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流体力学

出典: フリー百科事典『ウィキペディア(Wikipedia)』
物理学 > 力学 > 連続体力学 > 流体力学
連続体力学


流体力学(りゅうたいりきがく、: fluid dynamics / fluid mechanics)とは、流体静止状態や運動状態での性質、また流体中での物体の運動を研究する、力学の一分野[1]

概説[編集]


[2]

fluid statics (fluid dynamics[3]) [4][5][6][7][8][9]

[10][11]

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165317[12]

1819[13][14][15][16]19 [12]

関連分野[編集]

流体力学の用語・概念[編集]

応用[編集]

応用分野[編集]

脚注[編集]

  1. ^ 大辞泉「流体力学」
  2. ^ 巽 2021, p. 1-2.
  3. ^ Batchelor, C. K., & Batchelor, G. K. (2000). An introduction to fluid dynamics. Cambridge University Press.
  4. ^ Abbott, M. B., & Minns, A. W. (2017). Computational hydraulics. Routledge.
  5. ^ Bear, J. (2012). Hydraulics of groundwater. Courier Corporation.
  6. ^ Bertin, J. J., & Smith, M. L. (1998). Aerodynamics for engineers (Vol. 5). Upper Saddle River, NJ: Prentice Hall.
  7. ^ Anderson Jr, J. D. (2010). Fundamentals of aerodynamics. Tata McGraw-Hill Education.
  8. ^ Houghton, E. L., & Carpenter, P. W. (2003). Aerodynamics for engineering students. Elsevier.
  9. ^ Milne-Thomson, L. M. (1973). Theoretical aerodynamics. Courier Corporation.
  10. ^ Goldston, R. J., & Rutherford, P. H. (1995). Introduction to plasma physics. CRC Press.
  11. ^ Fridman, A., & Kennedy, L. A. (2004). Plasma physics and engineering. CRC Press.
  12. ^ a b 『ブリタニカ国際百科事典』
  13. ^ Constantin, P., & Foias, C. (1988). Navier-stokes equations. University of Chicago Press.
  14. ^ Temam, R. (2001). Navier-Stokes equations: theory and numerical analysis (Vol. 343). American Mathematical Society.
  15. ^ Foias, C., Manley, O., Rosa, R., & Temam, R. (2001). Navier-Stokes equations and turbulence (Vol. 83). Cambridge University Press.
  16. ^ Girault, V., & Raviart, P. A. (2012). Finite element methods for Navier-Stokes equations: theory and algorithms (Vol. 5). Springer Science & Business Media.
  17. ^ 矢川元基. (2001). パソコンで見る流れの科学: 数値流体力学入門. 講談社.
  18. ^ Anderson, J. D., & Wendt, J. (1995). Computational fluid dynamics (Vol. 206). New York: McGraw-Hill.
  19. ^ Chung, T. J. (2010). Computational fluid dynamics. Cambridge University Press.
  20. ^ Blazek, J. (2015). Computational fluid dynamics: principles and applications. Butterworth-Heinemann.
  21. ^ Wesseling, P. (2009). Principles of computational fluid dynamics (Vol. 29). Springer Science & Business Media.

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︿JSME200541ISBN 978-4-88898-333-4 

西 ,  2013927ISBN 978-4798039503 

 1992121ISBN 978-4-254-20066-9 

 ︿ 20211112ISBN 978-4000299046 

 2013121ISBN 978-4274069697 

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Falkovich, Gregory (2011), Fluid Mechanics (A short course for physicists), Cambridge University Press, ISBN 978-1-107-00575-4, http://www.weizmann.ac.il/complex/falkovich/sites/weizmann.ac.il.complex.falkovich/files/FluidShort.pdf 

Kundu, Pijush K.; Cohen, Ira M. (2008), Fluid Mechanics (4th revised ed.), Academic Press, ISBN 978-0-12-373735-9 

Currie, I. G. (1974), Fundamental Mechanics of Fluids, en:McGraw-Hill, Inc., ISBN 0-07-015000-1 

Massey, B.; Ward-Smith, J. (2005), Mechanics of Fluids (8th ed.), Taylor & Francis, ISBN 978-0-415-36206-1 

White, Frank M. (2003), Fluid Mechanics, McGrawHill, ISBN 0-07-240217-2 

Nazarenko, Sergey (2014), Fluid Dynamics via Examples and Solutions, CRC Press (Taylor & Francis group), ISBN 978-1-43-988882-7 

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