• 제목/요약/키워드: 유체구조연성해석

검색결과 178건 처리시간 0.023초

단순형태 세일의 변형에 대한 유체-구조 연성 해석 (Fluid-Structure Interaction Analysis on the Deformation of Simplified Yacht Sails)

  • 박세라;유재훈;송창용
    • 대한조선학회논문집
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    • 제50권1호
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    • pp.33-40
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    • 2013
  • Since most of yacht sails are made of thin fabric, they form cambered sail shape that can efficiently generate lift power by aerodynamic interaction and by external force delivered from supporting structures such as mast and boom. When the incident flow and external force alter in terms of volume or condition, the shape of sail also change. This deformation in shape has impact on the peripheral flow and aerodynamic interaction of the sail, and thus it is related to the deformation of the sail in shape again. Therefore, the precise optimization of aerodynamic performance of sail requires fluid-structure interaction (FSI) analysis. In this study, the simplified sail without camber was under experiment for one-way FSI that uses the result of flow analysis to the structural analysis as load condition in an attempt to fluid-structure interaction phenomenon. To confirm the validity of the analytical methods and the reliability of numerical computation, the difference in deformation by the number of finite element was compared. This study reproduced the boundary conditions that sail could have by rigs such as mast and boom and looked into the deformation of sail. Sail has non-linear deformation such as wrinkles because it is made of a thin fabric material. Thus non-linear structural analysis was conducted and the results were compared with those of analysis on elastic material.

유체-구조 연성해석을 통한 축류펌프의 진동 연구 (A Study of the Vibration of an Axial Flow Pump through FSI Analysis Method)

  • 이보람;윤태종;오원빈;이충우;김학형;정영재;김일수
    • 한국기계가공학회지
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    • 제20권3호
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    • pp.107-112
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    • 2021
  • Pressure, which is a dynamic characteristic of a floodgate, is predicted using an FSI analysis method. A fluid analysis model and a hydrology analysis model were used as analysis models. As a result of the analysis, we found that a warped model has smaller acceleration than a square model. Additionally, this numerical analysis technique was applied to the actual hydrology, and the analysis results were compared with the results of the vibration tests. As a result, we confirmed that there is a small difference between the results of the vibration tests and the results of the FSI analysis. Through this analysis, the applicability and reliability of the FSI analysis method were verified. We concluded that the pressure of a floodgate can be measured through an FSI analysis method.

물성치 적용 기법에 따른 하이브리드 풍력 블레이드 동적특성 해석에 관한 연구 (A Study on Dynamic Characteristics Analysis of Hybrid Wind Power Blades according to Material Properties Method)

  • 강병윤;한정영;홍철현;문병영
    • 한국유체기계학회 논문집
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    • 제15권2호
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    • pp.5-11
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    • 2012
  • In this paper, the heat transfer coefficient measurement techniques using TSP(temperature sensitive paint) were introduced and the results of a comparative study on the heat transfer coefficient measurement by steady state and transient TSP techniques were discussed. The distributions of heat transfer coefficient by a single $60^{\circ}$ inclined impingement jet on a flat surface were measured by both techniques. Tested Reynolds number based on the jet diameter (d) was 30,000 and the distance between jet exit and target plate (L) was fixed at 10d. Results showed that the measured Nusselt number by both techniques indicated significant difference except near the center of impingement jet. Also, the heat transfer coefficients measured by the transient TSP technique were affected by the reference temperature of the jet. Based on the measured data, characteristics of both TSP techniques were analyzed and suggestions for applying them were also given.

유체-구조 연성해석 기반 해저케이블 위해인자의 수중낙하 특성 비교 (Comparison of Underwater Drop Characteristics for Hazard Apparatuses on Subsea Cable Using Fluid-Structure Interaction Analysis)

