A Novel Sound Intensity Probe Comparison with the Pair of Pressure Microphones Intensity Probe
W.F. Druyvesteyn, H.E. de Bree
Abstract
W.F. Druyvesteyn, H.E. de Bree
Abstract
Sound intensity measurements are quite useful as an acoustic measurement technique since in a reverberant environment, even with background noise, the free field as well as the diffuse sound field can be determined. A commonly used intensity probe consists of two closely spaced identical microphones. Especially the phase characteristics of the two microphones should be the same. A much simpler intensity probe is presented, consisting of a microphone and a particle-velocity sensor: the Microflown. Critical experiments show that the performance of this intensity probe is as good as that of the intensity probe using two identical microphones. There are a number of advantages to the new probe: no accurate matching of the sensors is necessary; the same configuration can be used for different frequency ranges, and the dimensions of the probe can be smaller.
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Sound intensity measurements are quite useful as an acoustic measurement technique since in a reverberant environment, even with background noise, the free field as well as the diffuse sound field can be determined. A commonly used intensity probe consists of two closely spaced identical microphones. Especially the phase characteristics of the two microphones should be the same. A much simpler intensity probe is presented, consisting of a microphone and a particle-velocity sensor: the Microflown. Critical experiments show that the performance of this intensity probe is as good as that of the intensity probe using two identical microphones. There are a number of advantages to the new probe: no accurate matching of the sensors is necessary; the same configuration can be used for different frequency ranges, and the dimensions of the probe can be smaller.
Key concepts: Sound intensity, Sound intensity probe, Intensity (physics), Acoustics, Microphone, Sound pressure, Noise (video), Physics