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Influence of Rib Stiffener Design Parameters on the Noise Radiation of an Engine Block

机译:肋骨加强件设计参数对发动机块噪声辐射的影响

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摘要

Stiffener ribs are widely used to increase the stiffness of engine blocks, shifting the vibration modes to higher frequencies where excitation is weaker so that radiated noise can be reduced. The effect of different rib design parameters on the radiated noise emission of a diesel engine has been investigated considering its impact on block weight. A heavy-duty engine block was modeled using finite element method, multi-body dynamics approach was used to determine the excitation forces acting due to combustion pressure and inertias, and boundary element method was used to find the acoustic transfer vectors which give the relationship between engine surface velocities and sound pressure levels at predetermined microphone locations. Initially, the baseline analytical sound pressure level and surface velocity results for the engine without ribs were obtained. Two prototype engines, with and without stiffened ribs, were tested in an acoustic dynamometer in complete speed range. Then, the problem was narrowed down to a specific surface patch on the block at a critical engine speed. The effects of various ribbing design parameters have been identified iteratively. A noticeable decrease in engine noise can be achieved by increasing the number of ribs, using thicker or higher ribs particularly in the frequency range corresponding to the engine skirt breathing modes. Increasing the rib height was found to be the most efficient way to reduce noise emissions with least impact on the block weight.
机译:加强肋肋广泛用于增加发动机块的刚度,将振动模式移位到较高的频率,其中激发较弱,从而可以降低辐射噪声。考虑到其对块重量的影响,研究了不同肋设计参数对柴油发动机辐射噪声发射的影响。使用有限元方法建模重型发动机块,使用多体动力学方法来确定由于燃烧压力和惯性而作用的激发力,并且边界元件方法用于找到带来关系之间的声学​​转移矢量在预定的麦克风位置处发动机表面速度和声压水平。最初,获得了没有肋骨的发动机的基线分析声压水平和表面速度结果。在完全速度范围内,在声学测功机中测试两个具有和没有加强肋的原型发动机。然后,以临界发动机速度将问题缩小到块上的特定表面贴片。已经迭代地识别了各种罗纹设计参数的影响。通过增加肋条的数量,可以使用较厚或更高的肋,特别是在与发动机裙子呼吸模式对应的频率范围内的肋条的数量来实现发动机噪声的显着降低。发现增加肋骨高度是降低对块重量最小影响的最有效的方法。

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