Search results for "Meteorology. Climatology"

showing 10 items of 55 documents

Stochastic Galerkin method for cloud simulation

2018

AbstractWe develop a stochastic Galerkin method for a coupled Navier-Stokes-cloud system that models dynamics of warm clouds. Our goal is to explicitly describe the evolution of uncertainties that arise due to unknown input data, such as model parameters and initial or boundary conditions. The developed stochastic Galerkin method combines the space-time approximation obtained by a suitable finite volume method with a spectral-type approximation based on the generalized polynomial chaos expansion in the stochastic space. The resulting numerical scheme yields a second-order accurate approximation in both space and time and exponential convergence in the stochastic space. Our numerical results…

010504 meteorology & atmospheric sciencesComputer scienceuncertainty quantificationQC1-999cloud dynamicsFOS: Physical sciencesCloud simulation65m15010103 numerical & computational mathematics01 natural sciencespattern formationMeteorology. ClimatologyFOS: MathematicsApplied mathematicsMathematics - Numerical Analysis0101 mathematicsStochastic galerkin0105 earth and related environmental sciencesnavier-stokes equationsPhysics65m2565l05Numerical Analysis (math.NA)65m06Computational Physics (physics.comp-ph)stochastic galerkin method35l4535l65finite volume schemesQC851-999Physics - Computational Physicsimex time discretization
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On the occurrence of strong vertical wind shear in the tropopause region: a 10-year ERA5 northern hemispheric study

2021

A climatology of the occurrence of strong wind shear in the upper troposphere–lower stratosphere (UTLS) is presented, which gives rise to defining a tropopause shear layer (TSL). Strong wind shear in the tropopause region is of interest because it can generate turbulence, which can lead to cross-tropopause mixing. The analysis is based on 10 years of daily northern hemispheric ECMWF ERA5 reanalysis data. The vertical extent of the region analyzed is limited to the altitudes from 1.5 km above the surface up to 25 km, to exclude the planetary boundary layer as well as strong wind shear in higher atmospheric layers like the mesosphere–lower thermosphere. A threshold value of St2=4×10-4s-2 of t…

010504 meteorology & atmospheric sciencesPlanetary boundary layerTropical Easterly JetJet stream010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesTroposphereMeteorology. ClimatologyWind shearWalker circulationQC851-999TropopauseStratosphereGeology0105 earth and related environmental sciences
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Potential-vorticity dynamics of troughs and ridges within Rossby wave packets during a 40-year reanalysis period

2020

Rossby wave packets (RWPs) are fundamental to midlatitude dynamics and govern weather systems from their individual life cycles to their climatological distributions. Renewed interest in RWPs as precursors to high-impact weather events and in the context of atmospheric predictability motivates this study to revisit the dynamics of RWPs. A quantitative potential vorticity (PV) framework is employed. Based on the well established PV-thinking of midlatitude dynamics, the processes governing RWP amplitude evolution comprise group propagation of Rossby waves, baroclinic interaction, the impact of upper-tropospheric divergent flow, and direct diabatic PV modification by nonconservative processes.…

010504 meteorology & atmospheric sciencesRadiative coolingBaroclinityRossby waveContext (language use)010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesInstabilityPotential vorticityLatent heatBarotropic fluidMeteorology. ClimatologyQC851-999Geology0105 earth and related environmental sciencesWeather and Climate Dynamics
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A process-based anatomy of Mediterranean cyclones: from baroclinic lows to tropical-like systems

2021

Abstract. In this study, we address the question of the atmospheric processes that turn Mediterranean cyclones into severe storms. Our approach applies on-line potential vorticity (PV) budget diagnostics and piecewise PV inversion to WRF model simulations of the mature stage of 100 intense Mediterranean cyclones. We quantify the relative contributions of different processes to cyclone development and therefore deliver, for the first time, a comprehensive insight into the variety of cyclonic systems that develop in the Mediterranean from the perspective of cyclone dynamics. In particular, we show that all 100 cyclones are systematically influenced by two main PV anomalies: a major anomaly in…

