Search results for "MECHANICS"

showing 10 items of 9361 documents

Different Measurement Setup Configurations for Space Charge test in Mini Cable Specimens with the PEA Method

2019

Under DC stress, the space charge accumulation is believed one of the most responsible of dielectrics ageing. For this reason, due to the increase of the HVDC transmission, a recommendation has been proposed. The latter want to introduce the space charge measure, with the PEA method, in cable specimens during the prequalification or type tests. Considering the several issues related to this kind of measures the aim of the proposed work is find a measurement setup for mini cable specimens which is able to provide a clear and clean space charge profile. Therefore, different tests have been made in this work. In particular, the length of the cable specimen, the width of the pulse electrodes, a…

mini cable010302 applied physicsMaterials sciencePEA method020209 energyAcoustics02 engineering and technology01 natural sciencesMeasure (mathematics)Space chargeSpace chargePulse (physics)Stress (mechanics)Settore ING-IND/31 - ElettrotecnicaLength measurementCable specimenPEA for cableTransmission (telecommunications)Position (vector)0103 physical sciencesElectrode0202 electrical engineering electronic engineering information engineering2019 IEEE Conference on Electrical Insulation and Dielectric Phenomena (CEIDP)
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A new approach to calibrate the thermal conditions in space charge measurements on HVDC mini-cables

2019

The PEA method is currently widespread used for space charge measurements in mini-cables in order to qualify the behavior of semicon-dielectric-semicon compound under electric and thermal stress. The main goal of this research is to quantitatively evaluate the relationship between the thermal boundary conditions applied to cables or mini-cables and the maximum local electric field due to the accumulated space charge. Hitherto, several research groups have obtained thermal gradients over the dielectric's radius heating the conductor by Joule effect due to an induced current. In this paper, a numerical approach is offered to calibrate the heat exchange boundary conditions to apply to a sample…

mini-cable sample010302 applied physicsMaterials sciencePEA method020209 energyJoule effect02 engineering and technologyMechanicsDielectric01 natural sciencesSpace chargeSpace chargeConductorSettore ING-IND/31 - ElettrotecnicaElectric field0103 physical sciencesThermal0202 electrical engineering electronic engineering information engineeringthermal gradientBoundary value problemElectrical conductorHVDC cable2019 IEEE Conference on Electrical Insulation and Dielectric Phenomena (CEIDP)
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Effects of Minimalist Footwear and Foot Strike Patterns on Plantar Pressure during a Prolonged Running

2022

The use of minimalist shoes (MS) in running involves changes in running mechanics compared to conventional shoes (CS), but there is still little research analysing the effects of this footwear on plantar pressure, which could help to understand some risk injury factors. Moreover, there are no studies examining the effects of a prolonged running and foot strike patterns on baropodometric variables in MS. Therefore, the aim of this study was to analyse the changes produced using MS on plantar pressure during a prolonged running, as well as its interaction with the time and foot strike pattern. Twenty-one experienced minimalist runners (age 38 ± 10 years, MS running experience 2 ± 1 years) ran…

minimalist shoes; conventional shoes; baropodometry; foot; sports biomechanicsConventional shoesTechnologyQH301-705.5QC1-999Minimalist shoessports biomechanicsEducación Física y DeportivaGeneral Materials ScienceBiology (General)QD1-999InstrumentationFluid Flow and Transfer ProcessesEsportsconventional shoesFootTPhysicsProcess Chemistry and TechnologyGeneral EngineeringBiomecànicaEsports LesionsEngineering (General). Civil engineering (General)Computer Science ApplicationsChemistryfootBaropodometrybaropodometryminimalist shoesSports biomechanicsTA1-2040
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On the Finite Element Modeling of the Lumbar Spine: A Schematic Review