  • 장경호;김정훈;송창용
    • 한국해양공학회지
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    • 제32권5호
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    • pp.324-332
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    • 2018
  • It is known that damages to the subsea cables used for electric power transmission between islands and countries, including renewable energy from offshore wind power, current, tides, etc., cost much to restore, which causes social and economic losses. Various types of fishing rigs and anchors have been reported to be the greatest hazards to subsea cables. It is possible to design and construct a suitable protection facility for a subsea cable by precisely estimating the underwater behavior of such hazardous apparatuses. In this study, numerical simulations of the underwater behaviors of various hazardous apparatuses were carried out using fluid-structure interaction (FSI) analysis as a basic study to simulate the actual behavior phenomena of hazardous apparatuses in relation to a subsea cable. In addition, the underwater drop characteristics according to the types of hazardous apparatuses were compared. In order to verify the accuracy of the FSI analysis method used in this study, we compared the test results for underwater drops of a steel ball bearing. Stock anchors, stockless anchors, and rocket piles, which were actually reported to be the cases of damage to subsea cables along the southwest coast of Korea, were considered as the hazardous apparatuses for the numerical simulations. Each hazardous apparatus was generated by a Lagrangian model and coupled with the fluid domain idealized by the Eulerian equation to construct the three-dimensional FSI analysis model. The accuracy of the numerical simulation results was verified by comparing them with the analytical solutions, and the underwater drop characteristics according to the types of hazard apparatuses were compared.

인접한 두 수중운동체 주위의 유동 해석을 위한 가상경계법의 적용 (APPLICATION OF AN IMMERSED BOUNDARY METHOD TO SIMULATING FLOW AROUND TWO NEIGHBORING UNDERWATER VEHICLES IN PROXIMITY)

  • 이경준;양경수
    • 한국전산유체공학회지
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    • 제18권1호
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    • pp.49-57
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    • 2013
  • Analysis of fluid-structure interaction for two nearby underwater vehicles immersed in the sea is quite challenging because simulation of flow around them is very difficult due to the complexity of underwater vehicle shapes. The conventional approach using body-fitted or unstructured grids demands much time in dynamic grid generation, and yields slow convergence of solution. Since an analysis of fluid-structure interaction must be based on accurate simulation results, a more efficient way of simulating flow around underwater vehicles, without sacrificing accuracy, is desirable. An immersed boundary method facilitates implementation of complicated underwater-vehicle shapes on a Cartesian grid system. An LES modeling is also incorporated to resolve turbulent eddies. In this paper, we will demonstrate the effectiveness of the immersed boundary method we adopted, by presenting the simulation results on the flow around a modeled high-speed underwater vehicle interacting with a modeled low-speed one.

고온.고압용 벨로우즈 실 밸브의 유동 특성 및 열응력 해석 (Thermal Stress Analysis and Flow Characteristics of a Bellows-Seal Valve for High Pressure and Temperature)

  • 김광수;이종철;김윤제
    • 한국유체기계학회 논문집
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    • 제8권6호
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    • pp.40-46
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    • 2005
  • Because of design and manufacturing costs, it is important to predict an expected life of bellows with component stresses of bellows as its design factors and material characteristics. In this study, numerical analyses are carried out to elucidate the thermal and flow characteristics of the bellows-seal gate and globe valves for high temperature (max. $600^{\circ}C$) and for high pressure (max. $104 kgf/cm^2$) conditions. Using commercial codes, FLUENT, which uses FVM and SIMPLE algorithm, and ANSYS, which uses FEM, the pressure and temperature fields are graphically depicted. In addition, when bellows have an axial displacement, thermal stress affecting bellows life is studied. The pressure and temperature values obtained from the flow analyses are adopted as the boundary conditions for thermal stress analyses. As the result of this study, we got the reasonable coefficients for valve and thermal stress for bellows, compared with existing coefficients and calculated values.

회전익항공기용 연료탱크 슬로싱 시험 수치해석 (Numerical Simulation of Sloshing Test for Fuel Tank of Rotorcraft)

  • 김현기;김성찬
    • 한국산학기술학회논문지
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    • 제17권7호
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    • pp.687-693
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    • 2016
  • 항공기의 가속도 운동이나 급격한 선회는 연료탱크 내부에서 슬로싱(연료 쏠림) 현상을 발생시킨다. 급격한 기동으로 발생하는 슬로싱 현상은 연료탱크 내부에 장착되는 구성품들에 상당한 하중으로 작용될 수 있다. 심각한 상황에서는 연료탱크 내부 구성품 및 배관의 파손이 발생하여 연료탱크 자체의 찢어짐으로도 이어질 수 있다. 따라서, 슬로싱 현상에 대해 연료탱크 내부 구성품이 구조 건전성을 보유하도록 설계되어야만 승무원의 생존성을 향상시킬 수 있다. 이러한 점을 고려하여 연료탱크 내부 구성품의 설계를 위해서는 구성품에 작용하는 슬로싱 하중의 확보가 선행되어야 한다. 본 논문에서는 회전익 항공기용 연료탱크 내부에서 발생할 수 있는 슬로싱 수치해석을 수행하여 내부 구성품에 작용하는 슬로싱 하중을 고찰하였다. 슬로싱 수치해석을 위해 입자법을 기반으로 하는 유체-구조 연성해석을 수행하였고, 미군사 규격(MIL-DTL-27422D)에서 규정하는 시험조건을 수치해석 조건으로 적용하였다. 수치해석 결과로써 슬로싱 현상에 의해 회전익항공기용 연료탱크 내부 구성품에 작용하는 하중과 최대 등가응력을 분석함으로써 유체-구조 연성해석을 통해 슬로싱 하중을 고려할 수 있는 설계 데이터 확보 가능성을 검토하였다.

