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In-Duct Acoustic Source Data for Roots Blowers

机译:根源吸气机的管道声源数据

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Increased demands for reduction of fuel consumption and CO_2 emissions are driven by the global warming. To meet these challenges with respect to the passenger car segment the strategy of utilizing IC-engine downsizing has shown to be effective. In order to additionally meet requirements for high power and torque output supercharging is required. This can be realized using e.g. turbo-chargers, roots blowers or a combination of several such devices for the highest specific power segment. Both turbo-chargers and roots blowers can be strong sources of sound depending on the operating conditions and extensive NVH abatements such as resonators and encapsulation might be required to achieve superior vehicle NVH. For an efficient resonator tuning process in-duct acoustic source data is required. No published studies exists that describe how the gas exchange process for roots blowers can be described by acoustic sources in the frequency domain. This paper presents an experimental study that aims to investigate if a linear time invariant acoustic 1-port model can represent the in-duct sound source of a roots blower in- and outlet. Different operating conditions are investigated for a wide rotation speed range. The results show that it is possible to use a linear acoustic source model to represent a roots blower and that sound predictions can be performed with good accuracy.
机译:增加了对减少燃料消耗和CO_2排放的需求由全球变暖驱动。为了满足乘客段的挑战,利用IC-Engine缩小化的策略表明有效。为了另外满足对高功率的要求,并且需要扭矩输出增压。这可以使用例如例如使用涡轮充电器,根部鼓风机或用于最高特定功率段的几种这样的装置的组合。根据操作条件,涡轮充电器和根部鼓风机都可以是强大的声音来源,并且可能需要广泛的NVH缓解,例如谐振器和封装等谐振器和封装。对于有效的谐振器调谐过程,需要导管声学源数据。不存在任何公开的研究,描述了如何通过频域中的声源描述根部抽吸器的气体交换过程。本文提出了一个实验研究,旨在调查线性时间不变声学1端口模型是否可以代表根部鼓风机的管道声源。针对宽转速范围进行研究了不同的操作条件。结果表明,可以使用线性声学源模型来表示根鼓风机,并且可以以良好的准确度执行声音预测。

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