Search results for "Computational physics"

showing 10 items of 725 documents

Search for Microphysical Signatures of Stochastic Condensation in Marine Boundary Layer Clouds Using Airborne Digital Holography

2019

Atmospheric ScienceGeophysicsMarine boundary layerSpace and Planetary ScienceCondensationEarth and Planetary Sciences (miscellaneous)Environmental scienceDigital holographyComputational physicsJournal of Geophysical Research: Atmospheres
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2020

Abstract. An ice cloud chamber was developed at the Johannes Gutenberg University of Mainz for generating several thousand data points for mass and sedimentation velocity measurements of ice crystals with sizes less than 150 µm. Ice nucleation was initiated from a cloud of supercooled droplets by local cooling using a liquid nitrogen cold finger. Three-dimensional tracks of ice crystals falling through the slightly supersaturated environment were obtained from the reconstruction of sequential holographic images, automated detection of the crystals in the hologram reconstructions, and particle tracking. Through collection of the crystals and investigation under a microscope before and after …

Atmospheric ScienceIce cloudMaterials science010504 meteorology & atmospheric sciencesIce crystalsCold fingerExtrapolationHolographyPhysics::Optics01 natural scienceslaw.inventionComputational physics010309 opticsCrystallaw0103 physical sciencesIce nucleusSupercooling0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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The real part of the mean complex refractive index and the mean density of samples of atmospheric aerosol particles

1968

The computation and the physical explanation of the spectral extinction of light in the atmosphere are mainly influenced by some specific prerequisites such as the number and the size of the atmospheric aerosol particles as well as their complex refractive index. Both size and complex refractive index are functions of the relative humidity. During the last years quite a number of investigations into the size distribution of the atmospheric aerosol particles have been carried out. Their refractive index, however is hardly known. An attempt has been made to overcome this deficiency with a new quantitative method for the simultaneous measurement of the real part of the mean complex refractive …

Atmospheric ScienceMaterials science010504 meteorology & atmospheric sciencesbusiness.industryGeneral MedicineSpectral extinctionOceanography01 natural sciencesComputational physicsAerosolAtmosphereOpticsRelative humiditybusinessRefractive index0105 earth and related environmental sciencesTellus A: Dynamic Meteorology and Oceanography
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Effects of ice crystal habit on thermal infrared radiative properties and forcing of cirrus

2007

[1] The impact of assumed ice crystal morphology on thermal infrared (IR) radiative properties of subtropical cirrus is quantified. In particular, the crystal-shape-dependent profiles of downwelling and upwelling thermal IR (broadband and spectral) irradiances and the radiative forcing of cirrus (at the top and bottom of the atmosphere) are investigated. For this purpose, airborne measurements of ice crystal size distribution (in terms of ice crystal maximum dimension) from the CRYSTAL-FACE campaign and a recently published library of thermal IR optical properties of nonspherical ice crystal habits are implemented into radiative transfer simulations. Two cirrus cases are studied in detail: …

Atmospheric ScienceMaterials scienceInfraredPhysics::OpticsSoil ScienceAstrophysics::Cosmology and Extragalactic AstrophysicsAquatic ScienceOceanographyOpticsGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Radiative transferAbsorption (electromagnetic radiation)Astrophysics::Galaxy AstrophysicsPhysics::Atmospheric and Oceanic PhysicsEarth-Surface ProcessesWater Science and TechnologyIce cloudEcologyIce crystalsbusiness.industryPaleontologyForestryRadiative forcingComputational physicsGeophysicsSpace and Planetary ScienceInfrared windowCirrusAstrophysics::Earth and Planetary AstrophysicsbusinessJournal of Geophysical Research
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The effects of different radiation parametrizations on cloud evolution

1997

With the use of the microphysical stratus model (MISTRA), investigations into the effects of variations in the radiative-transfer parametrizations on cloud development have been undertaken. Two radiative-transfer schemes were coupled with the microphysical-thermodynamical section of MISTRA, one based on the exponential sumfitting method and the other based on the correlated k-distribution method of determining gaseous absorption properties. Model runs were initiated with parameter values in accordance with measurements made over the North Sea and comparisons made between model runs where only the radiation schemes were altered. Results indicated that differences between the two schemes had …

Atmospheric ScienceMeteorologyInfraredScatteringLiquid water contentPlanetary boundary layerCloud topRadiative transferCloud physicsEnvironmental scienceAbsorption (electromagnetic radiation)Astrophysics::Galaxy AstrophysicsComputational physicsQuarterly Journal of the Royal Meteorological Society
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A numerical model of the cloud-topped planetary boundary-layer: Radiation, turbulence and spectral microphysics in marine stratus

1996

A numerical model of the cloud-topped planetary boundary-layer is presented. The model is one-dimensional with special emphasis on a detailed description of cloud microphysical processes. Aerosols and cloud droplets are treated in a two-dimensional particle-distribution whereby the activation of aerosols is calculated explicitly by solving the droplet-growth equation at all relative humidities. Atmospheric radiation is determined with a δ-two-stream radiation scheme. Turbulent fluxes are parametrized as a function of the turbulent kinetic energy. Numerical results are presented which are obtained by utilizing measurements made over the North Sea. The interaction between radiation, turbulenc…

