Download Air Bubble Entrainment in Free-Surface Turbulent Shear Flows by Hubert Chanson PDF

By Hubert Chanson

Content material:
Abstract

, Pages xiii-xvi,I-IV
Acknowledgements

, Page xvii
About the author

, Page xviii
List of symbols

, Pages xix-xxix
Glossary

, Pages xxxi-xlix
Chapter 1 - Introduction

, Pages 2-16
Chapter 2 - Mechanisms of air bubble entrainment

, Pages 17-26
Chapter three - Similitude and experimental studies

, Pages 27-35
Chapter four - Air-water fuel transfer

, Pages 36-41
Chapter five - Plunging jet flows: Presentation

, Pages 44-52
Chapter 6 - Air entrainment through plunging jets

, Pages 53-72
Chapter 7 - Air entrainment in hydraulic jumps

, Pages 73-92
Chapter eight - Air entrainment in plunging jet flows: similar circumstances and fuel transfer

, Pages 93-101
Chapter nine - Self-aerated flows-presentation

, Pages 104-109
Chapter 10 - Air entrainment in steep chute flows

, Pages 110-132
Chapter eleven - Air entrainment in small-slope waterways

, Pages 133-143
Chapter 12 - Air entrainment in partially-filled conduits

, Pages 144-152
Chapter thirteen - Air entrainment in open channels: Discussion

, Pages 153-164
Chapter 14 - creation to high-velocity water jets discharging into the ambience and ventilated hollow space flows

, Pages 166-173
Chapter 15 - Air entrainment in high-velocity water jets

, Pages 174-188
Chapter sixteen - Ventilated hollow space flows

, Pages 189-199
Chapter 17 - Spillway software: Aeration devices

, Pages 200-214
Chapter 18 - precis: Air bubble diffusion in shear flows

, Pages 216-234
Chapter 19 - Conclusion

, Pages 235-238
References

, Pages 239-261
Appendix A - Constants and fluid properties

, Pages 263-270
Appendix B - Unit conversions

, Pages 271-273
Appendix C - Bubble upward thrust velocity

, Pages 274-277
Appendix D - Sound celerity in two-phase (gas-liquid) flow

, Pages 278-280
Appendix E - Air bubble diffusion at plunging water jets

, Pages 281-288
Appendix F - attribute parameters of boundary layer

, Pages 289-292
Appendix G - Air focus distributions in self-aerated flows

, Pages 293-303
Appendix H - Air-water circulation in partially-filled pipes

, Pages 304-306
Appendix I - Air focus distributions in water jets discharging into the atmosphere

, Pages 307-315
Appendix J - Jet trajectory calculations

, Pages 316-322
Appendix okay - Air bubble dimension distribution characteristics

, Pages 323-326
Appendix L - Air-water circulate as stated via Leonardo da Vinci

, Pages 327-329
Appendix M - Corrections

, Pages 330-331
Index of authors

, Pages 333-337
Subject index

, Pages 339-348

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Extra info for Air Bubble Entrainment in Free-Surface Turbulent Shear Flows

Sample text

The present theory of the jump has been verified experimentally by BAKHMETEFF and MATZKE (1936). e. typically more than 1% in volume). Spectacular hyperconcentrated flows are observed in the Yellow River basin (China) with volumetric concentrations larger than 8%. Ideal fluid: frictionless and incompressible fluid. , it cannot sustain shear stress at any point. Inca: South-American Indian of the Quechuan tribes of the highlands of Peru. D. 1200 and 1532. The domination of the Incas was terminated by the Spanish conquest.

It is named after the Italian physicist Giovanni Battista VENTURI (1746-1822). e. resistance to a change in shape or movement of the surroundings. C. ). He built several aqueducts to supply the Roman capital with water. ) VOC: Volatile Organic Compound. , volume of air per unit volume. Wadi: Arabic word for a valley which becomes a watercourse in rainy seasons. Wake region : The separation region downstream of the streamline that separates from a boundary is called a wake or wake region. Wam'e: Australian Aboriginal name for 'rushing water'.

In fluid mechanics, he developed the theory of sources and sinks, and used it to improve ship hull contours. , flow past a Rankine body. RAYLEIGH \ John William STRUTT, Baron Rayleigh, (1842-1919) was an English scientist who made fundamental findings in acoustics and optics. His works are the basics of wave propagation theory in fluids. He received the Nobel Prize for Physics in 1904 for his work on the inert gas argon. REECH: Ferdinand REECH (1805-1880) was a French naval instructor who proposed first the Reech-Froude number in 1852 for the testing of model ships and propellers.

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