• 제목/요약/키워드: Propeller Blade

검색결과 206건 처리시간 0.026초

BET 기법을 이용한 멀티콥터 프로펠러의 정지비행시 추력 및 토크 계산 (Thrust and torque prediction of multicopter propeller in hovering based on BET method)

  • 이범식;우희승;이도경;장경식;이동진;김민우
    • 항공우주시스템공학회지
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    • 제12권6호
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    • pp.23-31
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    • 2018
  • 본 연구는 BET 기법을 이용하여 멀티콥터에 사용되는 프로펠러 두 종류의 정지 비행 시 추력과 토크를 계산하였다. 3차원 형상 측정 장비로 프로펠러의 형상 정보를 추출하였으며 CATIA를 이용하여 에어포일의 단면 형상 데이터를 획득하였다. 추출된 에어포일 형상과 RPM 변화를 고려한 유동조건에 따른 양력 및 항력을 EDISON CFD를 활용하여 구한 다음 BET 기법을 이용하여 추력을 예측하였다. 이때 층류와 난류 두 조건에 대해 계산하여 그 결과를 비교하였다. 계산된 추력 결과를 제작사에서 제공하는 성능 데이터와 JavaProp 프로펠러 성능 예측 소프트웨어의 결과와 비교하였다. 추력의 경우, 9인치 프로펠러의 경우 제작사에서 제공하는 성능은 완전 난류 조건의 결과와 층류 조건 결과의 중간 값에 해당되었으며, 16인치 프로펠러의 경우 난류유동 조건 결과와 근사한 결과를 얻을 수 있었다. 토크는 두 모델 모두 예측값과 제작사의 성능 데이터와 큰 차이를 보였다.

파력발전용 링타입 임펄스터어빈의 성능 해석 (A Study on the Performance of the Ring-type Impulse Turbine for Wave Energy Conversion)

  • 현범수;문재승;홍석원;김기섭
    • 한국해양공학회지
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    • 제20권1호
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    • pp.20-25
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    • 2006
  • This paper deals with the design and aerodynamic analysis of a so-called 'ring-type' impulse turbine for wave energy conversion. Numerical analysis was performed using the CFD cock, FLUENT. The main idea of the proposed turbine rotor was to minimize the adverse effect of tip clearance of the turbine blade; the design was borrowed from a ducted propeller with connected ring tip for special purpose marine vehicles. Results show that the efficiency increases up to $10\%$, depending on flaw coefficient, with the higher flaw coefficient yielding better efficiency. Decrease of input coefficient CA was the main reason for higher efficiency. Performance of ring-type rotor at various design parameters, as well as flaw conditions, was investigated, and the advantages and the disadvantages of the present impulse turbine were also discussed.

A Study on Power Performance of a 1kW Class Vane Tidal Turbine

  • Yang, Changjo;Nguyen, Manh Hung;Hoang, Anh Dung
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권2호
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    • pp.143-151
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    • 2015
  • Recently, tidal current energy conversion is a promising way to harness the power of tides in order to meet the growing demands of energy utilization. A new concept of tidal current energy conversion device, named Vane Tidal Turbine (VTT), is introduced in this study. VTT has several special features that are potentially more advantageous than the conventional tidal turbines, such as propeller type tidal turbines. The purpose of this study on VTT is to analyze the possibility of extracting the hydrokinetic energy of tidal current and converting it into electricity, and evaluate the performance of turbines for various numbers of blades (six, eight and twelve) using Computational Fluid Dynamics (CFD). At various tip-speed ratios (TSR), the six-bladed turbine obtains the highest power and torque coefficients, power efficiency is up to 28% at TSR = 1.89. Otherwise, the twelve blade design captures the smallest portion of available tidal current energy at all TSRs. However, by adding more blades, torque extracted from the rotor shaft of twelve-bladed turbine is more uniform due to the less interrupted generation of force for a period of time (one revolution).