Atmospheric ScienceMicrophysicsComputer simulationMeteorologyPlanetary boundary layerTurbulencebusiness.industryCloud computingRadiationComputational physicsTurbulence kinetic energyEnvironmental sciencebusinessNorth seaPhysics::Atmospheric and Oceanic PhysicsQuarterly Journal of the Royal Meteorological Society
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An analysis of VLF electric field spectra measured in Titan's atmosphere by the Huygens probe

2009

[1] A numerical simulation of Titan's electromagnetic cavity in the VLF band is carried out using the Transmission Line Matrix (TLM) method, with the aim of assessing the VLF electric field spectra sent by the Huygens probe. In an Earth-like model, successive peaks would be expected in the spectra, associated with multiple reflections of the electromagnetic wave on the external surfaces of Titan's electromagnetic cavity, formed by the ionosphere and a conductive ground or underground surface. However, owing to high losses conferred by the electrical conductivity to Titan's atmosphere, the direct numerical and experimental spectra are decreasing functions of the frequency without resonances …

Atmospheric ScienceSoil ScienceAquatic ScienceOceanographyElectromagnetic radiationSpectral linesymbols.namesakeOpticsGeochemistry and PetrologyElectrical resistivity and conductivityElectric fieldElectromagnetic cavityEarth and Planetary Sciences (miscellaneous)Earth-Surface ProcessesWater Science and TechnologyPhysicsEcologybusiness.industryPaleontologyResonanceForestryComputational physicsGeophysicsSpace and Planetary SciencePhysics::Space PhysicssymbolsAstrophysics::Earth and Planetary AstrophysicsIonosphereTitan (rocket family)businessJournal of Geophysical Research
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A numerical study of atmospheric signals in the Earth-ionosphere electromagnetic cavity with the Transmission Line Matrix method

2006

[1] The effect of the Earth-ionosphere electromagnetic cavity on the spectrum of an atmospheric signal generated by a broadband electrical current source is analyzed numerically by means of the Transmission Line Matrix (TLM) method. Two new TLM meshes are developed, one with transmission lines connected in parallel and the other with connections in series. The equations describing propagation through these parallel or series meshes are equivalent to the Maxwell equations for TEr or TMr modes in the spherical Earth-ionosphere cavity, respectively. The numerical algorithm obtains Schumann resonance frequencies very close to the experimental ones, confirming that this methodology is a valid nu…

Atmospheric ScienceSoil ScienceTransmission-line matrix methodAquatic ScienceOceanographysymbols.namesakeOpticsGeochemistry and PetrologyTransmission lineElectromagnetic cavityEarth and Planetary Sciences (miscellaneous)Earth-Surface ProcessesWater Science and TechnologyPhysicsEcologySchumann resonancesbusiness.industryPaleontologyResonanceForestryComputational physicsGeophysicsMaxwell's equationsSpace and Planetary SciencesymbolsIonospherebusinessMatrix methodJournal of Geophysical Research
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2016

Abstract. We analyze polar stratospheric cloud (PSC) signatures in airborne MIPAS-STR (Michelson Interferometer for Passive Atmospheric Sounding – STRatospheric aircraft) observations in the spectral regions from 725 to 990 and 1150 to 1350 cm−1 under conditions suitable for the existence of nitric acid trihydrate (NAT) above northern Scandinavia on 11 December 2011. The high-resolution infrared limb emission spectra of MIPAS-STR show a characteristic “shoulder-like” signature in the spectral region around 820 cm−1, which is attributed to the ν2 symmetric deformation mode of NO3− in β-NAT. Using radiative transfer calculations involving Mie and T-Matrix methods, the spectral signatures of s…

Atmospheric ScienceSpectral signature010504 meteorology & atmospheric sciences010405 organic chemistryScatteringChemistryRadiusAtmospheric sciences01 natural sciencesSpectral line0104 chemical sciencesComputational physicsRadiative transferParticleEmission spectrumStratosphere0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Numerical analysis of ionosphere disturbances and Schumann mode splitting in the Earth-ionosphere cavity

2008

[1] The variability of ionosphere properties plays an important role in the Schumann resonances (SR), amplitudes, frequencies, and Q factor. Therefore, as atmosphere ionization is related to solar activity, SR could be devised as a source of indirect parameters that locally from the surface of the Earth could provide space weather information. A proper understanding of this link to SR parameters can be obtained through finite difference time domain (FDTD) simulations, specifically with the numerically obtained modes and frequencies that relate frequency shifts to the day-night asymmetry and polar inhomogeneities. Day-Night asymmetry is observed to have a minor influence in SR; however, larg…

Atmospheric Sciencemedia_common.quotation_subjectSoil SciencePerturbation (astronomy)Aquatic ScienceSpace weatherOceanographyAsymmetryOpticsGeochemistry and PetrologyIonizationEarth and Planetary Sciences (miscellaneous)Earth-Surface ProcessesWater Science and Technologymedia_commonPhysicsEcologySchumann resonancesbusiness.industryPaleontologyForestryComputational physicsGeophysicsAmplitudeSpace and Planetary SciencePolarAstrophysics::Earth and Planetary AstrophysicsIonospherebusinessJournal of Geophysical Research: Space Physics
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