Search results for "torque"

showing 10 items of 373 documents

Slotted Blades Savonius Wind Turbine Analysis by CFD

2013

In this paper a new bucket configuration for a Savonius wind generator is proposed. Numerical analyses are performed to estimate the performances of the proposed configuration by means of the commercial code COMSOL Multiphysics® with respect to Savonius wind turbine with overlap only. Parametric analyses are performed, for a fixed overlap ratio, by varying the slot position; the results show that for slot positioned near the blade root, the Savonius rotor improves performances at low tip speed ratio, evidencing a better starting torque. This circumstance is confirmed by static analyses performed on the slotted blades in order to investigate the starting characteristic of the proposed Savoni…

EngineeringControl and OptimizationWind generatorWind generator systems Computational fluid dynamicEnergy Engineering and Power TechnologyComputational fluid dynamicslcsh:Technologylaw.inventionslotted bladesjel:Q40wind turbineSlotted bladeSavoniuslawPosition (vector)jel:Qjel:Q43jel:Q42jel:Q41jel:Q48Torquejel:Q47Static analysis Wind turbinesSavoniuSavonius wind turbineCFD analysiElectrical and Electronic EngineeringSettore ING-IND/04 - Costruzioni E Strutture AerospazialiEngineering (miscellaneous)Low tip speed ratiojel:Q49Parametric statisticsTip-speed ratioStarting characteristicRenewable Energy Sustainability and the EnvironmentRotor (electric)business.industrylcsh:Tjel:Q0Structural engineeringjel:Q4wind turbine; Savonius; CFD analysis; slotted bladesSavonius wind turbineParametric -analysibusinessCFD analysisEnergy (miscellaneous)Energies; Volume 6; Issue 12; Pages: 6335-6351
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A Method for Reduction of Cogging Torque in PM Machines Using Stepped Magnets

2006

The paper presents a general approach to minimization of the cogging torque in electrical machines using surface-mounted magnets with discrete skew angle. Two types of pole shapes, namely monotonic skewing as well as herringbone-shaped magnets are proposed for the purpose of reducing the cogging torque. The elaborated algorithm is validated against the 3D finite element model as well as experimental data obtained from physical model of the motor. The presented cost-effective method leads to a great reduction of cogging torque with only slight decrease of overall electromagnetic torque.

EngineeringControl theorybusiness.industryMagnetCogging torqueMonotonic functionMinificationReduction (mathematics)Electromagnetic torquebusinessSkew angleFinite element method
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PVDF based vibration measurements and their correlation with torque estimation in a FOC induction motor drive

2008

This paper presents a study concerning the vibrations generated by an induction motor drive controlled by field oriented control algorithm (FOC). The aim of the study is to identify suitable measurement points and analysis techniques in order to achieve information about vibration generated by an electric drive. Vibrations take origin both by the torque generated by the motor and the motor supply through an inverter, then they are transmitted to neighbouring structures. Torque is estimated on the basis of the estimated flux linkage; vibrations have been both measured and analysed numerically by FEM at two points of the cradle. The numerical and experimental analysis have been carried out fo…

EngineeringElectronic speed controlpolyvinyledene fluoride polymer (PVDF)Vector controlbusiness.industryVibration measurementFlux linkageInduction Motor DrivePolyvinyledene fluoride polymer (PVDF) vibration sensors Vibration measurementvibration sensorsDirect torque controlControl theorySettore ING-IND/12 - Misure Meccaniche E TermicheTorqueTorque sensorbusinessDamping torqueInduction motor
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A study on the influence of permanent magnet dimensions and stator core structures on the torque of the disc-type brushless DC motor

2000

This paper presents a three-dimensional analysis of the magnetic field distribution for a disc-type, double-sided, permanent magnet, brushless dc motor with a toroidal stator core. Calculations are carried out using the OPERA (3D) package with the TOSCA module. The electromagnetic torque is determined from the Maxwell stress tensor. For comparison, various permanent magnet dimensions and slotless vs. quasi-slotted stator cores are analysed, with an iron powder-resin composite effectively used to imitate the slotted core. The torque ripple is shown to be effectively reduced by appropriate permanent magnet dimensions. The simulation results are in good agreement with experimental data obtaine…

EngineeringElectropermanent magnetStatorbusiness.industryApplied MathematicsElectrical engineeringMechanical engineeringPermanent magnet synchronous generatorMaxwell stress tensorDC motorlaw.inventionlawMagnetTorque rippleElectrical and Electronic EngineeringbusinessSynchronous motorElectrical Engineering (Archiv fur Elektrotechnik)
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Theoretical-Applicative Research on Design and Implementation of a Special Dynamometer

2013

The topic of he present paper is taken from the Automotive Systems Nurnberg, Sibiu. It refers to the product automatic gear box which equips a few FORD models, the specific part for which the research was developed being a auto screwing bolt for plastic which raises problems at the robotized screwing because of the poor knowledge of the accurate value of the axial force and the necessary torque.

