• 제목/요약/키워드: 유동 저항

검색결과 464건 처리시간 0.027초

방조제 누수지점 탐지를 위한 SP및 단극배열 전기비저항탐사의 적용 (Application of SP and Pole-pole Array Electrical Resistivity Surveys to the Seawater Leakage Problem of the Embankment)

  • 송성호;이규상;김진호;권병두
    • 자원환경지질
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    • 제33권5호
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    • pp.417-424
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    • 2000
  • We applied SP monitoring and resistivity surveys using the pole-pole electrode array to seawater leakage problems in the Youngsan estuary dam and the Eoeun embankment to estimate and detect the zone of seawater leakage. The embankment is generally affected by tidal variation and has low resistivity characteristics due to the high saturation of seawater. For this reason, SP monitoring and the pole-pole array resistivity surveys, which are relatively more effective to the conductive media, were carried out to delineate the leakage zones of sea water through the embankment. We checked out electrical conductivity (EC) and temperature variations along the inner part of Youngsan estuary dam to detect the zone of seawater leakage and found that the measured EC value agreed to that of seawater in the leakage zone and the temperature was lower than that of the vicinity of leakage zone. SP monitoring results were coincided with tidal variations at each embankment. At the leakage zones in the Youngsan estuary dam and the Eoeun embankment, SP anomalies are in the range of -60~-85 mV and -20~-50 mV, respectively, and true resistivity values obtained by 2-D inversion are 3~15 ohm-m and below 0.3 ohm-m, respectively. Both SP monitoring and the pole-pole array resistivity method are found to be quite effective for investigation of seawater leakage zones in the embankment.

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난류 채널 내 냉·열판 부착에 의한 마찰저항 감소 (Drag Reduction in Turbulent Channel flow with Periodically Arrayed Heating and Cooling Strips)

  • 윤현식;전호환
    • 대한조선학회논문집
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    • 제42권6호
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    • pp.608-618
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    • 2005
  • A new technique giving significant drag reduction in turbulent shear flows has been proposed by using the buoyancy effect to generate periodic spanwise motion. Such spanwise motion can be obtained by arranging heating and cooling strips periodically aligned in the spanwise direction of a vertical channel, where the streamwise mean flow is perpendicular to the gravity vector The strip size has been changed in order to obtain the optimum size corresponding to the maximum drag reduction. The bulk Reynolds number, $ Re_{m} = U_{m} \delta / \nu \$ is fixed at 2270 while Grashof numbers is changed between $10^{6}$ to $10^{7}$. As Grashof number increases, considerable drag reduction can be obtained, At the highest Grashof number, an optimum strip size of about 250 wail units gives drag reduction of about 35$\%$. The greater the Grashof number, the smaller the strip size attains the maximum drag reduction.

난류 관유동에서 마찰저항감소 첨가제에 대한 펌프와 온도의 영향 (Pump and Temperature Effects on Drag Reducing Additives in Turbulent Pipe Flows)

  • 박성룡;서항석;윤형기
    • 설비공학논문집
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    • 제8권3호
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    • pp.330-337
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    • 1996
  • The effects of pump and temperature on drag reducing characteristics were investigated with a polymer(PAAM : Polyacrylamide) and three kinds of surfactants(CTAC, STAC, Habon-G) in fully developed turbulent pipe flows with various experimental parameters such as additive concentration(30~500ppm), pipe diameter(4.65mm, 10.85mm), Reynolds number($4{\times}10^4{\sim}10^5$) and working fluid temperature($20{\sim}80^{\circ}C$). The pump effect on PAAM was severe such that the drag reduction rates obtained with pump were decreased upto 30% as compared with those obtained with compressed air in 4.65mm test section. The temperature effect on PAAM was noticeably considerable, that is, the higher temperaute, the less drag reduction rate. On the other hand, no significant pump effect on the surfactants was observed. The drag reducing effectiveness of CTAC was totally lost in the temperature ragne of 60 to $80^{\circ}C$, whereas STAC and Habon-G kept their distinct drag reducing capability at a temperature of $80^{\circ}C$. This study clearly elucidated that for DHC application of drag reducing additives, the pump and temperature effects as well as additive concentration and pipe diameter should be carefully taken into consideration.

