• 제목/요약/키워드: Propeller Cavitation

검색결과 170건 처리시간 0.028초

캐비테이션 침식 추정 방법 개발 및 추진기에의 적용 (DEVELOPMENT OF CAVITATION EROSION PREDICTION METHOD AND ITS APPLICATION FOR MARINE PROPELLER)

  • 박선호;이신형
    • 한국전산유체공학회지
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    • 제18권3호
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    • pp.94-101
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    • 2013
  • In the present study, a practical method to predict cavitation erosion, which caused a critical damage on hydraulic machineries, was developed. Impact and critical velocities were defined to develop a practical method for the prediction of cavitation erosion. To develope the practical method, the computational fluid dynamics (CFD) was introduced. Cavitating flows with erosion in a converging-diverging nozzle and around a hydrofoil were simulated by developed and validated code. Based on the CFD results, the cavitation erosion coefficient was derived by a curve fitting method. The cavitation erosion coefficient was formulated as the function of the cavitation and Reynolds numbers. A cavitating flow in an axisymmetric nozzle followed by radial divergence was simulated to validate the developed practical method. For the application to a propeller, a cavitating flow around a propeller was simulated. Predicted damage extent showed similar with damaged full-scale propeller blade.

8800TEU급 컨테이너선 프로펠러 추진효율 및 캐비테이션 성능향상 연구 (Performance Improvement Study of Propeller Propulsion Efficiency and Cavitation for the 8800TEU Class Container)

  • 안종우;김건도;김기섭;박영하;안해성;정영준;윤지현
    • 대한조선학회논문집
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    • 제54권6호
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    • pp.453-460
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    • 2017
  • In order to investigate propulsion efficiency and cavitation characteristics for expanded area ratio variation of the 8800TEU class container propeller, a series of performance tests were conducted at Large Cavitation Tunnel (LCT) and Towing Tank (TT) in KRISO. The cavitation test of the existing propellers (KP1029 & KP1030) was conducted using FRP model ship in LCT. On the basis of LCT test results, it was required to design propeller with better propulsion efficiency and cavitation performance. Two propellers (KP1171 & KP1172) with decreased expanded area ratio were designed on the basis of KP1029 propeller. The new design propellers showed higher efficiency than KP1029 and reasonable cavitation performance. In the future, they will be applied as the standard propeller for the propeller design of the large container ship. Through the performance test and prediction results for the new design propellers, it is thought that high-load propeller with better propulsion efficiency and cavitation performance will be developed constantly.

RANS simulation of cavitation and hull pressure fluctuation for marine propeller operating behind-hull condition

  • Paik, Kwang-Jun;Park, Hyung-Gil;Seo, Jongsoo
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제5권4호
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    • pp.502-512
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    • 2013
  • Simulations of cavitation flow and hull pressure fluctuation for a marine propeller operating behind a hull using the unsteady Reynolds-Averaged Navier-Stokes equations (RANS) are presented. A full hull body submerged under the free surface is modeled in the computational domain to simulate directly the wake field of the ship at the propeller plane. Simulations are performed in design and ballast draught conditions to study the effect of cavitation number. And two propellers with slightly different geometry are simulated to validate the detectability of the numerical simulation. All simulations are performed using a commercial CFD software FLUENT. Cavitation patterns of the simulations show good agreement with the experimental results carried out in Samsung CAvitation Tunnel (SCAT). The simulation results for the hull pressure fluctuation induced by a propeller are also compared with the experimental results showing good agreement in the tendency and amplitude, especially, for the first blade frequency.

MOERI 캐비테이션 터널의 음향특성 분석 및 추진기 BPF 소음 계측에 관한 연구 (Background Noise Analysis of the MOERI Cavitation Tunnel & Propeller BPF Noise Measurement)

  • 설한신;박철수;김기섭;조용진
    • 대한조선학회논문집
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    • 제44권4호
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    • pp.408-416
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    • 2007
  • This paper summarizes an experimental study on the marine propeller BPF noise. The main objective of this study is to show the worthiness of the noise measurement at the MOERI middle size cavitation tunnel and to acquire useful propeller noise data. Background noise of MOERI(Maritime and Ocean Engineering Research Institute) cavitation tunnel is experimentally analyzed. Experiment carried out in the MOERI cavitation tunnel with wake screen or dummy body, which is simulated the wake. Propeller BPF noise is measured under various operating conditions. In order to secure the reliance of measured propeller noise dada, background noise of each operating conditions are measured and analyzed. The noise characteristics are analyzed according to the operating condition.

수중 프로펠러의 소음 예측에 관한 연구(Part2. 공동 소음) (Numerical Analysis of Underwater Propeller Noise(Part 2 Cavitating Noise))

  • 설한신;이수갑;표상우;서정천
    • 대한조선학회논문집
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    • 제41권2호
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    • pp.33-46
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    • 2004
  • The cavitating noise of underwater propeller is considered numerically in this study. The main purpose of this research is to analyze these noise sources from marine propeller. The approach for investigation is a potential based panel method coupled with acoustic analogy. To predict propeller sheet cavitation noise, the blade surface cavity is considered as a single valued pulsating volume of vapor attached to the blade surface. The time dependent cavity volume data are used for noise prediction. Furthermore, we analyze hydrofoil cavitation bubble behavior and noise using Eulerian/Lagrangian approach. Through this study, we can analyze dominant noise source of marine propeller and provide a basis for proper noise control strategies.

