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035 _a.b10135042
099 9 _aAIT Thesis no. 249
100 1 _aKung, Teliang
245 1 0 _aCharacteristics of flow past circular disk placed near the end of a circular pipe
260 _aBangkok :
_bAsian Institute of Technology,
_c1969
300 _a84 p.
490 1 _aThesis ;
_vno. 249
500 _aA thesis submitted in partial fulfillment of the requirements for the degree of Master of Engineering of the Asian Institute of Technology, Bangkok, Thailand.
502 _aThesis (M.Eng.) - Asian Institute of Technology, 1969
520 _aCharacteristics of a flow past a circular plate placed near the end of a pipe was investigated. The theoretical solutions were obtained from the solutions of the two-dimensional counterpart under the assumption that the final line integration in the two-dimensional case was replaced by the corresponding surface integration. The equations expressing the jet deflection angle, the ratio between the velocity of the uniform flow in the pipe to the velocity of jet, and the coefficient of hydrodynamic drag were obtained as functions of the boundary geometry. The experiments were conducted to verify the theoretical equations. The experimental results for the jet deflection angle and the velocity ratio were found to be less than the theoretical values. However, the trends of the theoretical and experimental curves were very similar. The discrepancies between the theoretical and experimental results of the deflection angle and the velocity ratio were found to be approximately constant for all the values of the dimensionless parameters representing the boundary geometry. Empirical equations were also developed to relate the theoretical and experimental values of the jet deflection angle and the velocity ratio.
650 0 _aHydraulics
700 1 _aArbhabhirama Anat,
_eChairperson
700 1 _aAckermann, Norbert L.,
_eExamination Committee
700 1 _aSilvester, Richard,
_eExamination Committee
710 2 _aAsian Institute of Technology,
_eScholarship Donor
810 2 _aAsian Institute of Technology.
_tThesis ;
_vno. 249
856 _3Full-Text
_uhttp://203.159.5.9/ait-thesis/detail.php?q=B24665
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