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Large-Eddy Breakup Device가 수중운동체의 저항에 미치는 영향 (Influence of a Large-Eddy Breakup Device on Drag of an Underwater Vehicle)

  • 김준석
    • 한국군사과학기술학회지
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    • 제22권6호
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    • pp.773-783
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    • 2019
  • A numerical analysis of a turbulent flow with a 'large-eddy breakup device(LEBU)' was performed to investigate the influence of the device on the drag of underwater vehicle using commercial CFD code, FLUENT. In the present study, the vehicle drag was decomposed to skin-friction coefficient(Cf) and pressure coefficient(Cp). The variation of the vehicle Cf and Cp were observed with changing location of the device and Reynolds number. As a result, the device decreased the vehicle Cf because it suppressed the turbulent characteristics behind the device. The larger Reynolds number, the higher reduction effect when the device was placed in front part of, and near the vehicle. On the other hand, the device increased/decreased the vehicle Cp with increasing/decreasing turbulent kinetic energy at recirculating flow region behind the vehicle. The total drag change by the device was caused by Cp rather than Cf.

열 우회 구조를 적용한 GaN 레이저 다이오드 패키지의 열특성 분석 (Thermal Characteristics of a Heat Sink with Bypass Structure for GaN-based Laser Diode)

  • 지병관;이승걸;박세근;오범환
    • 한국광학회지
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    • 제27권6호
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    • pp.218-222
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    • 2016
  • 레이저 다이오드 TO 패키지 내부의 주요 부분과 히트싱크 구조의 열전달 특성을 전산모사를 통해 분석하고, 개선구조의 효율적 적용방안을 제안하였다. 열 병목 현상을 개선하기 위해, 레이저 다이오드 상부에 열 우회를 도모할 수 있는 방열구조물을 설치하는 것을 제안하였고, 열저항 단순모델 기대치와 비교하여 그 우회 효율 개선 정도를 더욱 향상시키는 적용 범위를 파악하였다. 열 병목을 감안하여 방열 도움 구조물을 적절히 추가함에 따라, 통상적인 기대 수준보다 더욱 향상된 열 우회 효율을 얻을 수 있었음을 보고한다.

모형선 시험을 통한 외부경계층 수직 날 배열의 저항저감효과 검증 (Verification of Drag Reduction Effect of Outer-layer Vertical Blades based on Model Test)

  • 이성훈;이인원
    • 한국가시화정보학회지
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    • 제16권3호
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    • pp.26-34
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    • 2018
  • In the present study, an experimental assessment has been made of the drag reducing efficiency of the outer-layer vertical blades, which were first devised by Hutchins(1). A detailed flow field measurements have been performed using 2-D time resolved PIV with a view to enabling the identification of drag reduction mechanism. In addition, an experimental investigation has been made of the applicability of outer-layer vertical blades to real ship model. The arrays of outer-layer vertical blades have been installed onto the flat side and flat bottom of a 300k KVLCC model. A series of towing tank test has been carried out to investigate resistance (CTM) reduction efficiency with various geometric parameters and installed places of blades. The installation of vertical blades led to the CTM reduction of 1.44~3.17% near the service speed.

차체 라디에이터그릴의 형상에 따른 공기 유동해석 (Air Flow Analysis due to the Configuration of Car Body Radiator Grill)

  • 조재웅;한문식
    • 한국기계가공학회지
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    • 제12권3호
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    • pp.21-27
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    • 2013
  • This study is investigated on flow analysis according to grill configuration of radiator. The stream of flow which pass through radiator grill in car body and the contour of pressure distribution are estimated by the basis. As the magnitude of resistance force which flow affects the car body is investigated so that the power reduction can be reduced. As the pressure inside radiator grill is assessed, more efficiency can be investigated in order that the flow rate inside car body can be increased. Model 2 has the most air resistance and model 1 has the least among model 1, 2 and 3. Model 1 has the most air flow rate at inside. There are model 3 and 2 simulated according to flow rate. As the curved surface at radiator grill configuration increases in number, air flow rate becomes distributed uniformly. By considering the effect on air resistance and air flow rate at radiator grill, model 3 becomes the most effective configuration.

