, Italy) to define the seismotectonic setting of this area. The Catanzaro Trough is a structural depression transversal to the Calabrian Arc, lying in-between two longitudinal grabens: the Crati Basin to the north and the Mesima Basin to the south. The investigated area experienced some of the strongest historical earthquakes of Italy, whose seismogenic sources are still not well defined. We investigated and mapped the major WSW–ENE to WNW–ESE trending normal-oblique Lamezia-Catanzaro Fault System, bounding to the north the Catanzaro Trough. Morphotectonic …

geographyQE1-996.5geography.geographical_feature_categoryTrough (geology)Magnitude (mathematics)MorphotectonicsContext (language use)GeologyFault (geology)Induced seismicityFault scarpCalabrian ArcGrabeninstrumental seismicitymorphotectonicsGeneral Earth and Planetary Sciencesgeodetic dataGeologySeismologyGeosciences
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The percolation threshold and permeability evolution of ascending magmas

2017

Abstract The development of gas permeability in magmas is a complex phenomenon that directly influences the style of a volcanic eruption. The emergence of permeability is linked to the concept of percolation threshold, which is the point beyond which gas bubbles are connected in a continuous network that allows gas escape. Measurements of the percolation threshold, however, range from ∼30 to 78 vol%. No known combination of parameters can explain such a wide range of threshold values, which affects our understanding of the relationship between percolation and permeability. We present permeability calculations on bubble-bearing rhyolitic melts that underwent experimental decompression. Sampl…

geographyVulcanian eruptiongeography.geographical_feature_category010504 meteorology & atmospheric sciencesBubbleMineralogyPercolation thresholdMechanicsPermeability coefficient010502 geochemistry & geophysics01 natural sciencesPhysics::GeophysicsPermeability (earth sciences)GeophysicsVolcanoSpace and Planetary ScienceGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Conduit flowOrder of magnitudeGeology0105 earth and related environmental sciencesEarth and Planetary Science Letters
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Precipitation and Temperature

2016

Climatological studies indicate that climate change lead to an increase in the mean global temperature of around 0.5 °C until the end of the twentieth century. This warming impacts the atmospheric humidity, wind, radiation, and precipitation. However, the magnitude of changes is not equally distributed over the globe but differs markedly with regions, making a regionalization of the global information essential. The GLOWA-Danube project follows such a downscaling approach with the focus on the drainage basin of the Upper Danube River.

geographygeography.geographical_feature_categoryGlobal temperatureClimatologyLead (sea ice)Drainage basinMM5Environmental scienceClimate changeMagnitude (mathematics)PrecipitationDownscaling
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VARIABILITY OF REMOTE SENSING SPECTRAL INDICES IN BOREAL LAKE BASINS

2018

Remotely sensed hyperspectral data has widely been used to determine water quality parameters in oceanic waters. However in freshwater basins the dependence between the hyperspectral data and the parameters is more complicated. In this work some ideas are presented concerning the study of this dependence. The data used in this study were collected from the lake Hiidenvesi in southern Finland. The hyperspectral data consists of reflectances in 36 bands in the wavelength area 508…878 nm and the separately measured water quality parameters are turbidity, blue-green algae, chlorophyll, pH and dissolved oxygen. Hyperspectral data was used as bare band reflectances, but also in the …

lcsh:Applied optics. Photonics010504 meteorology & atmospheric scienceshyperspectral imaging0211 other engineering and technologiesMagnitude (mathematics)02 engineering and technologylcsh:Technology01 natural sciencesoptically complex watersTurbidity021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensinglcsh:Tlcsh:TA1501-1820Hyperspectral imagingvedenlaatuWavelengthBoreallcsh:TA1-2040Remote sensing (archaeology)spectral indicesEnvironmental sciencekaukokartoitusWater qualitylcsh:Engineering (General). Civil engineering (General)The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences
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Invited Article: Ultra-broadband terahertz coherent detection via a silicon nitride-based deep sub-wavelength metallic slit

2018

We present a novel class of CMOS-compatible devices aimed to perform the solid-state-biased coherent detection of ultrashort terahertz pulses, i.e., featuring a gap-free bandwidth at least two decades-wide. Such a structure relies on a 1-µm-wide slit aperture located between two parallel aluminum pads, embedded in a 1-µm-thick layer of silicon nitride, and deposited on a quartz substrate. We show that this device can detect ultra-broadband terahertz pulses by employing unprecedented low optical probe energies of only a few tens of nanojoules. This is due to the more than one order of magnitude higher nonlinear coefficient of silicon nitride with respect to silica, the nonlinear material emp…

lcsh:Applied optics. PhotonicsMaterials scienceComputer Networks and CommunicationsTerahertz radiationTerahertz radiationPhysics::Optics02 engineering and technology7. Clean energy01 natural scienceslaw.invention010309 opticschemistry.chemical_compoundlawSolid-state devicesElectric field0103 physical sciencesBroadbandDynamic rangebusiness.industrylcsh:TA1501-1820021001 nanoscience & nanotechnologyLaserAtomic and Molecular Physics and OpticsTerahertz detectorSilicon nitridechemistryOptoelectronics0210 nano-technologybusinessOrder of magnitudeVoltageAPL Photonics
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Recent climate change in Japan ? spatial and temporal characteristics of trends of temperature

2008

Abstract. In this paper temperature series of Japan were statistically analysed in order to answer the question whether recent climate change can be proved for Japan; the results were compared and discussed with the global trends. The observations in Japan started for some stations in the 1870s, 59 stations are available since 1901, 136 stations since 1959. Modern statistical methods were applied, such as: Gaussian binominal low-pass filter (30 yr), trend analysis (linear regression model) including the trend-to-noise-ratio as measure of significance and the non-parametric, non-linear trend test according to MANN (MANN's Q). According to the results of the analyses, climate change in Japan …

lcsh:GE1-350Global and Planetary Changelcsh:Environmental protectionStratigraphyPaleontologyMagnitude (mathematics)Climate change[SDU.STU]Sciences of the Universe [physics]/Earth Sciences[SDU.ENVI] Sciences of the Universe [physics]/Continental interfaces environmentClimate change in JapanTrend analysislcsh:Environmental pollutionClimatologylcsh:TD172-193.5Linear regression[SDU.STU] Sciences of the Universe [physics]/Earth SciencesEnvironmental sciencelcsh:TD169-171.8[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environmentlcsh:Environmental sciences
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Difficulty of getting accurate and precise estimates of population size: The case of the Siberian flying squirrel in Finland

2008

Accurate estimates of population size and distribution are a prerequisite for effective management of populations, but for most species a reliable estimation of the absolute population size is very difficult. In 1998, the Finnish Ministry of Environment set up a working group to plan a national-level survey for estimation and monitoring of the population size of Siberian flying squirrel (Pteromys volans). In 2006, the population size was reported to be 143 000 females. However, evaluation of the magnitude of possible biases was not attempted. Our aim was to test the population size estimate by conducting a resampling study with the methods of the national survey on an eartagged population o…

liito-oravaEstimationeducation.field_of_studyflying squirrelEcologybiologyPteromys volansPopulation sizePopulationMagnitude (mathematics)Flying squirrelbiology.organism_classificationGeographyResamplingStatisticsAnimal Science and ZoologyChristian ministryeducationEcology Evolution Behavior and SystematicsNature and Landscape Conservation
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