실선관측에 의한 가변추진기의 캐비테이션 초생속도 향상에 관한 연구 (A study on the improvement of cavitation inception speed for controllable pitch propeller in the actual warship)

  • 임용수;조관준;연제길
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권9호
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    • pp.1170-1174
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    • 2014
  • 추진기에서 캐비테이션이 발생되면 효율이 저하되고 진동과 소음이 발생한다. 소음은 캐비테이션이 처음으로 발생되는 시점부터 크게 증가되므로 캐비테이션 초생속도(CIS)를 가능한 높이는 것이 중요하다. 본 논문에서는 가변추진기의 캐비테이션 초기발생 현상을 확인하기 위하여 처음으로 캐비테이션 실선관측을 수행하였다. 관측 결과 가변추진에서 캐비테이션 초기발생은 볼트 캐비테이션으로 확인되어 볼트부위를 개선한 새로운 형상의 가변추진기를 제안하였다. 개선된 가변추진기에서는 볼트 캐비테이션이 전혀 발생되지 않았으며, CIS는 개선 전 가변추진기 보다 약 4.5 노트 향상된 것을 확인하였다. 본 연구 결과는 향후 저소음 가변추진기 개발과 CIS 성능 향상에 매우 유용한 자료로 활용될 것이다.

수중익에서 발생하는 보텍스 유동 가시화 연구 (Study on visualization of vortex flow on hydrofoils)

  • 홍지우;안병권
    • 한국가시화정보학회지
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    • 제19권2호
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    • pp.48-55
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    • 2021
  • In order to design a propeller with high efficiency and excellent cavitation performance, theoretical and experimental studies on the cavitation and noise characteristics according to the blade section shape are essential. In general, sheet cavitation, bubble cavitation, and cloud cavitation are the main causes of hull vibration and propeller surface erosion. However vortex cavitation, which has the greatest influence on the noise level because the fastest CIS in ship propeller, has been researched for a long time and studies have been conducted recently to control it. In this experiment, the development process of cavitation was measured by using three dimensional wings with two different wing section and wing tip shapes, and the noise level at that time was evaluated. In addition, we evaluated the relationship between cavitation inception and hydrodynamic force using three component load cell and we measured the velocity field of wing wake using LDV.

FW-H 방정식을 이용한 선박 추진기 날개통과주파수 소음의 수치예측과 모형시험 검증 (Numerical Prediction of Marine Propeller BPF Noise Using FW-H Equation and Its Experimental Validation)

  • 설한신;박철수;김기섭
    • 한국소음진동공학회논문집
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    • 제26권6_spc호
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    • pp.705-713
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    • 2016
  • Underwater noise produced by ships has been becoming an increasing issue. A dominantly contributing noise source is a ship propeller. Therefore, it is important to predict the propeller noise at the propeller design stages. This study applied the acoustic analogy based on Ffowcs Williams equation for the prediction of the marine propeller BPF noise. A marine propeller BPF noise is investigated experimentally as well as numerically. Propeller BPF noise measurement and propeller cavitation observation tests are performed in the KRISO medium size cavitation tunnel. Numerical prediction schemes of marine propeller BPF noise are presented together with the noise measurement method. Propeller BPF noise predictions and experiments are performed under the various propeller operating conditions including non-cavitating and caveating conditions. Numerical and experimental results are compared and analyzed. It is shown that numerical prediction results are generally in good agreement with the measured data.

프로펠러 캐비테이션의 초기발생과 소음특성에 대한 실험연구 (An Experimental Study on Noise Characteristics of Propeller Cavitation Inception)

  • 이필호;안병권;이창섭;이정훈
    • 대한조선학회논문집
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    • 제48권1호
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    • pp.1-7
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    • 2011
  • Cavitation is the formation of vapour bubbles of a flowing liquid in a region where the pressure of the liquid falls below its vapor pressure. Various types of cavitations are generated on the propeller blades. As cavity bubbles passing the blade are forced to oscillate in size or shape and come to collapse, they cause very strong local acoustic waves in the fluid and radiate noise. Comparing the Sound Pressure Level(SPL) before and after cavitation, SPL increases 2dB per 1 knot increase in ship speed above the cavitation inception speed(CIS). Consequently, the CIS is an important criteria to design silent propellers. In this work, experimental measurements of radiated noise according to various types of cavitations from the model propeller are carried out in a large cavitation tunnel and their acoustical characteristics are extensively investigated.

물 분사를 이용한 프로펠러 날개 끝 보오텍스 캐비테이션 제어 (Propeller Tip Vortex Cavitation Control Using Water Injection)

  • 이창섭;한재문;김진학;안병권
    • 대한조선학회논문집
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    • 제47권6호
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    • pp.770-775
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    • 2010
  • As considerable interests in noise emission from the ships have been increased, control of the propeller cavitation generating vibration and radiating noise is looming large. In general, the tip vortex cavitation is first produced in case of full scale propellers, and noise levels rise dramatically from that moment. In order to reduce induced noise from the tip vortex cavitation and hence increase the cavity inception speed, we propose the mass injection method. Water injected from the propeller tip decreases rotating speed of the tip flow, and it restrains growing the tip vortex cavity. Experimental investigations of the model tests carried out in a large cavitation tunnel show that the tip vortex cavitation is effectively controled by water injection from the propeller tip.