2023

Finite element modelling of the lumbar spine is a challenging problem. Lower back pain is among the most common pathologies in the global populations, owing to which the patient may need to undergo surgery. The latter may differ in nature and complexity because of spinal disease and patient contraindications (i.e., aging). Today, the understanding of spinal column biomechanics may lead to better comprehension of the disease progression as well as to the development of innovative therapeutic strategies. Better insight into the spine’s biomechanics would certainly guarantee an evolution of current device-based treatments. In this setting, the computational approach appears to be a remarkable …

modellingFluid Flow and Transfer Processesspinal columnlumbar spineProcess Chemistry and TechnologyGeneral EngineeringBiomechanicsGeneral Materials Sciencefinite element analysiscomputational simulationsfinite element analysis; spinal column; biomechanics; modelling; lumbar spine; computational simulationsInstrumentationComputer Science ApplicationsApplied Sciences
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On the volumetric response of a compacted clay subjected to wetting and drying cycles

2009

Experimental evidence on the volumetric response of a compacted clay was collected in controlled suction oedometric tests, with the aim to assess the volumetric response of this soil when subjected to wetting and drying cycles. The overall soil behaviour seems mainly to depend on the double structural arrangement observed in the compacted specimens. Selected results are presented and discussed focusing on the influence of the stress history on the volumetric response. Test results are simulated by a double-structure suction-dependent elasto-plastic constitutive model, in which the mechanical response is related to micro and macrostructural deformations and their mutual interactions. The pro…

modellingMecànica dels sòlids -- Mètodes numèricsSettore ICAR/07 - Geotecnicamicrostructuresuction cyclevolumetric strain:Enginyeria civil::Geotècnia::Mecànica de sòls [Àrees temàtiques de la UPC]Soil mechanics -- Mathematical modelsunsaturated compacted clay
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Transport de la variabilité dans les matériaux composites = Uncertainties propagation in composite materials

2009

National audience; Dans ce travail, une méthodologie de transport d'incertitudes à travers les différentes échelles d'observation des matériaux composites : (i) micro (fibres et matrice), (ii) méso (pli), (iii) macro (matériau stratifié) est proposée. L'objectif est d'intégrer à l'échelle macro (celle du calcul de structure) l'effet des incertitudes venant de l'échelle micro et celle des incertitudes introduites à chacune des échelles méso et macro. La démarche proposée s'appuie sur l'élaboration dès l'échelle micro de distributions statistiques bâties sur l'analyse morphologique et obtenues grâce à la génération de matériaux virtuels.

modellingpropriétés effectivesincertitudesmultiscale[ SPI.MECA ] Engineering Sciences [physics]/Mechanics [physics.med-ph]effective material properties[ SPI.MAT ] Engineering Sciences [physics]/Materialsmulti-échelle[SPI.MAT] Engineering Sciences [physics]/Materials[SPI.MECA] Engineering Sciences [physics]/Mechanics [physics.med-ph]uncertaintiesmodélisation
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Case-specific performance of MM-PBSA, MM-GBSA, and SIE in virtual screening.

2015

In drug discovery the reliable prediction of binding free energies is of crucial importance. Methods that combine molecular mechanics force fields with continuum solvent models have become popular because of their high accuracy and relatively good computational efficiency. In this research we studied the performance of molecular mechanics generalized Born surface area (MM-GBSA), molecular mechanics Poisson-Boltzmann surface area (MM-PBSA), and solvated interaction energy (SIE) both in their virtual screening efficiency and their ability to predict experimentally determined binding affinities for five different protein targets. The protein-ligand complexes were derived with two different app…

molecular mechanics generalized Born surface areaPhosphodiesterase InhibitorsMolecular Dynamics Simulationta3111Molecular mechanicsMolecular Docking Simulationbeta-LactamasesMolecular dynamicssolvated interaction energyBacterial ProteinsComputational chemistryAldehyde ReductaseDrug DiscoveryMaterials ChemistryHumansHSP90 Heat-Shock ProteinsPhysical and Theoretical ChemistryBeta-Lactamase InhibitorsSpectroscopymolecular mechanics Poisson-Boltzmann surface areaMM-GBSAVirtual screeningBinding SitesChemistryPhosphoric Diester Hydrolasesta1182Hydrogen BondingInteraction energyvirtual screeningComputer Graphics and Computer-Aided DesignMolecular Docking SimulationMM-PBSAModels ChemicalROC CurveSolvent modelsDocking (molecular)Area Under CurveBiological systemReceptors Progesteronebeta-Lactamase InhibitorsHydrophobic and Hydrophilic InteractionsProtein BindingJournal of molecular graphicsmodelling
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Enhancing Light Emission in Interface Engineered Spin-OLEDs through Spin-Polarized Injection at High Voltages