박용프로펠러 생산정보시스템 개발 (Developmen tof a Production lnformation System for Marine Propellers)

  • 박재성;김동수;전차수;박정환;주상윤
    • 한국경영과학회:학술대회논문집
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    • 한국경영과학회/대한산업공학회 2003년도 춘계공동학술대회
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    • pp.194-199
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    • 2003
  • Developed m this research is a production information system for marie propellers. The paper deals with surface modeling and tool path generation modules of the system. Since the input point data may have some errors, the data is examined using the 2nd divided difference. The point data is interpolated to a $G^2$ chord-length spline surface with some end-conditions. The effects of the various end-conditions on the interpolated surface are discussed in the paper. The tool paths for blade, fillet, and boss of the propeller are generated. Some illustrative examples from an industry are presented.

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새로운 실시간 공구방향오차 모델에 기초한 5 축 연동제어 시스템 (5-Axis Cross-Coupling Control System Based on a Novel Real-Time Tool Orientation Error Model)

  • 변재형;지성철
    • 한국정밀공학회지
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    • 제27권8호
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    • pp.48-53
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    • 2010
  • 5-axis CNC machining now is getting popular because it can deal with complex shapes such as impeller, turbine blade and propeller without additional equipment or process, proving a set of various tool orientations. CAM software related to 5-axis machining is being developed quickly so that users can take advantage of potential capacities of 5-axis machine tools. However, only a few researches can be found in the area of control strategy development for 5-axis machining. This paper proposes a 5-axis cross-coupling control system based on a novel tool orientation error model. The proposed tool orientation error model provides accurate information on the tool orientation error in real time, which in turn enables directly controlling the tool orientation accuracy. The proposed control system also employs a contour error model to calculate the contour error and reflect it in the control as well. The accuracy of the proposed tool orientation error model is verified and the performance of the 5-axis cross-coupling control system in terms of both contouring and tool orientation accuracy is evaluated through computer simulations compared with existing 5-axis control systems.

공구경로 및 자세의 선정과 이송률 제어를 통한 임펠러 표면조도 개선에 관한 연구 (A Study on the Improvement of Surface Roughness of Impeller by Selection of Tool Path and Posture and Control of Feedrate)

  • 황종대;오지영;정윤교
    • 대한기계학회논문집A
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    • 제32권12호
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    • pp.1088-1095
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    • 2008
  • 5-axis NC machining has a good advantage of the accessibility of tool motion by adding two rotary axes. It offers numerous advantages such as expanding machining fields in parts of turbo machineries like impeller, propeller, turbine blade and rotor, reasonable tool employment and great reduction of the set-up process. However, as adding two rotary axes, it is difficult to choose suitable machining conditions in terms of tool path, tool posture, feedrate control at a tool tip and post-processing. Therefore in this paper, it is proposed to decide suitable machining condition through an experimental method such as adopting various tool paths, tool postures, and feedrate types. Machining experiment on AL7075 for impeller is performed to define suitable machining condition, and measurement of surface roughness on machined surfaces depended on each machining condition is performed. By defining suitable machining condition, we should have conclusion as improving the surface quality in the aspect of surface roughness and machined shape of surface.

2차원 날개 끝단 형상에 따른 후류 보오텍스 유동 변화에 대한 실험 연구 (Experimental Study on the Vortical Flow Behind 2-D Blade with the Variation of Trailing Edge Shape)

  • 백부근;김기섭;문일성;안종우
    • 대한조선학회논문집
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    • 제48권3호
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    • pp.233-237
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    • 2011
  • In the present experiments, vortical structures behind the hydrofoil trailing edge are visualized and analyzed as an elementary study for propeller singing phenomena. Two sorts of hydrofoil are selected for the measurement of shedding vortices. One was KH45 hydrofoil section and the other is KH45 with the truncated trailing edge that is positioned at X/C = 0.9523(C=chord length). Assuming the Strouhal number of 0.23, the shedding frequencies of vortices are extracted by analyzing the boundary layer thickness and the flow speed. The frequency distribution of shedding vortices is obtained with the variation of angle-of-attack while the flow speed is fixed to 8m/s. The truncation of the trailing edge makes the frequency of shedding vortices about 120Hz lower than that of original trailing edge and makes the vorticity value higher than the original trailing edge.

