자항하는 SUBOFF 모형 난류항적 계측 및 실험식 유도Measurement of Turbulent Wake behind a Self-Propelled SUBOFF Model and Derivation of Experimental Equations
- Other Titles
- Measurement of Turbulent Wake behind a Self-Propelled SUBOFF Model and Derivation of Experimental Equations
- Authors
- Shin, Myung soo; 문일성; 나영인; 박종천
- Issue Date
- 2월-2011
- Publisher
- 군사과학기술학회
- Keywords
- Turbulent Wake; Turbulent Intensity; Turbulent Kinetic Energy; Self-propelled SUBOFF Model; CWC experiments
- Citation
- 군사과학기술학회지, v.14, no.3, pp 364 - 371
- Pages
- 8
- Journal Title
- 군사과학기술학회지
- Volume
- 14
- Number
- 3
- Start Page
- 364
- End Page
- 371
- URI
- https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/8271
- Abstract
- This paper presents experimental results and derived experimental equations to
investigate the turbulent wake characteristics generated by the self-propelled SUBOFF
submarine model. A self-propelled SUBOFF model which was assumed as an axial-symmetric
body was used to create wake, and a thin strut was mounted on the topside of the model.
The experiments were conducted in a circulating water channel(CWC), and the hot-film was
used to measure the turbulence in wake cross-section at the distance range of 0.0∼2.0L
from the model. The hot film anemometer measured turbulent velocity fluctuations, and
the time-averaged mean velocity and turbulent intensity are obtained from the acquired
time-series data. Measured results show well the general characteristics of turbulent
intensity, kinetic energy and mean velocity distribution. Also, this paper presents
derived experimental equations, which is extended result to the reference [1]. These
experimental equations show well the general characteristics of the turbulent wake
behind the self-propelled submerged body. axial-symmetric
body was used to create wake, and a thin strut was mounted on the topside of the model.
The experiments were conducted in a circulating water channel(CWC), and the hot-film was
used to measure the turbulence in wake cross-section at the distance range of 0.0∼2.0L
from the model. The hot film anemometer measured turbulent velocity fluctuations, and
the time-averaged mean velocity and turbulent intensity are obtained from the acquired
time-series data. Measured results show well the general characteristics of turbulent
intensity, kinetic energy and mean velocity distribution. Also, this paper presents
derived experimental equations, which is extended result to the reference [1]. These
experimental equations show well the general characteristics of the turbulent wake
behind the self-propelled submerged body.
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