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- Q3746868 subject Q16781382.
- Q3746868 subject Q7166246.
- Q3746868 abstract "Fanno flow refers to adiabatic flow through a constant area duct where the effect of friction is considered. Compressibility effects often come into consideration, although the Fanno flow model certainly also applies to incompressible flow. For this model, the duct area remains constant, the flow is assumed to be steady and one-dimensional, and no mass is added within the duct. The Fanno flow model is considered an irreversible process due to viscous effects. The viscous friction causes the flow properties to change along the duct. The frictional effect is modeled as a shear stress at the wall acting on the fluid with uniform properties over any cross section of the duct.For a flow with an upstream Mach number greater than 1.0 in a sufficiently long enough duct, deceleration occurs and the flow can become choked. On the other hand, for a flow with an upstream Mach number less than 1.0, acceleration occurs and the flow can become choked in a sufficiently long duct. It can be shown that for flow of calorically perfect gas the maximum entropy occurs at M = 1.0. Fanno flow is named after Gino Girolamo Fanno.".
- Q3746868 thumbnail Fanno1.PNG?width=300.
- Q3746868 wikiPageExternalLink eth-22220-01.pdf.
- Q3746868 wikiPageExternalLink fanno.html.
- Q3746868 wikiPageExternalLink fanno_calculator.html.
- Q3746868 wikiPageWikiLink Q1119919.
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- Q3746868 wikiPageWikiLink Q16781382.
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- Q3746868 wikiPageWikiLink Q3746869.
- Q3746868 wikiPageWikiLink Q3764630.
- Q3746868 wikiPageWikiLink Q45003.
- Q3746868 wikiPageWikiLink Q503869.
- Q3746868 wikiPageWikiLink Q6086397.
- Q3746868 wikiPageWikiLink Q7166246.
- Q3746868 wikiPageWikiLink Q82580.
- Q3746868 wikiPageWikiLink Q830787.
- Q3746868 wikiPageWikiLink Q907271.
- Q3746868 comment "Fanno flow refers to adiabatic flow through a constant area duct where the effect of friction is considered. Compressibility effects often come into consideration, although the Fanno flow model certainly also applies to incompressible flow. For this model, the duct area remains constant, the flow is assumed to be steady and one-dimensional, and no mass is added within the duct. The Fanno flow model is considered an irreversible process due to viscous effects.".
- Q3746868 label "Fanno flow".
- Q3746868 depiction Fanno1.PNG.