0000000000458019

AUTHOR

Alberto Beccari

showing 13 related works from this author

A Study on the Use of Combustion Phase Indicators for MBT Spark Timing on a Bi-Fuel Engine

2007

The performance of a spark ignition engine strongly depends on the phase of the combustion process with respect to piston motion, and hence on the spark advance; this fundamental parameter is actually controlled in open-loop by means of maps drawn up on the test bench and stored in the Electronic Control Unit (ECU). Bi-fuel engines (e.g. running either on gasoline or on natural gas) require a double mapping process in order to obtain a spark timing map for each of the fuels. This map based open-loop control however does not assure to run the engine always with the best spark timing, which can be influenced by many factors, like ambient condition of pressure, temperature and humidity, fuel p…

Electronic control unitTest benchCombustionAutomotive engineeringElectronic control units Compressed natural gas Gasoline Dual fuel engines Spark ignition engineslaw.inventionPistonSettore ING-IND/08 - Macchine A FluidolawSpark-ignition engineSpark (mathematics)Fuel efficiencyEnvironmental scienceGasolineSAE Technical Paper Series
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Reliable TDC position determination: a comparison of different thermodynamic methods through experimental data and simulations

2008

It is known to internal combustion researcher that the correct determination of the crank position when the piston is at Top Dead Centre (TDC) is very important, since an error of 1 crank angle degree (CAD) can cause up to a 10% evaluation error on indicated mean effective pressure (IMEP) and a 25% error on the heat released by the combustion: the TDC position should be then known within a precision of 0.1 CAD. This task can be accomplished by means of a dedicated capacitive sensor, which allows a measurement within the required 0.1 degrees precision. Such a sensor has a substantial cost and its use is not really fast; a different approach can be followed using a thermodynamic method, whose…

CrankDead centreObservational errorSettore ING-IND/08 - Macchine A FluidoMean effective pressureControl theoryMathematical analysis Compressed natural gas Performance testsCapacitive sensingHeat transferCompression ratioCombustionMathematics
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DETERMINATION OF TDC IN INTERNAL COMBUSTION ENGINES BY A NEWLY DEVELOPED THERMODYNAMIC APPROACH

2010

Abstract In-cylinder pressure analysis is nowadays an indispensable tool in internal combustion engine research & development. It allows the measure of some important performance related parameters, such as indicated mean effective pressure (IMEP), mean friction pressure, indicated fuel consumption, heat release rate, mass fraction burned, etc. Moreover, future automotive engine will probably be equipped with in-cylinder pressure sensors for continuous combustion monitoring and control, in order to fulfil the more and more strict emission limits. For these reasons, in-cylinder pressure analysis must be carried out with maximum accuracy, in order to minimize the effects of its characteristic…

Automotive engineCrankEngineeringbusiness.industryEnergy Engineering and Power TechnologyMechanical engineeringPressure sensorIndustrial and Manufacturing Engineeringlaw.inventionPressure measurementDead centreSettore ING-IND/08 - Macchine A FluidoMean effective pressureInternal combustion enginelawinternal combustion enginetop dead centre determinationSpark plugbusiness
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Performance Prevision of a Turbocharged Natural Gas Fuelled S.I. Engine

2008

Natural gas represents today maybe the most valid alternative to conventional fuels for road vehicles propulsion. The main constituent of natural gas, methane, is characterized by a high autoignition temperature, which makes the fuel highly resistant to knocking: this allows a considerable downsizing of the engine by means of supercharging even under high compression ratio. Starting from these considerations, the authors realized a thermodynamic model of a 4-cilynder s.i. engine for the prevision of in-cylinder pressure, employing a two-zone approach for the combustion and adding sub-models to account for gas properties change and knocking occurrence. An extensive experimental campaign has …

Simulation and modeling Natural gas Turbochargers Spark ignition enginesbusiness.industryNaturally aspirated engineCompressed natural gasPropulsionAutomotive engineeringSettore ING-IND/08 - Macchine A FluidoNatural gasCompression ratioFuel efficiencyEnvironmental scienceGasolinebusinessTurbochargerSAE Technical Paper Series
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An analytical approach for the evaluation of the optimal combustion phase in spark ignition engines

2009

It is well known that the spark advance is one of the most important parameters influencing the efficiency of a spark ignition engine. A change in this parameter causes a shift in the combustion phase, whose optimal position, with respect to the piston motion, implies the maximum brake mean effective pressure for given operative conditions. The best spark timing is usually estimated by means of experimental trials on the engine test bed or by means of thermodynamic simulations of the engine cycle. In this work, instead, the authors developed, under some simplifying hypothesis, an original theoretical formulation for the estimation of the optimal combustion phase. The most significant parame…

Engineeringbusiness.industryMechanical EngineeringHomogeneous charge compression ignitionEnergy Engineering and Power TechnologyAerospace EngineeringMechanical engineeringMechanicsspark ignition engine optimal combustion phase spark timing spark advanceCombustionlaw.inventionIgnition systemPistonFuel TechnologySettore ING-IND/08 - Macchine A FluidoNuclear Energy and EngineeringMean effective pressurelawSpark-ignition engineIgnition timingCombustion chamberbusiness
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BCD-9 OPERATIVE VARIATOR CHARACTERIZATION FOR CVT IMPROVEMENT(BELT AND CHAIN DRIVES)

2001

Power transmissionEngineeringVariatorChain (algebraic topology)business.industrybusinessAutomotive engineeringCharacterization (materials science)The Proceedings of the JSME international conference on motion and power transmissions
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The Experimental Validation of a New Thermodynamic Method for TDC Determination

2007

In-cylinder pressure analysis is becoming more and more important both for research and development purpose and for control and diagnosis of internal combustion engines; directly measured by means of a combustion chamber pressure transducers or evaluated by analysing instantaneous engine speed [1,2,3,4], incylinder pressure allows the evaluation of indicated mean effective pressure (IMEP), combustion heat release, combustion phase, friction pressure, etc...It is well known to internal combustion engine researchers that for a right evaluation of these quantities the exact determination of Top Dead Centre (TDC) is of vital importance: a 1° error on TDC determination can lead to evaluation err…

Materials scienceCombustionPressure sensorAutomotive engineeringCylinder (engine)law.inventionDead centreSettore ING-IND/08 - Macchine A FluidoMean effective pressureInternal combustion enginelawSpark-ignition engineMathematical models Diagnostics Spark ignition enginesCombustion chamber
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Modello termodinamico per la previsione delle prestazioni di motori alimentati a CNG

2008

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Proportional Integral Spark-Timing Control by Means of In-Cylinder Pressure Analysis

2004

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“Determinazione analitica della fasatura ottima di combustione in motori ad accensione comandata” 63° Congresso Nazionale ATI, Palermo Sett. 2008

2008

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Regolazione in retroazione dell’anticipo d’accensione mediante analisi della pressione all’interno del cilindro

2004

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Confronto sperimentale tra metodi termodinamici per la determinazione della posizione del punto morto superiore

2008

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Progetto preliminare di trasmissioni CVT con due vie in parallelo

2005

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