평행유동에서 공랭식 열전모듈 냉각시스템의 성능에 관한 연구 (A Study on Performance of Thermoelectric Air-Cooling System in Parallel Flow)

  • 강상우;신재훈;한훈식;김서영
    • 설비공학논문집
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    • 제23권6호
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    • pp.421-429
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    • 2011
  • Experimental and theoretical studies on cooling performance of two-channel thermoelectric air-cooling system in parallel flow are conducted. The effects of operating temperature to physical properties of thermoelectric module (TEM) are experimentally examined and used in the analysis of an air-cooling system considering thermal network and energy balance. The theoretical predicted temperature variation and cooling capacity are in good agreement with measured data, thereby validating analytic model. The heat absorbed rate increases with increasing the voltage input and decreasing thermal resistance of the system. The power consumption of TEM is linearly proportional to mean temperature differences due to variations of the physical properties on operation temperature of TEM. Furthermore thermal resistance of hot side has greater effects on cooling performance than that of cold side.

플랜트 및 선박의 액체용 우량제어밸브 설계에 관한 연구(II) (A Study on the Design of Liquid Flow Control Valves for the Pants and Ships(II))

  • 최순호;배윤영;김태한;한기남;주경인
    • Journal of Advanced Marine Engineering and Technology
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    • 제19권2호
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    • pp.1-9
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    • 1995
  • The processing paper has devoted to the theory of the flow equations, the basic derivative procedure, the meaning of a valve flow coefficient $C_v$, the valve Reynolds R$R_{ev}$ and its application for liquid control valves, which applicable under the condition of a non-critical flow and the case of piping geometry factor $F_p$=1.0. However there is no information on the effects of fittings, a critical flow and the flow resistance coefficient of a valve equivalent to that of pipe which is conveniently used in the piping design. Since the piping systems of plants or ships generally contain various fittings such as expanders and reducers due to different size between pipes and valves and there may occur a critical flow, that a mass flowrate is maintained to be constant, due to the pressure drop in a piping when a liquid is initially maintainder ar a saturated temperature or at nearby corresponding to upstream pressure, system designer should have a knowledge of the effect to flow due to fittings and the critical flow phenomenon of a liquid. This study is performed to inform system designers with the critical flow phenomenon of a liquid, a valve resistance coefficient, a valve geometry factor and their applications.

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감압용 배수탱크내의 분기형 증기분사기의 유동특성에 관한 연구 (A Study on Flow Characteristics of Branch Type Sparger in Drain Tank for Depressurization)

  • 김광추;박만흥;박경석
    • 설비공학논문집
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    • 제13권5호
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    • pp.356-367
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    • 2001
  • A numerical analysis on branch type sparger in drain tank for depressurization is performed to investigate the flow characteristics due to the change of design factor. As the result of this study, sparger\\`s flow resistance coefficient(K) is 3.53 at the present design condition when engineering margin for surface roughness is considered as 20%, and flow ratio into branch pipe ($Q_s/Q_i$) is 0.41. The correlation for calculating flow resistance coefficients as design factor is presented. Flow resistance coefficient is increased as section area ratio of branch pipe for main pipe and outlet nozzle diameter of main pipe decreasing, but the effects of branch angle and inlet flow rate of main pipe are small. As the change rate of ($Q_s/Q_i$)becomes larger, the change rate of flow resistance coefficient increases. The rate of pressure loss has the largest change as section area ratio changing. The condition of maximum flow resistance in sparger is when the outlet nozzle diameter ratio of main pipe ($D_e/D_i$) is 0.167, the section area ratio ($A_s/A_i$) is 0.1 and the branch angle ($\alpha$) is 55^{\circ}$.

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