Search results for "Compressibility"

showing 10 items of 125 documents

Compressibility and phase stability of iron-rich ankerite

2021

ABSTRACT: The structure of the naturally occurring, iron-rich mineral Ca₁․₀₈(₆)Mg₀.₂₄(₂)Fe₀.₆₄(₄)Mn₀.₆₄(₄)(CO₃)₂ ankerite was studied in a joint experimental and computational study. Synchrotron X-ray powder diffraction measurements up to 20 GPa were complemented by density functional theory calculations. The rhombohedral ankerite structure is stable under compression up to 12 GPa. A third-order Birch-Murnaghan equation of state yields V₀ = 328.2(3) ų, bulk modulus B₀ = 89(4) GPa, and its first-pressure derivative B'₀ = 5.3(8)-values which are in good agreement with those obtained in our calculations for an ideal CaFe(CO₃)₂ ankerite composition. At 12 GPa, the iron-rich ankerite structure …

Trigonal planar molecular geometryBulk modulusEquation of statePhase transitionMaterials science010504 meteorology & atmospheric sciencesCompressibilityThermodynamicsGeology010502 geochemistry & geophysicsGeotechnical Engineering and Engineering GeologyMineralogy01 natural sciencesHigh pressurePhase (matter)Iron-rich ankeriteCarbonate mineralDensity functional theoryAnkeritePowder diffraction0105 earth and related environmental sciencesQE351-399.2Phase transition
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A Brief Review of the Effects of Pressure on Wolframite-Type Oxides

2018

In this article, we review the advances that have been made on the understanding of the high-pressure (HP) structural, vibrational, and electronic properties of wolframite-type oxides since the first works in the early 1990s. Mainly tungstates, which are the best known wolframites, but also tantalates and niobates, with an isomorphic ambient-pressure wolframite structure, have been included in this review. Apart from estimating the bulk moduli of all known wolframites, the cation–oxygen bond distances and their change with pressure have been correlated with their compressibility. The composition variations of all wolframites have been employed to understand their different structural phase …

WolframitePhase transitioncrystal structureMaterials sciencePhononGeneral Chemical Engineeringband structurephonons02 engineering and technologyengineering.materialType (model theory)01 natural scienceswolframiteInorganic Chemistrysymbols.namesake0103 physical scienceslcsh:QD901-999General Materials Science010306 general physicsElectronic band structureCiència dels materials021001 nanoscience & nanotechnologyCondensed Matter Physicsphase transitionshigh pressureChemical physicsHigh pressureengineeringCompressibilitysymbolsCristallslcsh:Crystallography0210 nano-technologyRaman spectroscopyCrystals
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Mathematical modelling of alternating electromagnetic and hydrodynamic fields, induced by bar type conductors in a cylinder

2009

The heating of buildings by ecologically clean and compact local devices is an interesting and actual problem. One of the modern areas of applications developed during last ten years is an effective usage of electrical energy by alternating current to produce heat energy. This work presents the mathematical model of one of such devices. It is a finite cylinder with viscous incompressible liquid and with metal electrodes of the form of bars placed parallel to the cylinder axis in the liquid. These conductors are connected to the alternating current. First published online: 14 Oct 2010

Work (thermodynamics)Bar (music)Electric potential energyelectrically conducting liquidMechanicslaw.inventionPhysics::Fluid DynamicsClassical mechanicslawModeling and SimulationQA1-939CompressibilityCylinderNavier-Stokes equationsAlternating currentNavier–Stokes equationsalternating currentElectrical conductorMathematicsAnalysisMathematicsMathematical Modelling and Analysis
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2017

The volume of ordinary materials decreases in response to a pressure increase exerted by a surrounding gas or liquid, i.e., the material volume compressibility is positive. Recently, poroelastic metamaterial architectures have been suggested theoretically that allow for an unusual negative effective static volume compressibility—which appears to be forbidden for reasons of energy conservation at first sight. The challenge in the three-dimensional (3D) fabrication of these blueprints lies in the necessary many hollow 3D crosses sealed by thin membranes, which we realize in this work by using 3D laser microlithography combined with a serendipitous mechanism. By using optical-microscopy cross-…

Work (thermodynamics)FabricationMaterials scienceCondensed matter physicsPressure controlPoromechanicsGeneral Physics and AstronomyMetamaterial02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesEnergy conservationVolume (thermodynamics)0103 physical sciencesCompressibility010306 general physics0210 nano-technologyPhysical Review X
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An insight on the thermo-mechanical behaviour of a shale

2016

In recent years, several shale formations have been employed in geo-energy related engineering fields that foresee the presence of high thermal loads or significant temperature variations. Such thermal conditions are related to a need to reach great depths (several hundred of meters), as in the case of CO2 sequestration and Enhanced Geothermal System (EGS) technologies, or to the presence of thermal sources, as in the context of nuclear waste geological disposal. In addition, thermal changes can occur in shale formations through the injection of drilling and fracturing fluids at great depths, where a higher temperature with respect to the one of the injected fluid is encountered as a result…