010504 meteorology & atmospheric sciencesRadiative coolingSevere weatherBaroclinity0208 environmental biotechnologyDiabatic02 engineering and technology01 natural sciences020801 environmental engineeringTroposphere13. Climate actionMeteorology. ClimatologyClimatologyLatent heatWeather Research and Forecasting ModelCycloneEnvironmental scienceQC851-9990105 earth and related environmental sciencesWeather and Climate Dynamics
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Coping with Difficult Weather and Snow Conditions : Reindeer herders’ views on climate change impacts and coping strategies

2016

Winter is a critical season for reindeer herding, with the amount and quality of snow being among the most important factors determining the condition of reindeer and the annual success of the livelihood. Our first aim was to model the future (2035–2064) snow conditions in northern Finland, especially the quantities related to ground ice and/or ice layers within the snow pack, exceptionally deep snow and late snow melt. Secondly, we studied the strategies by which herders cope with the impacts of difficult weather and snow conditions on herding by interviewing 21 herders. SNOWPACK simulations indicate that snow cover formation will be delayed by an average of 19 days and snow will melt 16 d…

0106 biological sciencesAtmospheric Science010504 meteorology & atmospheric sciencesta1172educationGeography Planning and Developmentta1171Climate changeSnow modelinglcsh:QC851-999Management Monitoring Policy and Law114 Physical sciences010603 evolutionary biology01 natural sciencesReindeer herdingEnvironmental protectiontalviClimate changeHerding1172 Environmental sciences0105 earth and related environmental sciencesTraditional knowledge (TK)2. Zero hungerGlobal and Planetary ChangeLand useEcologyselviytyminenWinter15. Life on landSnowpackLivelihoodSnowreindeer herdingclimate change13. Climate actionSnowmeltSustainabilityEnvironmental sciencelcsh:Meteorology. Climatologytraditional knowledgeCopingsnow modelling
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Severe effects of long-term drought on calcareous grassland seed banks

2018

Climate change models project shifts in precipitation patterns at regional and global scales. Increases in dry areas and the occurrence of drought predicted in future scenarios are likely to threaten grassland ecosystems. Calcareous grassland seed banks have proven to be resistant to short-term drought, but their responses to long-term drought are unknown. Here we show that 14 years of summer drought changed calcareous grassland seed bank composition, reducing its size and richness, and that these responses do not simply reflect patterns in the above-ground vegetation. Moreover, the effect of drought was larger on seed banks than on vegetation, and above-ground responses mediated by soil de…

0106 biological scienceskuivuusAtmospheric ScienceSoil seed bankCalcareous grasslandnurmetClimate changedroughtlcsh:QC851-999complex mixtures010603 evolutionary biology01 natural sciencesniitytsiemenetparasitic diseasesEnvironmental ChemistryEcosystemlcsh:Environmental scienceslcsh:GE1-350maaperäGlobal and Planetary Changegrassland ecologysiemenkasvitfungifood and beveragesenvironmental impactsVegetationekosysteemit (ekologia)Disturbance (ecology)Agronomyympäristövaikutuksetclimate-changeilmastonmuutosEnvironmental sciencelcsh:Meteorology. ClimatologySpecies richnessseed banksCalcareousclimate-change ecology010606 plant biology & botanynpj Climate and Atmospheric Science
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The marine activities performed within the TOMO-ETNA experiment

2016

<p>The TOMO-ETNA experiment was planned in order to obtain a detailed geological and structural model of the continental and oceanic crust beneath Mt. Etna volcano and northeastern Sicily up to the Aeolian Islands (southern Italy), by integrating data from active and passive refraction and reflection seismic methodologies, magnetic and gravity surveys. This paper focuses on the marine activities performed within the experiment, which have been carried out in the Ionian and Tyrrhenian Seas, during three multidisciplinary oceanographic cruises, involving three research vessels (“Sarmiento de Gamboa”, “Galatea” and “Aegaeo”) belonging to different countries and institutions. During the o…

0301 basic medicineSeismometerlcsh:QC851-999010502 geochemistry & geophysicsRemotely operated vehicle01 natural sciencesSonarGravity anomalyEtna offshore; Ionian and Tyrrhenian Seas; Marine geophysical data acquisition; Scientific cruise report; Geophysics03 medical and health sciencesSeismic refraction0105 earth and related environmental sciencesMarine geophysical data acquisitionIonian and Tyrrhenian Seaslcsh:QC801-809Ionian and Tyrrhenian SeaSeafloor spreadinglcsh:Geophysics. Cosmic physics030104 developmental biologyGeophysicsSeismic tomographyScientific cruise reportEtna offshorelcsh:Meteorology. ClimatologySubmarine pipelineGeologySeismologyAnnals of Geophysics
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A new technique for observationally derived boundary conditions for space weather

