Search results for "finite-element"

showing 10 items of 22 documents

A Multilayered Plate Theory with Transverse Shear and Normal Warping Functions

2016

A multilayered plate theory which takes into account transverse shear and normal stretching is presented. The theory is based on a seven-unknowns kinematic field with five warping functions. Four warping functions are related to the transverse shear behaviour, the fifth is related to the normal stretching. The warping functions are issued from exact three-dimensional solutions. They are related to the variations of transverse shear and normal stresses computed at specific points for a simply supported bending problem. Reddy, Cho-Parmerter and (a modified version of) Beakou-Touratier theories have been retained for comparisons. Extended versions of these theories, able to manage the normal s…

74K20 (Primary) 74Q99 (Secondary)Materials science[SPI] Engineering Sciences [physics][ SPI.MAT ] Engineering Sciences [physics]/MaterialsFOS: Physical sciencesPhysics - Classical PhysicsStatics02 engineering and technologySandwich panelBendingOrthotropic materialVibrationShellsdeformation-theory[SPI]Engineering Sciences [physics]Laminated composite0203 mechanical engineeringComposite plateComposite plates[ SPI ] Engineering Sciences [physics]Image warpingLaminateComputingMilieux_MISCELLANEOUSCivil and Structural EngineeringHigher-order theorybusiness.industryMathematical analysisIsotropyClassical Physics (physics.class-ph)Warping functionBending of platesStructural engineering021001 nanoscience & nanotechnology020303 mechanical engineering & transportsFormulationPlate theoryCeramics and CompositesPlate theorySandwich0210 nano-technologybusinessNormal stretchingFinite-elements
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Importance of Patella, Quadriceps Forces, and Depthwise Cartilage Structure on Knee Joint Motion and Cartilage Response During Gait

2015

In finite-element (FE) models of the knee joint, patella is often omitted. We investigated the importance of patella and quadriceps forces on the knee joint motion by creating an FE model of the subject's knee. In addition, depthwise strains and stresses in patellar cartilage with different tissue properties were determined. An FE model was created from subject's magnetic resonance images. Knee rotations, moments, and translational forces during gait were recorded in a motion laboratory and used as an input for the model. Three material models were implemented into the patellar cartilage: (1) homogeneous model, (2) inhomogeneous (arcadelike fibrils), and (3) random fibrils at the superficia…

AdultCartilage ArticularMalemusculoskeletal diseasesquadricepsMaterials science0206 medical engineeringShear forceBiomedical Engineering02 engineering and technologyOsteoarthritisKnee Jointmedicine.disease_causegaitModels BiologicalQuadriceps MuscleWeight-bearingWeight-Bearingknee joint03 medical and health sciences0302 clinical medicineTensile StrengthPhysiology (medical)Collagen networkfinite-element modelsmedicineHumansComputer SimulationRange of Motion Articularta315Orthodonticsta114Cartilage030229 sport sciencesmusculoskeletal systemmedicine.disease020601 biomedical engineeringmedicine.anatomical_structurepatellaPatellaStress MechanicalRange of motionhuman activitiesMuscle ContractionJournal of Biomechanical Engineering
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Transcatheter Heart Valve Implantation in Bicuspid Patients with Self-Expanding Device

2021

Bicuspid aortic valve (BAV) patients are conventionally not treated by transcathether aortic valve implantation (TAVI) because of anatomic constraint with unfavorable outcome. Patient-specific numerical simulation of TAVI in BAV may predict important clinical insights to assess the conformability of the transcathether heart valves (THV) implanted on the aortic root of members of this challenging patient population. We aimed to develop a computational approach and virtually simulate TAVI in a group of n.6 stenotic BAV patients using the self-expanding Evolut Pro THV. Specifically, the structural mechanics were evaluated by a finite-element model to estimate the deformed THV configuration in …

Aortic valveTechnologymedicine.medical_specialtybicuspid aortic valveQH301-705.5medicine.medical_treatment0206 medical engineeringDiastoleBioengineering02 engineering and technology030204 cardiovascular system & hematologyBicuspid aortic valve Finite-element analysis Fluid–solid interaction Transcatheter aortic valve implantationArticle03 medical and health sciences0302 clinical medicineBicuspid aortic valveInternal medicinemedicine.arterymedicineCardiac skeletonHeart valveBiology (General)transcatheter aortic valve implantationAortabusiness.industryTSettore ING-IND/34 - Bioingegneria IndustrialeStentmedicine.diseasefluid–solid interaction020601 biomedical engineeringAortic wallmedicine.anatomical_structurefinite-element analysiscardiovascular systemCardiologybusinessBioengineering
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On the severity of aortic stenosis in ascending aortic aneurysm: A computational tool to examine ventricular-arterial interaction and aortic wall str…

