Accelerated motion of a sphere in water
Huang, Teh-shin
Accelerated motion of a sphere in water - Bangkok : Asian Institute of Technology, 1971 - 85 leaves - Thesis ; no. 315 . - Asian Institute of Technology. Thesis ; no. 315 .
A thesis submitted in partial fulfillment of the requirements for the Degree of Master of Engineering in the Asian Institute of Technology, Bangkok, Thailand.
Thesis (M.Eng.) - Asian Institute of Technology, 1971
The investigations of accelerated curvilinear motion of a sphere in water were made. Spheres were launched by e. spring launcher in a water tank. The trajectory of sphere was spotted on film by the use of a camera and a stroboscope. The equation which gives the ballistic trajectory in the air with a non-linear drag tennis used as a theoretical approach to express the trajectory. A relationship between instantaneous Reynolds number and drag coefficient for accelerated motion was compared with that between Reynolds number and drag coefficient for steady-state motion. It is found that the drag measured at non-steady states is larger than that in steady flows.
Hydrodynamics
Accelerated motion of a sphere in water - Bangkok : Asian Institute of Technology, 1971 - 85 leaves - Thesis ; no. 315 . - Asian Institute of Technology. Thesis ; no. 315 .
A thesis submitted in partial fulfillment of the requirements for the Degree of Master of Engineering in the Asian Institute of Technology, Bangkok, Thailand.
Thesis (M.Eng.) - Asian Institute of Technology, 1971
The investigations of accelerated curvilinear motion of a sphere in water were made. Spheres were launched by e. spring launcher in a water tank. The trajectory of sphere was spotted on film by the use of a camera and a stroboscope. The equation which gives the ballistic trajectory in the air with a non-linear drag tennis used as a theoretical approach to express the trajectory. A relationship between instantaneous Reynolds number and drag coefficient for accelerated motion was compared with that between Reynolds number and drag coefficient for steady-state motion. It is found that the drag measured at non-steady states is larger than that in steady flows.
Hydrodynamics

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