Search results for "Mechanical energy"

showing 10 items of 26 documents

Energy harvesting using piezoelectric transducers for suspension systems

2020

Abstract Energy harvesting by using functional materials in suspension systems bear potential to win-back certain (even if low) amounts of vibrational energy, otherwise dissipated via the conventional (passive) dampers. Piezoelectric (PE) ceramics are functional materials that can be used for transforming mechanical energy into electrical and vice versa. In this paper, we study the capabilities and efficiency of energy harvesting (EH) with PE transducers under two different kinds of external excitation: i) Periodic and ii) stochastic. An appropriate nonlinear lumped parameter electromechanical model (LPEM) is brought into the two-port network notation. Laboratory experiments were conducted …

0209 industrial biotechnologyMaterials scienceMechanical EngineeringMechanical engineering02 engineering and technologyVDP::Electro-technical sciences: 540021001 nanoscience & nanotechnology7. Clean energyPiezoelectricityComputer Science ApplicationsDamperPower (physics)VDP::Elektrotekniske fag: 540Nonlinear system020901 industrial engineering & automationTransducerControl and Systems EngineeringElectrical and Electronic Engineering0210 nano-technologyEnergy harvestingMechanical energyExcitationMechatronics
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Complex power distribution analysis in plates covered with passive constrained layer damping patches

2012

International audience; The vibration of a plate partially covered with a passive constrained layer damping (PCLD) patch is studied from an energetic point of view. The damped plate is excited by an acoustic plane wave. The study is done with a numerical two-dimensional multilayer plate model. Results of the present model are compared to those obtained with three-dimensional finite element models. It is shown that the present model gives accurate results, even for the layer's inner behavior. It is less expansive in terms of computational cost; hence, it can simulate efficiently the structure for higher frequencies. Mathematical formulas for complex mechanical power are presented, and the li…

Acoustics and UltrasonicsMODELSPlane waveENERGY-FLOW02 engineering and technologyNOISEStress (mechanics)0203 mechanical engineeringDEFORMATIONSYSTEMSHIGH-ORDER THEORYMechanical energyMINDLIN PLATE[ PHYS.MECA.ACOU ] Physics [physics]/Mechanics [physics]/Acoustics [physics.class-ph]Mathematics[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph][PHYS.MECA.VIBR]Physics [physics]/Mechanics [physics]/Vibrations [physics.class-ph]SHEAR CORRECTION FACTORS[ SPI.ACOU ] Engineering Sciences [physics]/Acoustics [physics.class-ph]Mechanical EngineeringLAMINATED PLATES[SPI.MECA.VIBR]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Vibrations [physics.class-ph]Constrained-layer dampingMechanicsBEAMS021001 nanoscience & nanotechnologyCondensed Matter PhysicsFinite element method[ SPI.MECA.VIBR ] Engineering Sciences [physics]/Mechanics [physics.med-ph]/Vibrations [physics.class-ph][PHYS.MECA.ACOU]Physics [physics]/Mechanics [physics]/Acoustics [physics.class-ph]Power (physics)Vibration020303 mechanical engineering & transportsClassical mechanics[ PHYS.MECA.VIBR ] Physics [physics]/Mechanics [physics]/Vibrations [physics.class-ph]Mechanics of MaterialsDissipative system0210 nano-technology
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Mechanical characteristics and fiber composition of human leg extensor muscles.

1979

To investigate the influence of skeletal muscle fiber composition on the mechanical performance of human skeletal muscle under dynamic conditions, 34 physical education students with differing muscle fiber composition (M. vastus lateralis) were used as subjects to perform maximal vertical jumps on the force-platform. Two kinds of jumps were performed: one from a static starting position (SJ), the other with a preliminary counter-movement (CMJ). The calculated mechanical parameters included height of rise of center of gravity (h), average force (F), net impulse (NI) and average mechanical power (W). It was observed that the percentage of fast twitch fibers was significantly related (p less t…

AdultMaleLegMaterials scienceFast twitch musclePhysiologyMusclesWork (physics)Public Health Environmental and Occupational HealthSkeletal muscleGeneral MedicineAnatomyImpulse (physics)Biomechanical Phenomenamedicine.anatomical_structurePhysiology (medical)medicineReaction TimeHumansOrthopedics and Sports MedicineHuman legMuscle fibreFiber compositionMechanical energyBiomedical engineeringEuropean journal of applied physiology and occupational physiology
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Prestretch potentiation of human skeletal muscle during ballistic movement

1981

The conditions associated prior to and during the transition from prestretch to shortening may have considerable influence on the final performance of muscle. In the present study male subjects of good physical condition performed vertical jumps on the force-platform with and without preliminary counter movement. In the counter movement jump (CMJ) the amplitude of the knee bending, velocity of the prestretch and the force attained at end of prestretch were the primary parameters of interest. In addition the coupling time indicating the transition from the eccentric (prestretch) phase to the concentric phase was recorded from the angular displacement and reaction force curves. In the final c…

AdultMaleMaterials sciencePhysiologyAngular displacementMovementMusclesBallistic movementAnatomyMechanicsConcentricElasticityStretch shortening cyclemedicine.anatomical_structureReactionmedicineHumansEccentricmedicine.symptomMechanical energyMuscle ContractionMuscle contractionActa Physiologica Scandinavica
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Potentiation of the mechanical behavior of the human skeletal muscle through prestretching