2018

This research has received funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation programme (grant agreement No 647214). D.H.M. would like to thank STFC and the Leverhulme Trust for their financial support. ARY was supported by STFC consortium grant ST/N000781/1 to the universities of Dundee and Durham. Context.  In recent years, space weather research has focused on developing modelling techniques to predict the arrival time and properties of coronal mass ejections (CMEs) at the Earth. The aim of this paper is to propose a new modelling technique suitable for the next generation of Space Weather predictive tools that is both efficie…

Atmospheric Science010504 meteorology & atmospheric sciencesMHDNDASWeather forecastingFluxFOS: Physical sciencesContext (language use)Space weatherlcsh:QC851-999computer.software_genre01 natural sciencesSolar Corona0103 physical sciencesCMECoronal mass ejectionQB AstronomyAstrophysics::Solar and Stellar AstrophysicsQA MathematicsBoundary value problemQA010303 astronomy & astrophysicsR2CSolar and Stellar Astrophysics (astro-ph.SR)QB0105 earth and related environmental sciencesPhysicssolar CoronaMechanicsMagnetic fluxAstrophysics - Solar and Stellar Astrophysics13. Climate actionSpace and Planetary SciencePhysics::Space Physicslcsh:Meteorology. ClimatologyMagnetohydrodynamicsBDCcomputerJournal of Space Weather and Space Climate
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Methodological Aspects for the Implementation of the Air Pesticide Control and Surveillance Network (PESTNet) of the Valencian Region (Spain)

2021

A large amount of pesticide, applied mainly during agricultural practice, is released into the atmosphere, decreasing air quality and potentially causing public health problems. The Valencian region, after Andalusia, is the Spanish region with the highest consumption of pesticides owing to its large areas of agricultural land and the existence of crops that require intensive use of pesticides. In this work, we describe the sampling and analytical tools developed in the last decade and their transference to the Regional Department for Environment, where the main objective of the research was the creation and implementation of an Air pesticide control and surveillance network (PESTNet) in the…

Atmospheric Science010504 meteorology & atmospheric sciencesPopulationEnvironmental Science (miscellaneous)01 natural sciencesValencianAgricultural landMeteorology. ClimatologyeducationAir quality index0105 earth and related environmental scienceseducation.field_of_studybusiness.industry010401 analytical chemistrypublic healthSampling (statistics)pesticidesPesticidelanguage.human_language0104 chemical sciencesAgriculturenetworklanguageambient airsurveillanceEnvironmental scienceQC851-999Water resource managementRisk assessmentbusinessAtmosphere
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Reconstruction of the Parker spiral with the Reverse in situ data and MHD APproach - RIMAP

2021

The reconstruction of plasma parameters in the interplanetary medium is very important to understand the interplanetary propagation of solar eruptions and for Space Weather application purposes. Because only a few spacecraft are measuring in situ these parameters, reconstructions are currently performed by running complex numerical Magneto-hydrodynamic (MHD) simulations starting from remote sensing observations of the Sun. Current models apply full 3D MHD simulations of the corona or extrapolations of photospheric magnetic fields combined with semi-empirical relationships to derive the plasma parameters on a sphere centered on the Sun (inner boundary). The plasma is then propagated in the i…

Atmospheric Science010504 meteorology & atmospheric sciencesSpace weatherSolar windInterplanetary mediumSpace weatherlcsh:QC851-99901 natural sciencesHeliosphere0103 physical sciencesCoronal mass ejectionAstrophysics::Solar and Stellar Astrophysics010303 astronomy & astrophysics0105 earth and related environmental sciencesPhysicsModelingCoronal mass ejections; Heliosphere; Interplanetary medium; Modeling; Solar wind; Space weatherComputational physicsSolar windSpace and Planetary SciencePhysics::Space PhysicsCoronal mass ejectionslcsh:Meteorology. ClimatologyHeliospheric current sheetAstrophysics::Earth and Planetary AstrophysicsMagnetohydrodynamicsInterplanetary spaceflightHeliosphereInterplanetary medium
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