Search results for "Physics::Geophysics"

showing 10 items of 261 documents

Autocorrelation Metrics to Estimate Soil Moisture Persistence From Satellite Time Series: Application to Semiarid Regions

2021

Satellite-derived soil moisture (SM) products have become an important information source for the study of land surface processes in hydrology and land monitoring. Characterizing and estimating soil memory and persistence from satellite observations is of paramount relevance, and has deep implications in ecology, water management, and climate modeling. In this work, we address the problem of SM persistence estimation from microwave sensors using several autocorrelation metrics that, unlike traditional approaches, build on accurate estimates of the autocorrelation function from nonuniformly sampled time series. We show how the choice of the autocorrelation estimator can have a dramatic impac…

Autocorrelation0211 other engineering and technologiesEstimator02 engineering and technology15. Life on landScatterometer6. Clean waterPhysics::GeophysicsAdvanced Microwave Scanning Radiometer-2 (AMSR2) Advanced Scatterometer (ASCAT) autocorrelation e-folding time Least Absolute Shrinkage and Selection Operator (LASSO) Lomb-Scargle periodogram microwave sensors persistence soil moisture Soil Moisture and Ocean Salinity (SMOS) spatial-temporal13. Climate actionConsistency (statistics)General Earth and Planetary SciencesEnvironmental scienceClimate modelSatelliteElectrical and Electronic EngineeringTransectPersistence (discontinuity)021101 geological & geomatics engineeringRemote sensingIEEE Transactions on Geoscience and Remote Sensing
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Estimation of Vegetation Structure Parameters From SMAP Radar Intensity Observations

2021

In this article, we present a multipolarimetric estimation approach for two model-based vegetation structure parameters (shape A and orientation distribution ψ of the main canopy elements). The approach is based on a reduced observation set of three incoherent (no phase information) polarimetric backscatter intensities (|S HH | 2 , |S HV | 2 , and |S VV | 2 ) combined with a two-parameter (A P and ψ) discrete scatterer model of vegetation. The objective is to understand whether this confined set of observations contains enough information to estimate the two vegetation structure parameters from the L-band radar signals. In order to disentangle soil and vegetation scattering influences on th…

Backscatter:Enginyeria de la telecomunicació::Radiocomunicació i exploració electromagnètica::Radar [Àrees temàtiques de la UPC]Incoherent scatterSynthetic aperture radarGeometryvegetation modelPhysics::GeophysicsBackscatterScatteringPolarimetryddc:550vegetation structureVegetacióDiscrete scattererElectrical and Electronic EngineeringpolarimetryVegetation mappingPhysicsRadarScatteringscatteringShapeOrder (ring theory)PlantsOrientation (vector space)DipoleVegetation structureDistribution (mathematics)Soil Moisture Active Passive (SMAP)Vegetation modelGeneral Earth and Planetary SciencesEstimationIntensity (heat transfer)radarIEEE Transactions on Geoscience and Remote Sensing
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The transition from single layer to foliation boudinage: A dynamic modelling approach

2012

Abstract Foliation boudinage is a deflection of foliation in the vicinity of a central discontinuity in foliated rocks, mostly filled with vein material. It shows evidence for brittle deformation and void-opening during ductile flow. We used a two-dimensional visco-elastic spring model based on a discrete element approach to study the dynamic development of foliation boudinage and the behaviour of anisotropic visco-elastic material deformed under pure shear conditions. The anisotropies are set by defining rheological heterogeneities in the models with (1) a single layer in a weaker matrix; (2) multi-layers with different elastic properties and (3) random-distributed “micas”, rows of horizon…

BrittlenessDiscontinuity (geotechnical engineering)Shear (geology)BoudinageFoliation (geology)GeologyGeometryPure shearAnisotropyViscoelasticityGeologyPhysics::GeophysicsJournal of Structural Geology
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Fracture mechanics of snow avalanches.

2001

Dense snow avalanches are analyzed by modeling the snow slab as an elastic and brittle plate, attached by static friction to the underlying ground. The grade of heterogeneity in the local fracture (slip) thresholds, and the ratio of the average substrate slip threshold to the average slab fracture threshold, are the decisive parameters for avalanche dynamics. For a strong pack of snow there appears a stable precursor of local slips when the frictional contacts are weakened (equivalent to rising temperature), which eventually trigger a catastrophic crack growth that suddenly releases the entire slab. In the opposite limit of very high slip thresholds, the slab simply melts when the temperatu…

BrittlenessHomogeneousSlabFracture mechanicsMechanicsSlip (materials science)Physics::Classical PhysicsSnowStatic frictionGeologyPhysics::GeophysicsPhysical review. E, Statistical, nonlinear, and soft matter physics
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High-pressure structural study of the scheelite tungstatesCaWO4andSrWO4

2005

Angle-dispersive x-ray-diffraction and x-ray-absorption near-edge structure measurements have been performed on ${\mathrm{CaWO}}_{4}$ and ${\mathrm{SrWO}}_{4}$ up to pressures of approximately 20 GPa. Both materials display similar behavior in the range of pressures investigated in our experiments. As in the previously reported case of ${\mathrm{CaWO}}_{4}$, under hydrostatic conditions ${\mathrm{SrWO}}_{4}$ undergoes a pressure-induced scheelite-to-fergusonite transition around 10 GPa. Our experimental results are compared to those found in the literature and are further supported by ab initio total-energy calculations, from which we also predict the instability at larger pressures of the …