2020

Abstract An ascending thoracic aortic aneurysm (ATAA) is a life-threatening cardiovascular consequence of vessel dilatation that portends adverse events and death. From a clinical perspective, ATAA should not be treated as an isolated disease, and surgery is often carried out in the presence of AS, aortic insufficiency or a calcified valve leaflet. Aortic stenosis (AS) is common in ATAAs and leads to both vessel rigidity and left ventricular (LV) impairment. In this study, lumped-parameter modeling and computational analysis were used to assess the change in the wall shear stress (WSS) and intramural wall stress of patient-specific ATAA models with different degrees of AS (i.e., mild to sev…

Aortic valvemedicine.medical_specialtyHemodynamicsThoracic aortic aneurysmImaging dataAortic aneurysmInternal medicinemedicineGeneral Materials ScienceIn patientFinite-element analysisCivil and Structural EngineeringShear stressbusiness.industryAortic stenosisMechanical EngineeringAscending thoracic aortic aneurysmCondensed Matter Physicsmedicine.diseaseAortic wallStenosismedicine.anatomical_structureMechanics of Materialscardiovascular systemCardiologyCFDbusinessMechanics Research Communications
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Vulnerability of a Damaged Bridge Abutment in a Seismic Area

2018

The case of the abutment of a motorway urban viaduct damaged by human intervention is presented. Built in the 1960s, it lies in a critical seismic area and the human-induced damage involved the elements of the abutment foundation. The structure is geometrically complex and the evaluations of its structural safety were carried out by applying Italian codes from different times: those concerning the time of construction, those of a recent past (1996), and those of the present (2008), inspired by Eurocodes. A comparison between the safety checks performed and the requirements of all these codes is presented and discussed, especially regarding safety coefficients after the damage was done. Two …

DamageSafety assessmentRestorationFailureFinite-element (FE) modelVulnerabilityForensic engineeringAbutmentBridge abutmentBuilding and ConstructionSafety Risk Reliability and QualityGeologyCivil and Structural EngineeringJournal of Performance of Constructed Facilities
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Modeling Right Ventricle Failure After Continuous Flow Left Ventricular Assist Device: A Biventricular Finite-Element and Lumped-Parameter Analysis

2017

The risk of right ventricle (RV) failure remains a major contraindication for continuous-flow left ventricular assist device (CF-LVAD) implantation in patients with heart failure. It is therefore critical to identify the patients who will benefit from early intervention to avoid adverse outcomes. We sought to advance the computational modeling description of the mechanisms underlying RV failure in LVAD-supported patients. RV failure was studied by computational modeling of hemodynamic and cardiac mechanics using lumped-parameter and biventricular finite element (FE) analysis. Findings were validated by comparison of bi-dimensional speckle-tracking echocardiographic strain assessment of the …

MaleCardiac CatheterizationCardiac outputVentricular Dysfunction Rightmedicine.medical_treatmentHemodynamicsSpeckle tracking echocardiography02 engineering and technology030204 cardiovascular system & hematologySeverity of Illness IndexRight ventricular failure Left ventricular assist device Speckle-tracking echocardiography Lumped-parameter Finite-element analysis.Ventricular Function LeftVentricular Dysfunction Left0302 clinical medicineRisk FactorsMedicineModels CardiovascularMiddle AgedTreatment Outcomemedicine.anatomical_structureEchocardiographyCardiologyFemaleCardiology and Cardiovascular MedicineAdultmedicine.medical_specialtyFinite Element Analysis0206 medical engineeringBiomedical EngineeringProsthesis DesignProsthesis Implantation03 medical and health sciencesInternal medicineSettore ING-IND/12 - Misure Meccaniche E TermicheHumansComputer SimulationInterventricular septumContraindicationRetrospective StudiesHeart Failurebusiness.industryHemodynamicsmedicine.disease020601 biomedical engineeringVentricleVentricular assist deviceHeart failureVentricular Function RightHeart-Assist DevicesbusinessCardiovascular Engineering and Technology
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Simulation study of transcatheter heart valve implantation in patients with stenotic bicuspid aortic valve

2019

Bicuspid aortic valve (BAV) anatomy has routinely been considered an exclusion in the setting of transcatheter aortic valve implantation (TAVI) because of the large dimension of the aortic annulus having a more calcified, bulky, and irregular shape. The study aims to develop a patient-specific computational framework to virtually simulate TAVI in stenotic BAV patients using the Edwards SAPIEN 3 valve (S3) and its improved version SAPIEN 3 Ultra and quantify stent frame deformity as well as the severity of paravalvular leakage (PVL). Specifically, the aortic root anatomy of n.9 BAV patients who underwent TAVI was reconstructed from pre-operative CT imaging. Crimping and deployment of S3 fram…

