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- W2618641189 abstract "Ths paper presents a mean value model of the dynamic behavior for the intake manifold of an internal combustion spark ignition engine. The scope is to estimate in real time the mass flow rate of the air required by the engine and its thermodynamic conditions taking into account the effects related to the pressure and temperature dynamic, the heat exchange both in the intake manifold and in the pipes toward each cylinder, the fuel film and the influence of the exhaust gas internal recirculation. The final model is composed by physic and black box models, with the goal to have a simple description of the main quasi-stationary phenomena that occur in that part of the engine which starts at the throttle body down to the cylinder volume during the intake stroke. This model can be used as a starting point for the development of a complete black-box model that can be implemented in the central unit for the optimization of the fuel injection. The validation of the model has been carried out with experimental data sampled in a prototype vehicle with the engine equipped with pressure and temperature transducers in addition to the normal electronic measurement equipment The tests has been performed after the engine warm up phase, and in different working situations (urban, mountain and highway) and the results obtained are quite good." @default.
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- W2618641189 date "1998-02-01" @default.
- W2618641189 modified "2023-09-27" @default.
- W2618641189 title "Dynamic Model of the Intake Dynamics of a SI Engine Including Internal EGR and Fuel Film Effects" @default.
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- W2618641189 doi "https://doi.org/10.1016/s1474-6670(17)42190-2" @default.
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