Search results for "droplet"

showing 10 items of 127 documents

M4_Microfluidics_for_CNT

2018

Size and frequency of the droplets produced in T-junction as a function of continuous and disperse phase pressure ratio.

Physics::Fluid Dynamicsendocrine systemCondensed Matter::Superconductivitydroplet frequencytechnology industry and agriculturePhysics::Atomic and Molecular Clustersmicrofluidicsdroplet sizeCondensed Matter::Mesoscopic Systems and Quantum Hall Effectpressure ratiocomplex mixtureseye diseases
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M7_Microfluidics_for_CNT

2018

A comparation of two designs of a droplet trap. While the droplet exchange is mediated by direct droplet contact in the symmetric design, a short continuous phase plug mediated the droplet exchange in the asymmetric design.

Physics::Fluid Dynamicsendocrine systemasymmetric droplet traptechnology industry and agriculturePhysics::Atomic and Molecular Clustersmicrofluidicscomplex mixtureseye diseasessymmetric droplet trap
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M3_Microfluidics_for_CNT

2018

Droplet production in T-junction microfluidic device. The droplets are cut off from the water phase flow by pressure of oil. The droplets confined in the channel proceed at the same speed as the continuous phase.

Physics::Fluid Dynamicsendocrine systemdroplet formationT-junctionconfined regimetechnology industry and agriculturePhysics::Atomic and Molecular Clustersmicrofluidicscomplex mixtureseye diseases
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M1_Microfluidics_for_CNT

2018

High-frequency droplet production in step-emulsification microfluidic device. The abrupt change in channel cross section causes creation of the droplets. The closely-packed droplets automatically order in hexagonal pattern.

Physics::Fluid Dynamicsendocrine systemdroplet formationstep-emulsificationtechnology industry and agriculturePhysics::Atomic and Molecular Clustersmicrofluidicshexagonal patterncomplex mixtureseye diseases
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Fluid flow simulations meet high-speed video : Computer vision comparison of droplet dynamics

2018

Hypothesis While multiphase flows, particularly droplet dynamics, are ordinary in nature as well as in industrial processes, their mathematical and computational modelling continue to pose challenging research tasks - patent approaches for tackling them are yet to be found. The lack of analytical flow field solutions for non-trivial droplet dynamics hinders validation of computer simulations and, hence, their application in research problems. High-speed videos and computer vision algorithms can provide a viable approach to validate simulations directly against experiments. Experiments Droplets of water (or glycerol-water mixtures) impacting on both hydrophobic and superhydrophobic surfaces …

Physics::Fluid Dynamicsvideokuvausexperimentalhigh-speed videokokeet (tutkimustoiminta)droplethydrodynamiikkakonenäkösimulointihydrophobicLattice Boltzmannpisarat
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Substantial convection and precipitation enhancements by ultrafine aerosol particles

2018

Up with ultrafine aerosol particles Ultrafine aerosol particles (smaller than 50 nanometers in diameter) have been thought to be too small to affect cloud formation. Fan et al. show that this is not the case. They studied the effect of urban pollution transported into the otherwise nearly pristine atmosphere of the Amazon. Condensational growth of water droplets around the tiny particles releases latent heat, thereby intensifying atmospheric convection. Thus, anthropogenic ultrafine aerosol particles may exert a more important influence on cloud formation processes than previously believed. Science , this issue p. 411

PollutionConvectionSupersaturationMultidisciplinary010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectCondensation010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesAerosolTroposphereCloud dropletPrecipitation0105 earth and related environmental sciencesmedia_common
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Two-phase flow of liquid–liquid mixture in the range of the water droplet pattern

2002

Abstract Phenomena accompanying flow of water–oil mixture during droplet flow of water in oil have been described. Aims used in the determination of characteristic parameters in two-phase liquid–liquid flow have been presented. The method for calculating the equivalent viscosity and pressure drop during flow of liquid–liquid mixture in the range of the water droplet pattern has been given.