EngineeringEngineering drawingDynamometerAutomotive systemsbusiness.industryTorqueGeneral MedicineAxial forcebusinessManufacturing engineeringExperimental researchApplied Mechanics and Materials
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Effect of the non-linearity of demagnetization curves on the torque of hybrid stepping motors with permanent magnets in slots

1998

The recent achievements in electronic control as well as the higher performance of advanced permanent magnets have brought about a change in the general strategy for design and development of new types of small electrical machines. A special application of permanent magnets (PM) is represented by hybrid stepping motors (HSM). The latter are a sort of combination of variable reluctance‐motors and permanent magnet‐motors. The influence of various PM inserts into the magnetic circuits of electromechanical converters on field and force distribution has been already investigated by the authors (1996). Promising results for HSM have been reported, especially when rare‐earth PMs are used. The main…

EngineeringField (physics)Magnetic reluctancebusiness.industryApplied MathematicsDemagnetizing fieldElectrical engineeringMechanical engineeringConvertersComputer Science ApplicationsMagnetic fieldMagnetic circuitComputational Theory and MathematicsMagnetTorqueElectrical and Electronic EngineeringbusinessCOMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering
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The effect of manufacturing tolerances on a tubular linear ferrite motor

2015

This study presents a numerical and experimental study on the effect of permanent magnet tolerances on the performances of a Tubular Linear Ferrite Motor. The statistical distribution of the magnetic characteristic of a set of commercial magnets is obtained experimentally while the performances of a the tubular motor are numerically evaluated. The performances that have been considered are: cogging force, end effect force and generated thrust. It has been shown that: 1)the statistical variability of the magnets modifies the time behavior of the cogging force; 2)the value of both the end effect cogging force and the generated thrust are directly linked to the values of then remanence field o…

EngineeringFinite element methodManufacturing toleranceSettore ING-IND/11 - Fisica Tecnica AmbientaleMagnetic domainbusiness.industryElectrical engineeringMechanical engineeringThrustTubular Linear Ferrite MotorCogging torqueSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciForgingMagnetic fluxIndustrial and Manufacturing EngineeringRemanenceMagnetSliderFerrite (magnet)Electrical and Electronic Engineeringbusiness
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Validation of a subject specific 3-actuator torque-driven model in human vertical jumping.

2013

In this study, a forward dynamic subject specific 3-actuator torque-driven model of the human musculoskeletal system was created based on measurements of individual characteristics of a subject. Simulation results were compared with experimental vertical squat jumping with and without adding weights. By analyzing kinematic and kinetic experimental data at the instant of the toe-off for the same initial conditions, it was shown that a simple computer simulation using a suitable cost function could reproduce the real task performed by humans. This investigation is the first step in a wider project that will incorporate elastic components, and that will evaluate the advantages of the individua…

EngineeringLegbusiness.industrySubject specificBiomechanicsExperimental dataTorsoSquatKinematicsmedicine.disease_causeModels BiologicalHuman musculoskeletal systemJumpingmedicine.anatomical_structureTorquemedicineHumansComputer SimulationJointsbusinessActuatorMuscle SkeletalSimulationMuscle ContractionAnnual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference
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Transverse flux generators a solution for stand-alone wind mill

2015

The transverse flux generator (TFG) proposed in the paper as a solution for stand-alone wind electric power plants has a topology derived from a reluctance one. This variant has a permanent magnet on the rotor derived for a well-known topology in literature. Consequently, the number of rotor poles becomes double compared with stator one. The paper analyses the possibility of using a multiple modules one phase structure in comparison with poly-phase topology. The costs, torque harmonic content and the different rotor poles' topology are discussed and the conclusions are useful for the plant designer.

EngineeringMagnetic reluctancebusiness.industryRotor (electric)StatorTopology (electrical circuits)law.inventionGenerator (circuit theory)Control theorylawMagnetHarmonicTorquebusiness2015 13th International Conference on Engineering of Modern Electric Systems (EMES)
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Performance evaluation of directly photovoltaic powered DC PM (direct current permanent magnet) motor – propeller thrust system

2013

Photovoltaic (PV) powered directly coupled electro-mechanical system has wide applications (e.g. PV powered cooling fans in green houses, PV water pumping system, solar vehicles). The objective of this work is to analyse the operation of directly PV powered DC PM (direct current permanent magnet) motor – propeller system for selection of motor parameters. The performance of such system mainly depends on the incident solar radiation, operating cell temperature, DC motor and propeller load parameters. It is observed that the operating points of the PV DC PM motor – propeller system matches very closely with the maximum power points (MPPs) of the PV array, if the DC PM motor – propeller parame…

EngineeringMaximum power principlebusiness.industryMechanical EngineeringPhotovoltaic systemDirect currentElectrical engineeringThrustBuilding and ConstructionPollutionDC motorIndustrial and Manufacturing Engineeringlaw.inventionGeneral EnergylawMagnetTorqueElectrical and Electronic EngineeringbusinessCivil and Structural EngineeringArmature (electrical engineering)Energy
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