1979

Force-velocity and power-velocity curves in a vertical jump involving movements around several joints were derived from vertical ground reaction forces and knee angular velocities. The jumps were performed with weights from 10 to 160 kg added on the shoulders. The obtained curves from a semi-squatting static starting position resembled those reported for isolated muscles or single muscle groups. Vertical jumps were also performed in the conditions where the shortening of the leg extensors was preceded by prestretching of the active muscles either through a preparatory counter-movement or dropping down on the force-platform from the various heights ranging from 20 to 100 cm. Prestretching mo…

AdultMalePhysiologyChemistryMusclesElastic energySkeletal muscleLong-term potentiationMuscle activationAnatomyElasticityVertical jumpmedicine.anatomical_structureReflexmedicineHumansGround reaction forceMechanical energyBiomedical engineeringActa Physiologica Scandinavica
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Mechanical work and efficiency in treadmill running at aerobic and anaerobic thresholds

1990

Mechanical work, mechanical power, energy consumption and mechanical efficiency were studied in constant-speed treadmill running of 5 min at seven different exercises around aerobic (AerT) and anaerobic (AnT) thresholds. The true efficiency of concentric (positive) mechanical work and gross efficiency of the whole body in seven male subjects were calculated. The total mechanical work was calculated from film through the translational, potential and rotational energy states as the sum of the changes of all the mechanical energy states in all body segments allowing energy transfer between segments and from energy state to state. The total energy consumption was measured by combining aerobic a…

AdultMalemedicine.medical_specialtyAdolescentPhysiologyPhysical ExertionDifferential ThresholdEfficiencyConcentricRunningAnimal sciencemedicineHumansAnaerobiosisTreadmillMechanical energyLegChemistryWork (physics)Energy consumptionAerobiosisBiomechanical PhenomenaRotational energyPhysical therapyRunning economyEnergy MetabolismAnaerobic exerciseActa Physiologica Scandinavica
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Mechanical power test and fiber composition of human leg extensor muscles.

1983

The present study was undertaken to assess the relationship between the mechanical power developed during new anaerobic power test and muscular fiber distribution. Ten track and field male athletes were used as subjects, whose muscle fiber composition (m. vastus lateralis) varied from 25 to 58 fast twitch (FT) fibers. The test consisted of measuring the flight time with a special timer during 60 s continuous jumping. A formula was derived to allow the calculation of mechanical power during a certain period of time (e.g., in the present study every 15 s during 60 s of jumping performance). The relationship between the mechanical power for the first 15 s period correlated best with fast twitc…

AdultTime FactorsPhysiologymedicine.disease_causeSports MedicineJumpingPhysiology (medical)medicineHumansOrthopedics and Sports MedicineHuman legFiberMechanical energyMathematicsLegMusclesWork (physics)Public Health Environmental and Occupational HealthSkeletal muscleGeneral MedicineAnatomyBiomechanical Phenomenamedicine.anatomical_structureFiber compositionAnaerobic exerciseBiomedical engineeringEuropean journal of applied physiology and occupational physiology
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Identification of stiffness,dissipation and input parameters of randomly excited non-linear systems: Capability of restricted potential models (RPM)

2006

Abstract A dynamic identification technique in the time domain for time invariant systems under random external forces is presented. This technique is based on the use of the class of restricted potential models (RPM), which are characterized by a non-linear stiffness and a special form of damping, that is a product of the input power spectral density (PSD) matrix and the velocity gradient of a non-linear function of the total mechanical energy. By applying It o ^ stochastic differential calculus and by specific analytical manipulations, some algebraic equations, depending on the response statistics and on the mechanic parameters that characterize RPM, are obtained. These equations can be u…

Applied MathematicsMechanical EngineeringMathematical analysisinput identificationSystem identificationWhite noiseFunction (mathematics)LTI system theoryNonlinear systemMatrix (mathematics)Ito calculuSettore ICAR/09 - Tecnica Delle Costruzionipotential modelMechanics of MaterialsControl theoryTime domainwhite noiseMechanical energyMathematicssystem identification
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Analysis of magnetohydrodynamic generator driven by thermoacoustic engine for deep Space applications

2020

This paper discusses the results of theoretical and experimental investigation of magnetohydrodynamic generator with liquid metal working body. This electric machine is used to convert mechanical energy, supplied by thermoacoustic engine, to an AC form of electrical energy. The purpose of this technology is an electricity production in deep Space, potentially suitable for long term missions far away from Sun.

Electric machinePhysicsLiquid metalbusiness.product_categoryMagnetohydrodynamic generatorElectric potential energyThermoacousticsMechanical engineering020207 software engineering02 engineering and technologyNASA Deep Space Network7. Clean energylaw.inventionElectricity generationlawPhysics::Space Physics0202 electrical engineering electronic engineering information engineeringbusinessMechanical energy2020 IEEE 61th International Scientific Conference on Power and Electrical Engineering of Riga Technical University (RTUCON)
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Optimization of a Sea Wave Energy Harvesting Electromagnetic Device

2008

This paper presents the optimization of a permanent magnet linear generator directly coupled to sea waves. In order to maximize energy extraction, the stochastic features of the energy source is included in the mathematical model of the system in order to satisfactorily tackle the problem. An optimization procedure which includes the stochastic features of the model is presented and a machine built on the basis of the results of this procedure is shown.

Electricity generationBasis (linear algebra)Computer scienceControl theoryStochastic processWind waveElectrical and Electronic EngineeringEnergy sourceEnergy harvestingElectric machines permanent magnet (PM) linear generator renewable energy.Mechanical energyEnergy (signal processing)Electronic Optical and Magnetic Materials
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