• 제목/요약/키워드: cavitation performance

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Performance and Cavitation Analysis on Tidal Current Turbine for Low Water Level Channel

  • Chen, Chengcheng;Choi, Young-Do
    • 한국유체기계학회 논문집
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    • 제17권5호
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    • pp.60-66
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    • 2014
  • Most tidal current turbine designs are focused on medium and large scale for deep sea, less attention is paid in low water level channel, such as the region around the islands and costal sea. This study is to develop a horizontal axis tidal current turbine rotor blade which is applicable to low water level island region in southwest coastal region of Korea. In this study, the hydrofoil NACA63-415 and NACA63-817 are both adopted to analyze. The blade using NACA63-817 showed the higher maximum power coefficient and good performance at small TSR (Tip Speed Ratio), which gives the blade more advantages in operating at lower water level channel, where is characterized by the fast-flowing water. The cavitation pattern of hydrofoil is predicted by the CFD analysis and verified that the NACA63-817 is the appropriate hydrofoil in the test site of tidal current resource and the hydrofoil showed considerable performance in avoiding cavitation.

LCT에서 방향타 동력계를 이용한 평판 및 비틀림 방향타 특성의 실험적 연구 (Experimental Study of the Flat & Twisted Rudder Characteristics Using Rudder Dynamometer in LCT)

  • 안종우;백부근;박영하;설한신
    • 대한조선학회논문집
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    • 제58권6호
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    • pp.391-399
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    • 2021
  • In order to investigate force and cavitation characteristics for the flat & twisted rudders in the Large Cavitation Tunnel (LCT), the rudder dynamometer was designed and manufactured. The measuring capacities of lift, drag and moment are ±1000 N, ±2000 N, and ±150 N-m, respectively. The present dynamometer uses the actuator with a harmonic drive to control the rudder angle without backlash. As the target ship is a military ship with twin shaft, each dynamometer was installed above the port & starboard rudders. After the installation of the model ship with all appendages, the model test composed of rudder force measurement and cavitation observation was conducted for the existing flat rudder & the designed twisted rudder. While the flat rudder showed the big difference of lift & moment between port & starboard, the twisted rudder presented a similar trend. The cavitation of the twisted rudder showed better characteristics than that of the flat rudder. Another set of model tests were conducted to investigate rudder performance by the change of the design propeller. There was little difference in rudder performance for the design propellers with slight geometric change. Through the model test, the characteristics of the flat & twisted rudders were grasped. On the basis of the present study, it is thought that the rudder with better performance would be developed.

5.5MW급 아지무스 추진기(azimuth thruster)에 대한 대형 캐비테이션 터널 모형시험 (Performance Test of 5.5MW Azimuth Thruster Model in LCT(Large Cavitation Tunnel))

  • 백부근;박영하;김기섭;김주인;나윤철
    • 대한조선학회논문집
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    • 제52권1호
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    • pp.34-42
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    • 2015
  • The development of an azimuth thruster which has the function of dynamic positioning and propulsion has been greatly required as the demand of vehicles with it increases. To develop or design a reliable azimuth thruster, it is appropriate that the performance and cavitation observation tests should be conducted in the regime of high Reynolds number. In the present study, to satisfy high Reynolds number condition new dynamometer for a large azimuth thruster is manufactured and arranged in the test section of the Large Cavitation Tunnel (LCT). The test method composed of the open water and the cavitation observation tests is established successfully in LCT, considering the thruster design.

수조 성능 향상을 위한 공동 수조 내 방향 전환부 설계 (First Elbow Design for the Improvement of Tunnel Performance)

  • 부경태;신수철
    • 대한조선학회논문집
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    • 제41권4호
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    • pp.9-16
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    • 2004
  • In the cavitation tunnel, the first corner playes role for the flow direction to execute 90-degree turn. So, energy loss is serious, and the cavitation phenomena well occur in the guide vane surface. In this paper, the flow in the first corner was numerically calculated. From the calculation result, cavitation phenomena mainly occurred in the suction side of the last guide vane and vicinity that vane and tunnel wall adjoin each other. And bubbles occurred from all guide vanes if the flow velocity in the test section reaches the any critical value. We could analogize with our experience in the water tunnel that bubbles that occurred in time not vanish, and become miniature in the flow although the pressure recover. So, they circulate with flow in the tunnel, and come into view in the test section. Therefore, first corner must be designed for bubbles not to appear in the test section according to the flow condition like velocity and pressure demanded by the experiment. We analyzed flow in case that the first elbow configuration was redesigned and some of the existing guides vanes were eliminated. And we presented that first elbow can be easely designed for the improvement of tunnel performance through the computational analysis.

합성곱 신경망을 이용한 프로펠러 캐비테이션 침식 위험도 연구 (A Study on the Risk of Propeller Cavitation Erosion Using Convolutional Neural Network)

  • 김지혜;이형석;허재욱
    • 대한조선학회논문집
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    • 제58권3호
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    • pp.129-136
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    • 2021
  • Cavitation erosion is one of the major factors causing damage by lowering the structural strength of the marine propeller and the risk of it has been qualitatively evaluated by each institution with their own criteria based on the experiences. In this study, in order to quantitatively evaluate the risk of cavitation erosion on the propeller, we implement a deep learning algorithm based on a convolutional neural network. We train and verify it using the model tests results, including cavitation characteristics of various ship types. Here, we adopt the validated well-known networks such as VGG, GoogLeNet, and ResNet, and the results are compared with the expert's qualitative prediction results to confirm the feasibility of the prediction algorithm using a convolutional neural network.