Bulk modulusCrystallographyMaterials scienceHafnonAb initio quantum chemistry methodsHydrostatic pressureX-ray crystallographySpace groupOrthorhombic crystal systemCondensed Matter PhysicsFergusonitePhysics::GeophysicsElectronic Optical and Magnetic MaterialsPhysical Review B
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Empirical molecular dynamics study of structural, elastic and thermodynamic properties of zinc-blende-like SiGe compound

2004

Abstract A three-body potential coupled with a molecular-dynamics method is used to calculate structural and thermodynamic properties of the hypothetical IV–IV compound SiGe in zinc-blende phase. A good agreement between the calculated and theoretical values of the lattice constant, the bulk modulus and its derivative, and the cohesive energy is obtained. We also compute the elastic constants, Debye temperature, lattice thermal expansion, and the specific heat. We investigate also, the structural properties of SiGe when rock-salt phase appears.

Bulk modulusMaterials scienceSpecific heatMechanical EngineeringThermodynamicschemistry.chemical_elementZincCondensed Matter PhysicsThermal expansionPhysics::Geophysicssymbols.namesakeMolecular dynamicsLattice constantchemistryMechanics of MaterialsLattice (order)symbolsGeneral Materials ScienceDebye modelMaterials Science and Engineering: B
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Global Estimation of Soil Moisture Persistence with L and C-Band Microwave Sensors

2018

© 2018 IEEE Measurements of soil moisture are needed for a better global understanding of the land surface-climate feedbacks at both the local and the global scale. Satellite sensors operating in the low frequency microwave spectrum (from 1 to 10 GHz) have proven to be suitable for soil moisture retrievals. These sensors now cover nearly 4 decades thus allowing for global multi-mission climate data records. In this paper, we assess the possibility of using L-band (SMOS) and C-band (AMSR2, ASCAT) remotely sensed soil moisture time series for the global estimation of soil moisture persistence. A multi-output Gaussian process regression model is applied to ensure spatio-temporal coverage of th…

C band0208 environmental biotechnologyAutocorrelation02 engineering and technology15. Life on landPhysics::Geophysics020801 environmental engineering13. Climate actionKrigingEnvironmental scienceSatelliteTime seriesScale (map)Water contentPhysics::Atmospheric and Oceanic PhysicsMicrowaveRemote sensing
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A Mixture Modeling Approach to Estimate Vegetation Parameters for Heterogeneous Canopies in Remote Sensing

2000

In this article, we describe a reflectance model which parametrizes the reflectance of vegetation canopies from optical properties of leaves and soil, and dominant canopy structural parameters. The model assumes certain principles of geometric models, for example, that sensor integrates the radiance reflected from three components, plant, shaded soil, and illuminated soil. Its inversion provides compositional information of the ground surface that is linked with the interpretation of the linear spectral mixture modeling (LSMM). This model also offers the potential for retrieving other meaningful biophysical properties such as LAI. The model has been tested on simulated spectra of spectral m…

CanopyMathematical modelScatteringSoil ScienceGeologyInversion (meteorology)Spectral linePhysics::GeophysicsSoil waterRadianceEnvironmental scienceMixture modelingComputers in Earth SciencesRemote sensingRemote Sensing of Environment
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3D spectral imaging with synchrotron Fourier transform infrared spectro-microtomography

2013

We report Fourier transform infrared spectro-microtomography, a nondestructive three-dimensional imaging approach that reveals the distribution of distinctive chemical compositions throughout an intact biological or materials sample. The method combines mid-infrared absorption contrast with computed tomographic data acquisition and reconstruction to enhance chemical and morphological localization by determining a complete infrared spectrum for every voxel (millions of spectra determined per sample).

Chemical imagingmedicine.medical_specialtyMaterials scienceInfrared spectroscopyBiochemistryFourier transform spectroscopyPhysics::GeophysicsMicesymbols.namesakeImaging Three-DimensionalOpticsSpectroscopy Fourier Transform InfraredMicroscopyImage Processing Computer-AssistedmedicineAnimalsHumansFourier transform infrared spectroscopyMolecular BiologyEmbryonic Stem Cellsbusiness.industryX-Ray MicrotomographyCell BiologyWoodSpectral imagingPopulusFourier transformsymbolsbusinessChemical fingerprintingSynchrotronsHairBiotechnologyNature Methods
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On the Calmness of a Class of Multifunctions

2002

The paper deals with the calmness of a class of multifunctions in finite dimensions. Its first part is devoted to various conditions for calmness, which are derived in terms of coderivatives and subdifferentials. The second part demonstrates the importance of calmness in several areas of nonsmooth analysis. In particular, we focus on nonsmooth calculus and solution stability in mathematical programming and in equilibrium problems. The derived conditions find a number of applications there.

Class (set theory)Mathematics::Optimization and ControlCalculusStability (learning theory)CalmnessSoftwarePhysics::GeophysicsTheoretical Computer ScienceMathematicsSIAM Journal on Optimization
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