2019

The quest for a spin-polarized organic light-emitting diode (spin-OLED) is a common goal in the emerging fields of molecular electronics and spintronics. In this device, two ferromagnetic (FM) electrodes are used to enhance the electroluminescence intensity of the OLED through a magnetic control of the spin polarization of the injected carriers. The major difficulty is that the driving voltage of an OLED device exceeds a few volts, while spin injection in organic materials is only efficient at low voltages. The fabrication of a spin-OLED that uses a conjugated polymer as bipolar spin collector layer and ferromagnetic electrodes is reported here. Through a careful engineering of the organic/…

molecular spintronicsMaterials sciencePhysics::Instrumentation and Detectorsspin-OLED02 engineering and technologyElectroluminescence010402 general chemistry01 natural sciencesmultifunctional spintronic devicesCondensed Matter::Materials ScienceOLEDGeneral Materials ScienceSpin (physics)MaterialsDiodeSpintronicsSpin polarizationbusiness.industryMechanical EngineeringMolecular electronics021001 nanoscience & nanotechnologyspin-injection0104 chemical sciencesInnovacions tecnològiquesMechanics of MaterialsOptoelectronicsLight emissionCondensed Matter::Strongly Correlated Electrons0210 nano-technologybusinessAdvanced Materials
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Durability of a 3D woven composite assisted by finite element multi-scale modelling

2012

International audience; The textile composite studied is a 3D woven composite. A unit cell is defined by using microscopic examinations of the microstructure. A multiscale approach assisted by the finite element method is performed in order to estimate the effective properties of the composite and then to access to local stress field. This approach allows the determination of the kind of load to which warp yarns are subjected. Moreover, detailed analysis of damaged model using different configurations of broken yarns are treated. The evolution of the stress concentration coefficient highlight the load transfers due to consecutive yarn breaks.

multi-scale analysisfinite elementtextile composite[SPI.MECA.MEMA]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph][ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]durability[SPI.MAT] Engineering Sciences [physics]/Materialsstress concentration coefficient[SPI.MECA.MEMA] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph][SPI.MAT]Engineering Sciences [physics]/Materials
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A person-oriented approach to diary data. Children’s temperamental negative emotionality increases susceptibility to emotion transmission in father-c…

2015

The notion that some individuals are more prone to emotion transmission than others has prompted the need for a person-oriented approach to emotion transmission in parent-child dyads. The present study applied a person-oriented analysis to examine the patterns of emotion transmission that can be identified in the diary data of father-child dyads, and the extent to which children with high levels of temperamental negative emotionality are particularly susceptible to emotion transmission within the family. Mothers of 149 first grade children (age 6 to 7) completed questionnaires concerning their child’s temperament. Mothers and fathers maintained diary questionnaires (for a total of 7 days) c…

multilevel regression mixture model515 Psychologymedia_common.quotation_subjectlcsh:BF1-990050109 social psychologyemotionslaw.inventionDevelopmental psychologytemperamenttiPerson orientedtunteetlawnegative emotionalityemotional transmission0501 psychology and cognitive sciencesta515Applied Psychologymedia_common05 social sciencesMultilevel modelMixture regressiontemperamentdiary dataTransmission (mechanics)lcsh:Psychologydifferential susceptibility050902 family studies516 Educational sciencesTemperamentPsychology (miscellaneous)0509 other social sciencesPsychologyNegative emotionalitybiological sensitivity to contextDyadJournal for Person-Oriented Research
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