프로펠러 설계 및 선미 부가물 수정에 따른 캐비테이션 초기발생 선속(CIS) 성능 향상 연구 (Study of the Cavitation Inception Speed (CIS) Improvement Through the Propeller Design and the Stern Appendage Modification)

  • 안종우;김건도;백부근;박영하;설한신
    • 대한조선학회논문집
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    • 제60권4호
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    • pp.231-239
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    • 2023
  • In order to improve the propeller Cavitation Inception Speed (CIS) performance, it needs to modify the propeller geometry and the wake distribution that flows into the propeller. In the previous study, the twisted angles of the V-strut were modified to improve propeller CIS, cavitation behavior and pressure fluctuation performances. Then the propeller behind the modified V-strut (New strut) showed better cavitation characteristics than that behind the existing V-strut (Old strut). However, the CIS of Suction Side Tip Vortex (SSTV) and Pressure Side Tp Vortex (PSTV) showed a big difference at behind each V-strut. In this study, the balance design is conducted to minimize the difference between SSTV CIS and PSTV CIS at behind each V-strut. To improve the propeller CIS performance, 1 propeller is designed at behind the old strut and 3 propellers are designed at behind the new strut. The propeller CIS is increased through the balance design and the stern appendage modification. The final propeller CIS is increased about 5.3 knots higher than that of the existing propeller at behind the old strut. On the basis of the present study, it is thought that the better improvement method for the propeller CIS would be suggested.

로켓엔진용 연료펌프의 성능 시험

  • 김대진;홍순삼;최창호;김진한
    • 항공우주기술
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    • 제4권1호
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    • pp.143-149
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    • 2005
  • 로켓엔진용 연료펌프의 수력 성능과 흡입 성능을 관찰하기 위해 연료펌프에 대한 성능시험을 실시하였다. 성능 시험은 수력 성능 시험과 흡입 성능으로 나뉘며 시험의 편의를 위해 상온의 물을 매질로 택하였다. 수력 성능 시험 결과 양정, 효율, 볼류트 압력 분포 등은 상사 법칙을 잘 만족하는 것으로 드러났으나, 이차 유로의 압력 분포는 상사 법칙과 약간의 차이를 보였다. 그리고 플로팅 링 간극을 줄였을 때 펌프의 양정과 효율 모두 좋아지는 것을 확인할 수 있었고, 바이패스 배관의 오리피스 변화는 연료펌프의 효율 변화와 특별한 경향성을 보이지 않았다. 마지막으로 흡입 성능 시험 결과 펌프의 시험 회전수를 높였을 때 펌프의 흡입 성능이 증가하는 것을 관찰할 수 있었다.

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실매질 시험용 터보펌프의 단품 수류시험 (Water tests of pumps for real-propellent tests of turbopump)

  • 김대진;홍순삼;김진선;김진한
    • 항공우주기술
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    • 제8권1호
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    • pp.26-31
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    • 2009
  • 터보펌프 실매질 시험에 사용하기 위해 제작된 3기의 산화제펌프와 1기의 연료펌프에 대한 단품 수류시험을 실시하였다. 수류시험의 시험 영역(유량비, 캐비테이션 수)은 실매질 시험의 작동 영역을 충분히 포함하였으며, 각 펌프는 설계요구조건을 만족하였다. 시험 결과, 제작된 산화제펌프는 내부 형상에 따라 양정이 약 2% 차이가 났으며 효율 및 흡입성능은 거의 차이가 없었다. 연료펌프의 경우 형상이 같았던 이전 모델과 양정과 효율은 비슷하였으나, 흡입성능은 약간 떨어지는 것으로 나타났다.

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Cavitation Surge Suppression of Pump Inducer with Axi-asymmetrical Inlet Plate

  • Kim, Jun-Ho;Ishzaka, Koichi;Watanabe, Satoshi;Furukawa, Akinori
    • International Journal of Fluid Machinery and Systems
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    • 제3권1호
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    • pp.50-57
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    • 2010
  • The attachment of inducer in front of main impeller is a powerful method to improve cavitation performance. Cavitation surge oscillation, however, often occurs at partial flow rate and extremely low suction pressure. As the cavitation surge oscillation with low frequency of about 10 Hz occurs in a close relation between the inlet backflow cavitation and the growth of blade cavity into the throat section of blade passage, one method of installing an axi-asymmetrical plate upstream of inducer has been proposed to suppress the oscillation. The inlet flow distortion due to the axi-asymmetrical plate makes different elongations of cavities on all blades, which prevent the flow from becoming simultaneously unstable at all throat sections. In the present study, changes of the suppression effects with the axial distance between the inducer inlet and the plate and the changes with the blockage ratios of plate area to the cross-sectional area of inducer inlet are investigated for helical inducers with tip blade angles of $8^{\circ}$ and $14^{\circ}$. Then a conceivable application will be proposed to suppress the cavitation surge oscillation by installing axi-asymmetrical inlet plate.

컴퓨터 비전을 이용한 프로펠러 캐비테이션 평가 연구 (Study on estimation of propeller cavitation using computer vision)

  • 이태구;김기성;홍지우;안병권;이경준
    • 한국가시화정보학회지
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    • 제20권3호
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    • pp.128-135
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    • 2022
  • Cavitation occurs inevitably in marine propellers rotating at high speed in the water, which is a major cause of underwater radiated noise. Cavitation-induced noise from propellers rotating at a specific frequency not only reduces the sonar detection capability, but also exposes the ship's location, and it causes very fatal consequences for the survivability of the navy vessels. Therefore cavity inception speed (CIS) is one of the important factors determining the special performance of the ship. In this study, we present a method using computer vision that can detect and quantitatively estimate tip vortex cavitation on a propeller rotating at high speed. Based on the model test results performed in a large cavitation tunnel, the effectiveness of this method was verified.