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Specificity of Modeling of the Structure-Borne Noise of the Diesel Engine from the Working Process in the Acceleration Mode

机译:从加速模式下工作过程的柴油发动机结构 - 传承噪声的建模特异性

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In urban traffic conditions, the car's engine mainly operates in non-stationary modes. In this case, the engine noise may exceed the values corresponding to the stationary mode. The article deals with the issues of modeling of the working process and structure-borne noise of a diesel engine in the acceleration mode. The factors that cause differences in the working process during acceleration (deterioration of the processes of mixture formation and combustion, an increase in the ignition delay period, thermal inertia of engine parts, etc.) are analyzed. A method for the structure-borne noise from the diesel engine operating process calculation in the transient mode is presented. The results of the study of the structure-borne noise of the 6-cylinder diesel engine (D=10,7cm, S= 12,4cm) in the acceleration mode, performed using the considered technique, showed that the total sound power level from the working process for the studied range of crankshaft speeds is 2…3 dB higher than the values for the corresponding speeds in stationary modes for full load performance.
机译:在城市交通条件下,汽车的发动机主要以非静止模式运行。在这种情况下,发动机噪声可能超过与静止模式对应的值。本文涉及加速模式下柴油发动机的工作流程和结构噪声的建模问题。分析了导致加速期间工作过程差异的因素(混合物形成和燃烧过程的恶化,点火延迟期的增加,发动机部件的热惯性等)。呈现了来自瞬态模式下柴油发动机操作过程计算的结构噪声的方法。使用所考虑的技术进行加速模式的6缸柴油发动机(D = 10,7cm,S = 12,4cm)的结构 - 传送噪声的研究结果表明总声音功率水平研究范围的曲轴速度范围的工作过程比静止模式相应速度的值高2 ... 3 dB。

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