Yield (engineering)Consolidation (soil)ModulusEnhanced geothermal systemshaleThermalCompressibilitymedicineSwellingmedicine.symptomComposite materialPetrologyOil shaleGeology
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Thermo-mechanical volume change behaviour of Opalinus Clay

2016

The paper examines the thermo-mechanical volume change behaviour of Opalinus Clay in relation to different stress conditions and overconsolidation ratio (OCR) values and evaluates the impact of temperature on some hydro-mechanical properties of this material. To this aim, a focused experimental campaign consisting in high-temperature/high-pressure oedometric tests has been carried out. The results show that the thermo-mechanical volume change behaviour of Opalinus Clay is heavily affected by the OCR: thermal expansion is found when the heating is carried out at high OCR, whereas irreversible thermal compaction is observed when heat is applied at a vertical effective stress that is sufficien…

Yield (engineering)Materials scienceConsolidation (soil)Settore ICAR/07 - GeotecnicaEffective stressGeo-energy0211 other engineering and technologiesCompactionModulus02 engineering and technology010502 geochemistry & geophysicsShaleGeotechnical Engineering and Engineering Geology01 natural sciencesThermal expansionThermo-mechanical behaviourThermalShalesCompressibilityGeotechnical engineeringOpalinus ClayNuclear waste storage021101 geological & geomatics engineering0105 earth and related environmental sciences
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Photochemical holes under pressure: Compressibility and volume fluctuations of a protein

1991

From the pressure induced frequency shift of photochemical holes burnt into mesomorphyrin substituted horseradish peroxidase, we determined the compressibility of the protein and the vacuum frequency of the chromophore. From the compressibility, an estimation of the volume fluctuations of the biomolecule is possible.

chemistry.chemical_classificationAbsorption spectroscopybiologyChemistryBiomoleculeGeneral Physics and AstronomyA proteinFrequency shiftChromophorePhotochemistryHorseradish peroxidaseVolume (thermodynamics)biology.proteinCompressibilityPhysical and Theoretical ChemistryThe Journal of Chemical Physics
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Determination of the adiabatic compressibility of bovine serum albumen in concentrated solution by a new ultrasonic method

2000

Abstract New data are presented for the adiabatic compressibility of bovine serum albumen (BSA) over the temperature range 2–85°C and at pH 5, 6, 7 and 8. The relative impact of intrinsic and hydration contributions to the observed compressibility for BSA is estimated and shown to agree very well with general values for globular protein and with previous results for BSA. The compressibility manifests a maximum value in the regions where BSA is most stable, exhibiting a parabolic dependence on temperature with lowest values where it is least stable. These data are obtained with a novel technique that employs a commercial, low cost and automated pulse echo apparatus for the measurement of the…

chemistry.chemical_classificationChemistryGlobular proteinScatteringGeneral Chemical EngineeringThermodynamicsGeneral ChemistryAtmospheric temperature rangeThermal diffusivitySpeed of soundCompressibilityUltrasonic sensorScattering theoryFood ScienceFood Hydrocolloids
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Thermodynamics of cyclodextrin-star copolymer threading-dethreading process

2015

We investigated the interactions of a star-like copolymer with cyclodextrins (CD) with different cavity size. Direct measurements of thermodynamic properties were done, and the application of proper molecular models was useful for the interpretation of the involved phenomena. The CD–copolymer inclusion complexes were characterized by isothermal titration calorimetry. The copolymer aggregation induced by temperature was investigated by differential scanning calorimetry, volume and compressibility measurements. The behavior of the ternary T1107/CD/water mixture was interpreted considering competing equilibria. The investigated systems showed an interesting temperature responsive behavior so t…

chemistry.chemical_classificationCyclodextrinMolecular modelTetronicSupramolecular chemistryThermodynamicsIsothermal titration calorimetryPseudopolyrotaxaneCondensed Matter PhysicsDifferential scanning calorimetrychemistryCompressibilityCopolymerCyclodextrinSupramolecular structurePhysical and Theoretical ChemistryTernary operation
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3D Metamaterials with Negative Thermal Expansion and Negative Effective Compressibility

2018

Materials with negative thermal expansion are desired for controlling thermal stresses, but unusual in nature. With two-component metamaterials it is possible to tune the thermal expansion from positive over zero to negative values, even if both components have positive thermal expansion. Using gray-tone laser lithography we fabricate three-dimensional two-component polymer microlattices, exhibiting zero or negative thermal expansion [1].

chemistry.chemical_classificationMaterials sciencechemistryNegative thermal expansionCondensed matter physicsThermalCompressibilityPhysics::OpticsMetamaterialPolymerThermal expansionMaskless lithography
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