MaleModels Anatomicmedicine.medical_treatment02 engineering and technology030218 nuclear medicine & medical imaging0302 clinical medicineBicuspid aortic valveBicuspid Aortic Valve DiseaseImage Processing Computer-AssistedCardiac skeletonPrecision MedicineAged 80 and overCardiac cycleSettore ING-IND/34 - Bioingegneria IndustrialeComputer Science Applicationsmedicine.anatomical_structureSurgery Computer-Assistedcardiovascular systemCardiologyFemalemedicine.symptommedicine.medical_specialtyBicuspid aortic valve0206 medical engineeringFinite Element AnalysisBiomedical EngineeringDiastoleTranscatheter Aortic Valve Replacement03 medical and health sciencesFluid-solid interactionInternal medicinePreoperative CaremedicineDeformityHumansIn patientHeart valveAgedRetrospective StudiesTranscatheter aortic valve implantationbusiness.industryStentComputational BiologyFinite-element analysiAortic Valve Stenosismedicine.disease020601 biomedical engineeringbusinessTomography X-Ray ComputedEchocardiography Transesophageal
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Three-dimensional parametric modeling of bicuspid aortopathy and comparison with computational flow predictions

2016

Bicuspid aortic valve (BAV)-associated ascending aneurysmal aortopathy (namely “bicuspid aortopathy”) is a heterogeneous disease making surgeon predictions particularly challenging. Computational flow analysis can be used to evaluate the BAV-related hemodynamic disturbances, which likely lead to aneurysm enlargement and progression. However, the anatomic reconstruction process is time consuming so that predicting hemodynamic and structural evolution by computational modeling is unfeasible in routine clinical practice. The aim of the study was to design and develop a parametric program for three-dimensional (3D) representations of aneurysmal aorta and different BAV phenotypes starting fr…

MalePatient-Specific ModelingBicuspid aortic valveComputed Tomography AngiographyHeart Valve DiseasesBiomedical EngineeringMedicine (miscellaneous)Bioengineering—Three-dimensional anatomic reconstructionElectrocardiographyImaging Three-DimensionalBicuspid Aortic Valve DiseaseSettore ING-IND/12 - Misure Meccaniche E TermicheHumans—Finite-element analysiProspective StudiesAortaAgedRetrospective Studies—Aortic failureHemodynamicsModels CardiovascularComputational BiologySettore ING-IND/34 - Bioingegneria IndustrialeMiddle AgedBiomaterialAortic Aneurysm—Ascending thoracic aortic aneurysmAortic ValveFemaleStress MechanicalSoftware
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Computational Study of Failure of Hybrid Steel Trussed Concrete Beams

2017

This study investigates the failure behavior of hybrid steel trussed concrete beams (HSTCBs) under three-point bending through a series of finite-element (FE) simulations. The FE model employs well-established constitutive relations of concrete and steel with a simplified contact condition between the concrete and steel truss. The numerical model is compared with existing experimental data as well as a FE model that uses a more sophisticated concrete-steel interfacial model. The comparison shows that the present model is able to capture various failure mechanisms of the beam and its peak load capacity. The model is applied to investigate the behavior of a set of HSTCBs of different sizes, w…

Materials scienceConcrete beams0211 other engineering and technologies020101 civil engineering02 engineering and technologyBendingComposite beams0201 civil engineeringSize and geometrical effectsSize and geometrical effect021105 building & constructionGeneral Materials ScienceCivil and Structural EngineeringSeries (mathematics)business.industryMetal and composite structuresMechanical EngineeringComposite beam; Finite-element modeling; Fracture; Size and geometrical effects; Metal and composite structuresBuilding and ConstructionStructural engineeringFinite-element modelingFinite element methodFractureMechanics of MaterialsFracture (geology)Fe modelComposite beambusinessJournal of Structural Engineering
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A strategy for the finite element modeling of FRP-confined concrete columns subjected to preload

2018

Abstract Compressive behavior of columns strengthened by means of an outer elastic confinement provided e.g. by fiber-reinforced polymer (FRP) jackets has become a main topic in the field of structural retrofitting. In details, the problem of the response assessment of strengthened columns is still under study. Many analytical formulations have been proposed to describe the compressive behavior of confined concrete under both monotonic and cyclic loads. However, the effect of a stress/strain level in the columns already present prior to apply the confinement has been generally neglected until now, also because of the lack of well defined strategies of modeling. In this frame, here, (1) a FE…

Materials scienceConfinement lateral pressure0211 other engineering and technologies020101 civil engineeringMonotonic function02 engineering and technologyConcrete damaged plasticity model0201 civil engineering021105 building & constructionRetrofittingWell-definedfiber reinforced polymer (FRP)SofteningCivil and Structural Engineeringbusiness.industryStructural engineeringFibre-reinforced plasticFinite-element modelingPreloadingFinite element methodConfined concretePreloadSettore ICAR/09 - Tecnica Delle CostruzioniHardening (metallurgy)ABAQUSbusinessConfinement
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