Search results for "Engine efficiency"

showing 4 items of 14 documents

Experimental model-based linearization of a S.I. engine gas injector flow chart:

2014

Experimental tests previously executed by the authors on the simultaneous combustion of gasoline and gaseous fuel in a spark ignition engine revealed the presence of strong nonlinearities in the lower part of the gas injector flow chart. These nonlinearities arise via the injector outflow area variation caused by the needle impacts and bounces during the transient phenomena that take place in the opening and closing phases of the injector and may seriously compromise the air-fuel mixture quality control for the lower injection times, thus increasing both fuel consumption and pollutant emissions. Despite the extensive literature about the operation and modelling of fuel injectors, there are …

Test benchEngineeringbusiness.industryMechanical EngineeringMechanical engineeringInjectorFuel injectionSettore ING-IND/13 - Meccanica Applicata Alle MacchineAutomotive engineeringlaw.inventionIgnition systemSettore ING-IND/08 - Macchine A FluidoFuel gasMechanics of MaterialslawEngine efficiencySpark-ignition engineFuel efficiencyfuel injector injection strategy spark ignition engine modelling and optimizationbusiness
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Performance and combustion analysis of a supercharged double-fuel spark ignition engine

2019

In order to increase fuel economy and reduce pollutant emissions in the last decades light duty spark ignition (SI) engines have become smaller, supercharged and equipped with direct injection. A suitable alternative to oil derived fuel is represented by gaseous fuels, such as Natural Gas (NG) and Liquefied Petroleum Gas (LPG), whose higher knock resistance and better mixing capabilities substantially improve vehicle fuel economy and pollutant emissions. The simultaneous combustion of gasoline and gaseous fuel (Double-Fuel operation, DF) in a naturally aspirated SI engine has already been investigated in the past also by the same authors, proving remarkable results in terms of engine effici…

Waste management020209 energyNaturally aspirated engineCombustion02 engineering and technologyCombustionfuel mixtureLiquefied petroleum gaslaw.inventionIgnition systemnatural ga020303 mechanical engineering & transports0203 mechanical engineeringFuel gasEngine efficiencylawSpark-ignition enginespark ignition engine0202 electrical engineering electronic engineering information engineeringEnvironmental scienceGasoline
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Calibration of a knock prediction model for the combustion of a gasoline-natural gas mixture

2009

Gaseous fuels, such as Liquefied Petroleum Gas (LPG) and Natural Gas (NG), thank to their good mixing capabilities, allow complete and cleaner combustion than normal gasoline, resulting in lower pollutant emissions and particulate matter. Moreover natural gas, which is mainly constituted by methane, whose molecule has the highest hydrogen/carbon ratio, leads also to lower ozone depleting emissions. The authors in a previous work (1) experienced the simultaneous combustion of gasoline and natural gas in a bi-fuel S.I. engine, exploiting so the high knock resistance of methane to run the engine with an ‘overall stoichiometric’ mixture (thus lowering fuel consumption and emissions) and better …

Waste managementChemistrybusiness.industryHomogeneous charge compression ignitionknock prediction double-fuel S.I. engineSettore ING-IND/08 - Macchine A FluidoInternal combustion engineFuel gasNatural gasEngine efficiencyCompression ratioOctane ratingGasolinebusiness
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Preliminary Experimental Study on Double Fuel HCCI Combustion

2015

AbstractThis paper regards an experimental study on a particular internal combustion engine process which combines Double Fuel combustion with Homogeneous Charge Compression Ignition (HCCI) using mixtures of natural gas (NG) and gasoline. The tests performed on a CFR engine demonstrate that HCCI combustion can be achieved using NG-gasoline mixtures without knocking occurrence for low to medium engine load varying the proportion between the two fuels. The main advantage of this new combustion process relies on the noticeable higher engine efficiency obtained with respect to conventional spark ignition operation, and on the strong reduction of NOX emissions.

gasolinesimultaneous combustionChemistryHomogeneous charge compression ignitionNatural gaDiesel cycleCombustionNitric OxideAutomotive engineeringlaw.inventionIgnition systemnatural gasSettore ING-IND/08 - Macchine A FluidoInternal combustion engineEnergy(all)lawEngine efficiencyefficiencyCompression ratioHCCIDouble FuelEngine knockingEnergy Procedia
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