METHOD AND SYSTEM FOR CALCULATING ATKINSON CYCLE INTAKE FLOWRATE OF INTERNAL COMBUSTION ENGINE

    公开(公告)号:US20190112995A1

    公开(公告)日:2019-04-18

    申请号:US16088860

    申请日:2017-03-30

    Abstract: A method for calculating Atkinson cycle intake flowrate of an internal combustion engine includes determining an intake stopping point and an engine crank angle corresponding to a piston position of the internal combustion engine at the intake stopping point; calculating mass and partial pressure of an exhaust gas and a fresh gas within a cylinder from the engine crank angle; obtaining a mass ratio of a quantity of gas pushed out of the cylinder by a piston to a total quantity of gas within the cylinder at the intake stopping point during a period of time starting from the intake stopping point until intake valve closure; and calculating intake flowrate of the fresh gas within the cylinder at the intake valve closure from the mass ratio obtained. Also disclosed is a system for calculating Atkinson cycle intake flowrate of an internal combustion engine.

    METHOD FOR CONTROLLING FUEL INJECTION OF ENGINE AND ENGINE FUEL INJECTION CONTROL APPARATUS APPLYING THE METHOD

    公开(公告)号:US20220316413A1

    公开(公告)日:2022-10-06

    申请号:US17824024

    申请日:2022-05-25

    Abstract: A method of controlling fuel injection to an internal combustion engine to reduce cylinder wall wetting, smokiness, and unclean combustion, on a cumulative basis, applies a self-adaptive control on a gasoline injection initial angle. Gasoline injection initial or original angle is known, being preset, and a self-adaptive controlling volume is added. The self-adaptive controlling volume is the addition of a first self-adaptive controlling volume and a second self-adaptive controlling volume to the original angle. The first self-adaptive controlling volume relates to predicted load and an engine coolant temperature. The second self-adaptive controlling volume is based on the rotating speed of the engine. Cylinder wall wetting is reduced or avoided, smoke is reduced, and cleaner combustion is achieved. An engine fuel injection control apparatus applying the method is also provided.

    Method and system for calculating Atkinson cycle intake flowrate of internal combustion engine

    公开(公告)号:US10648418B2

    公开(公告)日:2020-05-12

    申请号:US16088860

    申请日:2017-03-30

    Abstract: A method for calculating Atkinson cycle intake flowrate of an internal combustion engine includes determining an intake stopping point and an engine crank angle corresponding to a piston position of the internal combustion engine at the intake stopping point; calculating mass and partial pressure of an exhaust gas and a fresh gas within a cylinder from the engine crank angle; obtaining a mass ratio of a quantity of gas pushed out of the cylinder by a piston to a total quantity of gas within the cylinder at the intake stopping point during a period of time starting from the intake stopping point until intake valve closure; and calculating intake flowrate of the fresh gas within the cylinder at the intake valve closure from the mass ratio obtained. Also disclosed is a system for calculating Atkinson cycle intake flowrate of an internal combustion engine.

    Air intake device
    5.
    发明授权

    公开(公告)号:US12085047B2

    公开(公告)日:2024-09-10

    申请号:US18000227

    申请日:2022-08-01

    CPC classification number: F02M35/10157 F02B29/0437 F02M35/10255 F02M35/104

    Abstract: An air intake device includes a supercharger, a connection tube, an intercooler, and an intake manifold. The supercharger is connected to an exhaust port of a cylinder. The intercooler is connected to the supercharger through the connection tube. The intake manifold is connected to the intercooler and an intake port of the cylinder. The intercooler is located above a cylinder head of an engine. The device of the present disclosure features less height space occupation, a short connection tubeline between elements and a compact structure, which is beneficial for an increase of the pressurization response speed and reduction in the cost.

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