By Donald F. Young, Bruce R. Munson, Theodore H. Okiishi, Wade W. Huebsch
A short advent to Fluid Mechanics, fifth variation is designed to hide the normal themes in a easy fluid mechanics path in a streamlined demeanour that meets the educational wishes of today?s pupil greater than the dense, encyclopedic demeanour of conventional texts. This process is helping scholars attach the mathematics and concept to the actual global and functional functions and observe those connections to fixing difficulties. The textual content lucidly offers simple research recommendations and addresses useful issues and functions, resembling pipe circulation, open-channel move, circulation dimension, and drag and raise. It deals a powerful visible method with pictures, illustrations, and video clips incorporated within the textual content, examples and homework difficulties to stress the sensible software of fluid mechanics ideas
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3, is the fluid density, V the mean fluid velocity, D the pipe diameter, and the fluid viscosity. 6 m/s. V D FIND Determine the value of the Reynolds number using (a) SI units and (b) BG units. s/m2 2 . ft/s2 2/lb ϭ 156 Re ϭ (Ans) since 1 lb ϭ 1 slugиft/s . 2 Re ϭ 156 (Ans) COMMENT The value of any dimensionless quantity does not depend on the system of units used if all variables that make up the quantity are expressed in a consistent set of units. To check this we will calculate the Reynolds number using BG units.
Errors t h e N e w s in the maneuvering commands sent from Earth caused the Orbiter to sweep within 37 miles of the surface rather than the intended 93 miles. The subsequent investigation revealed that the errors were due to a simple mix-up in units. One team controlling the Orbiter used SI units whereas another team used BG units. This costly experience illustrates the importance of using a consistent system of units. 3 9 Measures of Fluid Mass and Weight Analysis of Fluid Behavior The study of fluid mechanics involves the same fundamental laws you have encountered in physics and other mechanics courses.
These various types of surface phenomena are due to the unbalanced cohesive forces acting on the liquid molecules at the fluid surface. Molecules in the interior of the fluid mass are surrounded by molecules that are attracted to each other equally. However, molecules along the surface are subjected to a net force toward the interior. The apparent physical consequence of this unbalanced force along the surface is to create the hypothetical skin or membrane. A tensile force may be considered to be acting in the plane of the surface along any line in the surface.
A brief introduction to fluid mechanics by Donald F. Young, Bruce R. Munson, Theodore H. Okiishi, Wade W. Huebsch