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        A mathematical model to investigate the effects of misfire and cyclic variations on crankshaft speed fluctuations in internal combustion engines

        Hamit Solmaz,Halit Karabulut 대한기계학회 2015 JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY Vol.29 No.4

        In internal combustion engines the engine vibrations come up as block vibrations and crankshaft speed fluctuations. Crankshaft speedfluctuations indicate the unstable running of the engine. Crankshaft speed fluctuations are caused by several sources. Main factor affectingthe crankshaft speed fluctuations is in-cylinder pressure. Changes in-cylinder pressure caused by cyclic variations and misfire resultas speed fluctuations on a crankshaft. In this study the effects of the cyclic variations and misfire problem on the engine crankshaft speedfluctuations have been investigated. A mathematical model including engine kinematics has been developed for a four cylinder dieselengine. In-cylinder pressure profiles used in the mathematic model were obtained experimentally. Two pressure profiles including 11cycles and averages of these cycles were used in analysis. Pressure profiles were expressed mathematically by Fourier series having 1001term. Although the indicated mean effective pressure values of pressure profiles were stable, the crankshaft speed fluctuations were determinedas 5.5% and 11.1% at 230 rad/s for 5.15% and 12.92% imep COV values. When single misfire take place in the third cylinder,average crankshaft speed decreased 6.6 rad/s. Also, in case of continuous misfire the crankshaft speed fluctuations increased from 4.3%to 8%.

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