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몰수체의 실린더 관 내부 이동시 작용력 예측에 대한 실험적 접근Experimental Approach for Estimation of Hydrodynamic Force acting on a Submerged Streamlined Body translating in a One-end-opened Cylindrical Tube

Other Titles
Experimental Approach for Estimation of Hydrodynamic Force acting on a Submerged Streamlined Body translating in a One-end-opened Cylindrical Tube
Authors
여동진김연규김동훈
Issue Date
1-4월-2012
Publisher
대한조선학회
Keywords
Hydrodynamic force; Submerged streamlined body; One-end-opened cylindrical tub; Load cell; One-hole pitot tube
Citation
대한조선학회논문집, v.49, no.2, pp 203 - 211
Pages
9
Journal Title
대한조선학회논문집
Volume
49
Number
2
Start Page
203
End Page
211
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/8131
Abstract
The main object of this experiment is to estimate the hydrodynamic forces acting on a submerged streamlined body placed in a one-end-opened cylindrical tube moving with certain translational velocity. The best experimental design for this object is mimicking real situation, however sizes of model body and cylinder tube are just the same as those of real, for avoiding scale effects, mimicking real situation is not realizable. Hence, in this experiment, target body and cylindrical tube were designed to be towed with varying body position relative to cylindrical tube. For measuring hydrodynamic forces and flow velocity in the cylindrical tube, six one-component load cells and several one-hole Pitot tubes were used. Several conditions were checked with various end-plates those had different opening areas. Experiment results show that forces and flow velocity had different tendency with those expected, and the presence of a end-plate slows down the flow velocity in the cylindrical tube and affects pressure field in the tube to push the model submerged body forward of the tube. This tendency grows with decreasing opened area.is object is mimicking real situation, however sizes of model body and cylinder tube are just the same as those of real, for avoiding scale effects, mimicking real situation is not realizable. Hence, in this experiment, target body and cylindrical tube were designed to be towed with varying body position relative to cylindrical tube. For measuring hydrodynamic forces and flow velocity in the cylindrical tube, six one-component load cells and several one-hole Pitot tubes were used. Several conditions were checked with various end-plates those had different opening areas. Experiment results show that forces and flow velocity had different tendency with those expected, and the presence of a end-plate slows down the flow velocity in the cylindrical tube and affects pressure field in the tube to push the model
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