Pressure dropRange (particle radiation)ChemistryProcess Chemistry and TechnologyGeneral Chemical EngineeringFlow (psychology)Energy Engineering and Power TechnologyThermodynamicsGeneral ChemistryIndustrial and Manufacturing EngineeringCondensed Matter::Soft Condensed MatterPhysics::Fluid DynamicsViscosityLiquid liquidDroplet flowTwo-phase flowWater in oilChemical Engineering and Processing: Process Intensification
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Studies on the fat body of oncopeltus fasciatus invaded by pseudomonas aeruginosa1

1977

A fatal disease in laboratory cultures of Oncopeltus fasciatus is caused by Pseudomonas aeruginosa , which invades the fat body and destroys it. The cellular breakdown was studied by electron microscopy. Infected fat body tissue shrinks, disintegrates, and dissolves. The nuclei, apparently, remain intact until immediately before cell death. Bacteria, which are found singularly in cytoplasm, form an expanding electron-lucent halo. Within this halo, free ribosomes and ribosomes of rough endoplasmic reticulum (ER) disappear. The changes are presumably caused by proteolytic activity of the parasite, which results in the destruction of the fat body and death of the host. Lipid droplets dissolve,…

Programmed cell deathbiologyEndoplasmic reticulumCellMatrix (biology)biology.organism_classificationRibosomeMicrobiologymedicine.anatomical_structureCytoplasmLipid dropletmedicineEcology Evolution Behavior and SystematicsBacteriaJournal of Invertebrate Pathology
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Natural or synthetic nucleic acids encapsulated in a closed cavity of amphiphiles

2013

In this review some aspects of the interactions of organized structures of amphiphiles with natural or synthetic DNAs are briefly considered. In particular DNAs encapsulated in closed cavities of amphiphiles, specifically giant vesicles and water-in-oil droplets and reverse micelles, are dealt with. Two main applications of giant vesicles are reviewed in detail, namely their use as microreactors where reactions can be followed by optical microscopy on a single vesicle and in synthetic biology as protocell models or as potential semi-synthetic ‘‘living’’ cells. Water-in-oil droplets uses for rapid and relatively low-cost DNA amplification by PCR reaction are described as well as for in vitro…

ProtocellAqueous solutionChemistryGeneral Chemical EngineeringVesicleNanotechnologyGeneral ChemistrymicroreactorsMicellepolynucleotides in water-in-oil dropletsSynthetic biologyDNA model polynucleotides giant vesicles Reverse micellesPolynucleotideAmphiphileBiophysicsNucleic acidmicroreactors; polynucleotides in giant vesicles; polynucleotides in water-in-oil dropletspolynucleotides in giant vesiclesRSC Advances
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Use of supercritical CO2 and N2 as dissolved gases for the atomization of ethanol and water

2012

Supercritical dissolved gas atomization (SDGA) is an atomization process in which a gas at temperatures and pressures above the critical point is used as the atomizing medium. The concept of SDGA has been applied mainly using CO 2 as atomizing gas in various processes developed for the production of fine particles of pharmaceuticals, polymers, and chemical products and for the atomization of fuels. In this work, SDGA, using ethanol and water as the liquids to be atomized, has been experimentally studied. The spray characteristics, in terms of droplet size and distribution, have been investigated using a laser diffraction analyzer. Ethanol has been chosen due to the large miscibility with CO…

Spray characteristicsGeneral Chemical EngineeringAnalytical chemistryMiscibilityLaser diffractionIndustrial and Manufacturing EngineeringPhysics::Fluid DynamicsGas to liquidschemistry.chemical_compoundAtomizing gas Dissolved gas Droplet sizes Fine particles Gas to liquids Laser diffraction Supercritical fluids Supercritical CO2Fine particlesCritical point (thermodynamics)Gas to liquidsPhysics::Atomic and Molecular ClustersChemical Engineering (all)Physics::Atomic PhysicsDissolved gasCondensed Matter::Quantum Gaseschemistry.chemical_classificationAtomizing gasSupercritical fluidsChemistry (all)Droplet sizesGeneral ChemistryPolymerSupercritical CO2Supercritical fluidCondensed Matter::Soft Condensed MatterSolventchemistryCarbon dioxide
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