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Sound intensity and acoustic source quantification to identify the noise contributions of gasoline direct injection components

机译:声强和声源量化,以识别汽油直喷组件的噪声贡献

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In this paper, the sound intensity and airborne source quantification methods were used to estimate the airborne noise radiating from a gasoline direction injection engine and the relative contributions of each of the engine's components to such airborne noise. In order to estimate noise contribution using airborne source quantification, the sound volume velocity for the source should be estimated. In previous methods, the sound volume velocity was estimated using the inverse method, whereas in this paper, the sound volume velocity is estimated directly. For this work, the sources of noise radiating from thegasoline direction injection engine were first identified by measuring the sound intensity of the noise sources while the engine was running idle. The sound volume velocities of these sources were estimated from the product of the area of that noise source and the directly measured particle velocity. In order to validate this method, two speakers with different frequencies were installed in an anechoic chamber and the contribution of each source was estimated. Finally, this proposed method was applied to the identification and contribution of noise sources in a gasoline direction injection engine.
机译:在本文中,使用声强和空气传播源量化方法来估计汽油方向喷射发动机产生的空气传播噪声以及每个发动机部件对这种空气传播噪声的相对影响。为了使用机载声源量化来估计噪声贡献,应估计声源的声速。在以前的方法中,使用逆方法估计音量速度,而在本文中,直接估计音量速度。对于这项工作,首先通过测量发动机空转时噪声源的声强来确定汽油方向喷射发动机辐射的噪声源。这些噪声源的声速是根据该噪声源的面积与直接测量的粒子速度的乘积估算的。为了验证此方法,在消声室内安装了两个不同频率的扬声器,并估算​​了每个声源的贡献。最后,将该方法应用于汽油定向喷油发动机的噪声源识别和贡献。

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