Corrugated pipes combine local stiffness with global flexibility, which makes them very useful. A drawback of corrugated pipes is the whistling, which results from coupling of vortex shedding with acoustic plane waves due to the flow through the pipe. We consider the possibility to reduce whistling by placing a short corrugated pipe segment along a long smooth pipe. A linear model is proposed in which the magnitude of the dipolar sound source is determined empirically. The model allows to estimate the critical Mach number of the flow through the pipe above which the whistling will always occur even for anechoic pipe terminations.</p
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
When air flows through pipe systems that include a corrugated segment, a whistling tone is generated...
The study of sound production by internal flows has a broad range of applications such as: monitorin...
Corrugated pipes combine local stiffness with global flexibility, which makes them very useful. A dr...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which makes them very use...
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
When air flows through pipe systems that include a corrugated segment, a whistling tone is generated...
The study of sound production by internal flows has a broad range of applications such as: monitorin...
Corrugated pipes combine local stiffness with global flexibility, which makes them very useful. A dr...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which makes them very use...
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes are commonly used because of their local rigidity combined with global flexibility....
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
Corrugated pipes combine small-scale rigidity and large-scale flexibility, which make them very usef...
When air flows through pipe systems that include a corrugated segment, a whistling tone is generated...
The study of sound production by internal flows has a broad range of applications such as: monitorin...