Search results for "Drop impact"

showing 3 items of 3 documents

A ballistometer for the study of the plasto-elastic properties of skin.

1977

The ballistrometer is based on the "drop impact" of a body onto a stationary surface. A collision in one dimension is provoked by allowing a bard body to drop from a given height onto the skin surface to be tested. After the collision, the impacting body undergoes a variable number of rebounds decreasing in amplitude. By measuring the height of the rebounds, the amount of energy returned by the tissue is calculated in terms of coefficient of restitution e. The equipment, consisting of a hammer unit, a feeder-amplifier, and a plotter, is described. Ballistometry has been carried out on skin areas of 46 normal subjects ranging in age from 8 to 80 years, as well as on pathologic and cadaveric …

Adultmedicine.medical_specialtyMaterials scienceAdolescentEpidermal hyperplasiaDermatologyBiochemistrySkin DiseasesSkin Physiological PhenomenaSkin surfacemedicineSKIN REGIONSHumansChildMolecular BiologyAgedSkinintegumentary systemDrop (liquid)Age FactorsCell BiologyMiddle AgedElasticitySurgeryDrop impactCoefficient of restitutionStress MechanicalVariable numberCadaveric spasmBiomedical engineeringThe Journal of investigative dermatology
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The Nukiyama Curve in Water Spray Cooling: its Derivation from Temperature-Time Histories and its Dependence on the Quantities that Characterize Drop…

2007

Abstract Heat transfer from hot aluminium walls to cold water sprays was investigated. The method used was the transient two-side symmetric cooling of a planar aluminium target, previously heated to temperatures of up to 750 K, by twin sprays issuing from full-cone swirl spray nozzles of various gauge. The target’s mid-plane temperature was recorded during the cooling transient by thin-foil K thermocouples and a high-frequency data acquisition system. In order to determine the wall temperature Tw, the wall heat flux q w ″ and the q w ″ - T w heat transfer (Nukiyama) curve, two different approaches were used: the first was based on the solution of an inverse heat conduction problem, the seco…

Fluid Flow and Transfer ProcessesMaterials sciencespray coolingCritical heat fluxMechanical EngineeringDrop (liquid)Thermodynamicsinverse conduction problemHeat transfer coefficientCondensed Matter Physicsinduction heatingDrop impactPhysics::Fluid DynamicsHeat fluxThermocoupleHeat transferMass flow rateSettore ING-IND/19 - Impianti Nucleari
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A computational framework for coating fatigue analysis of wind turbine blades due to rain erosion

2021

Author's accepted manuscript The rain-induced fatigue damage in the wind turbine blade coating has attracted increasing attention owing to significant repair and maintenance costs. The present paper develops an improved computational framework for analyzing the wind turbine blade coating fatigue induced by rain erosion. The paper first presents an extended stochastic rain field simulation model that considers different raindrop shapes (spherical, flat, and spindle), raindrop sizes, impact angles, and impact speeds. The influence of these raindrop characteristics on the impact stress of the blade coating is investigated by a smoothed particle hydrodynamics approach. To address the expensive …

Turbine blade020209 energyRain erosionSmoothed particle hydrodynamicsFatigue damage02 engineering and technologyengineering.materialRaindrop impactlaw.inventionSmoothed-particle hydrodynamicsStress (mechanics)Coatinglaw0202 electrical engineering electronic engineering information engineering0601 history and archaeology060102 archaeologyCrack propagationRenewable Energy Sustainability and the Environmentbusiness.industryFracture mechanics06 humanities and the artsStructural engineeringFatigue analysisWind turbine bladeVDP::Teknologi: 500ErosionengineeringEnvironmental sciencebusinessInterpolationRenewable Energy
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