phenomenon 31.53 Transition to turbulence in a pipe

open in the book · parts/03-classical-mechanics/14-fluid-dynamics.tex:1582 · p. 1059

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phenomenon 31.53: Transition to turbulence in a pipe31.53phenomenon 31.41: The fourth-power law of pipe flow31.41phenomenon 31.49: Dynamical similarity31.49remark 31.54: This one is not a gap in the writing31.54proof : ch:14-fluid-dynamics@proof-25prooftheorem 31.37: The Navier–Stokes equations31.37remark 31.42: The entry length31.42proof : ch:14-fluid-dynamics@proof-21proofdefinition 31.51: The other similarity groups31.51remark 31.50: Reading the Reynolds number31.50remark 31.52: Similarity is only as good as the control of the data31.52remark 31.62: What the spacing calculation settles, and what it does not31.62proof : ch:14-fluid-dynamics@proof-24proof

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typedirectionnode provenancewhere
cites (evidence) The Onset of Turbulence in Pipe Flow derived parts/03-classical-mechanics/14-fluid-dynamics.tex:1595
cites (evidence) An experimental investigation of the circumstances which determine whether the motion of water shall be direct or sinuous, and of the law of resistance in parallel channels derived parts/03-classical-mechanics/14-fluid-dynamics.tex:1591
cites (evidence) An experimental investigation of the circumstances which determine whether the motion of water shall be direct or sinuous, and of the law of resistance in parallel channels derived parts/03-classical-mechanics/14-fluid-dynamics.tex:1595
depends_on The fourth-power law of pipe flow declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1596
depends_on Dynamical similarity declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1596
depends_on This one is not a gap in the writing declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1695
proves ch:14-fluid-dynamics@proof-25 declared parts/03-classical-mechanics/14-fluid-dynamics.tex:1599