Fluid dynamics
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| 분류 | 교육 | 
|---|---|
| 버전 | 1.0.42.205 | 
| 연령 | 3세 이상 | 
| 업데이트 | 2018. 11. 23. | 
| 금주 다운수 | 0 | 
| 누적 다운수 | 65 | 
| 개발사 | Anna Voronich | 
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Fluid dynamics
In physics and engineering fluid dynamics is a subdiscipline of fluid mechanics that describes the flow of fluidsliquids and gases It has several subdisciplines including aerodynamics the study of air and other gases in motion and hydrodynamics the study of liquids in motion Fluid dynamics has a wide range of applications including calculating forces and moments on aircraft determining the mass flow rate of petroleum through pipelines predicting weather patterns understanding nebulae in interstellar space and modelling fission weapon detonation Fluid dynamics offers a systematic structurewhich underlies these practical disciplinesthat embraces empirical and semiempirical laws derived from flow measurement and used to solve practical problems The solution to a fluid dynamics problem typically involves the calculation of various properties of the fluid such as flow velocity pressure density and temperature as functions of space and time
The free application quotFluid dynamicsquot  is very friendly it has a beautiful and simple interface The best choice for a pocket dictionary that is always at hand From which you can learn a lot of new and interesting things for example that
PrandtlMeyer expansion fan
A supersonic expansion fan technically known as PrandtlMeyer expansion fan a twodimensional simple wave is a centered expansion process that occurs when a supersonic flow turns around a convex corner The fan consists of an infinite number of Mach waves diverging from a sharp corner When a flow turns around a smooth and circular corner these waves can be extended backwards to meet at a point
Newtonian fluid
A Newtonian fluid is a fluid in which the viscous stresses arising from its flow at every point are linearly correlated to the local strain ratethe rate of change of its deformation over time That is equivalent to saying those forces are proportional to the rates of change of the fluid39s velocity vector as one moves away from the point in question in various directions
Wave impedance
The wave impedance of an electromagnetic wave is the ratio of the transverse components of the electric and magnetic fields For a transverseelectricmagnetic TEM plane wave traveling through a homogeneous medium the wave impedance is everywhere equal to the intrinsic impedance of the medium In particular for a plane wave travelling through empty space the wave impedance is equal to the impedance of free space The symbol Z is used to represent it and it is expressed in units of ohms The symbol  eta may be used instead of Z for wave impedance to avoid confusion with electrical impedance
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