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A Method for Experimental Determination of SourceImpedance in Helium-Air Mixture

机译:实验确定氦气混合物中源阻抗的方法

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Acoustic properties of the hot in-duct noise sources (for instance IC engine exhaust) are most precisely determined under the real working conditions. However, thernhot pulsating exhaust gas flow causes technical problems: need for transducer cooling, vibration etc. Therefore from practical point of view in many cases the cold environmentrn(room temperature airflow) is used for measurements. Due to the different sound speeds ofrnthe environments this usually leads to the incorrect measurement results.rnIn the paper an improved measurement method to characterize the hot in-duct noise systemrnhas been developed and tested. In order to simulate the acoustical conditions of the hotrngases, helium is used as a testing environment. Since the speed of sound in helium is closernto that in the hot gases, the cold exhaust system filled with helium simulates the hot system. The measurement method used is based on the one-port presentation of the source and the standard two-microphone technique is used to determine the acoustic properties of the source. As a test of the method the reflection coefficient of the exhaust port of the automotive IC engine was measured. The measured reflection coefficients are compared with the source data determined using the classical cold airflow technique.
机译:在实际工作条件下,最精确地确定了热导管噪声源(例如IC发动机排气)的声学特性。然而,热的脉动排气流引起技术问题:需要换能器冷却,振动等。因此,从实际的角度来看,在许多情况下,使用冷环境(室温气流)进行测量。由于环境的声速不同,这通常会导致错误的测量结果。在本文中,已经开发并测试了一种改进的测量方法来表征热的管道内噪声系统。为了模拟高温气体的声学条件,将氦气用作测试环境。由于氦气中的声速接近热气体中的声速,因此充满氦气的冷排气系统模拟了热系统。使用的测量方法基于信号源的单端口表示,并且使用标准的两麦克风技术确定信号源的声学特性。作为该方法的测试,测量了汽车IC发动机的排气口的反射系数。将测得的反射系数与使用经典冷气流技术确定的源数据进行比较。

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