쌍곡면 패널에의 다이폴 분포 (Dipole Distributions on a Hyperboloidal Panel)

  • 이창섭;서정천
    • 대한조선학회논문집
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    • 제32권2호
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    • pp.32-42
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    • 1995
  • 프로펠러 뒷날과 같이 두께가 아주 얇아지는 경우, 또는 선미에서와 같이 물체 표면의 곡률이 급격하게 변하는 경우 등에서는 기존의 평균평면 패널로 물체의 표면을 대치하며 경계적분 문제를 다루면, leakage 문제를 야기하거나 유동장점이 패널에서 아주 가까이 있을 경우에는 유기속도 포텐셜이 부정확해 지는 등의 문제가 있다. 쌍곡면 패널은 그 위에 분포된 다이폴에 의해 유기되는 포텐셜을 근사화하지 않고 정확하게 계산할 수 있도록 한다. 본 연구는 방곡면에 분포된 균일 밀도의 다이폴에 의해 유기되는 포텐셜을 표현하는 적분식을 수치적으로 계산하기에 유용한 2가지 서로 다른 방법, 즉, Gauss-Bonnet 정리를 이용하여 증명하는 방법과 면적분을 선적분으로 치환하는 방법, 을 유도하고 그 정확성을 소개한다.

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LNG 운반선의 자유수면을 포함한 자항상태 난류유동장의 수치해석 (RANS Computation of Turbulent free Surface Flow around a Self Propelled KLNG Carrier)

  • 김진;박일룡;김광수;반석호
    • 대한조선학회논문집
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    • 제42권6호
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    • pp.583-592
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    • 2005
  • The turbulent free surface flow around a self-propelled KRISO 138K LNG Carrier is numerically simulated using the finite volume based multi-block RANS code, WAVIS developed at HRISO. The realizable k-$\varepsilon$ turbulence model with a wail function is employed for the turbulence closure. The free surface is captured with the Level-Set method and body forces are used to model the effects of a propeller without resolving the detail blade flow. In order to obtain an accurate free surface solution and stable convergence, the computations are executed with a proper fine grid refinement around the free surface and with an adoption of implicit discretization scheme for the Level-Set formulation. The computed velocity vectors at the several stations and wave patterns show a good agreement with the experimental results measured at the KRISO towing tank.

5축가공을 위한 공구경로 및 자세 제어 기술 (The Control Technology of Cutter Path and Cutter Posture for 5-axis Control Machining)

  • 황종대;임은성;정윤교
    • 한국기계가공학회지
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    • 제10권2호
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    • pp.1-8
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    • 2011
  • 5-axis NC machining has a good advantage of the accessibility of tool motion by adding two rotary axes. It offers numerous advantages such as expanding machining fields in parts of turbo machineries like impeller, propeller, turbine blade and rotor, reasonable tool employment and great reduction of the set-up process. However, as adding two rotary axes, it is difficult to choose suitable machining conditions in terms of cutter path and cutter posture at a cutter contact point. Therefore in this paper, it is proposed to decide suitable machining condition through an experimental method such as adopting various cutter paths, cutter postures types. Also, in order to increase the efficiency of 5-axis machining, it is necessary to minimize the cutter posture changes and create a continuous cutter path while avoiding interference. This study, by using an MC-space algorithm for interference avoidance and an MB-spline algorithm for continuous control, is intended to create a 5-axis machining cutter path with excellent surface quality and economic feasibility. finally, this study will verify the effectiveness of the suggested method through verification processing.