차세대 터보프롭 항공기용 복합재 최신 프로펠러 설계 및 해석 (The Design and Analysis of Composite Advanced Propeller Blade for Next Generation Turboprop Aircraft)

  • 최원;김광해;이원중
    • 한국유체기계학회 논문집
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    • 제15권6호
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    • pp.11-17
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    • 2012
  • The one way fluid structure interaction analysis on advanced propeller blade for next generation turboprop aircraft. HS1 airfoil series are selected as a advanced propeller blade airfoil. Adkins method is used for aerodynamic design and performance analysis with respect to the design point. Adkins method is based on the vortex-blade element theory which design the propeller to satisfy the condition for minimum energy loss. propeller geometry is generated by varying chord length and pitch angle at design point. Blade sweep is designed based on the design mach number and target propulsion efficiency. The aerodynamic characteristics of the designed Advanced propeller were verified by CFD(Computational Fluid Dynamic) and showed the enhanced performance than the conventional propeller. The skin-foam sandwich structural type is adopted for blade. The high stiffness, strength carbon/epoxy composite material is used for the skin and PMI(Polymethacrylimide) is used for the foam. Aerodynamic load is calculated by computational fluid dynamics. Linear static stress analysis is performed by finite element analysis code MSC.NASTRAN in order to investigate the structural safety. The result of structural analysis showed that the design has sufficient structural safety. It was concluded that structural safety assessment should incorporate the off-design points.

조립식 클립형 비닐하우스의 강풍 및 폭설시 구조 안정성 평가 (An Evaluation of the Structural Stability of a Clip Type Prefabricated Greenhouse under Strong Wind and Heavy Snow Conditions)

  • 노경철
    • 한국산학기술학회논문지
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    • 제15권6호
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    • pp.3423-3428
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    • 2014
  • 본 연구는 폭설 및 강풍 시 조립식 비닐하우스의 구조안정성을 해석하였으며, 내재해 규격 중 가장 엄격한 기준인 적설량 40 cm, 풍속 40m/s를 재해 기준으로 고려하여 적설 하중 및 풍 하중이 비닐하우스 구조에 미치는 영향을 분석하였다. 풍 하중의 경우, 공기역학적 특성에 의해 비닐하우스의 형상에 따른 국부적인 압력 분포 특성이 상이하기 때문에 유체-고체연성 해석 기법을 적용하였다. 적설하중 및 풍하중 해석 결과에서 비닐하우스 하단지지 파이프와 지붕서까래 체결 부분 근처에서 가장 큰 응력 및 변형이 발생하며, 적설 하중에 비해 풍 하중 시 구조 안정성이 다소 취약함을 확인하였다. 따라서 본 연구 결과를 기반으로 지지 파이프의 변형을 최소화 하면서 설치 및 유지보수가 용이한 조립식 연결 클립 설계를 위한 기초자료로 활용할 예정이다.

디퓨저 베인에 의한 공진조건에서의 임펠러 구조 안정성 평가 (Structural Stability Evaluation of Impeller in Resonant condition due to Diffuser vanes)

  • 김용세;공동재;신상준;임강수;박기훈
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2017년도 제48회 춘계학술대회논문집
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    • pp.877-880
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    • 2017
  • 원심압축기 임펠러의 블레이드는 고속회전과 정상유동 압력에 의한 정적하중이 가해진다. 동시에 임펠러와 디퓨저 베인 간 상호작용에 의해 발생하는 비정상 유동의 공력가진력이 공진조건에서 주기적으로 임펠러를 가진함에 따라 임펠러 블레이드의 고주기피로 파손이 발생할 수 있다. 이에 대한 정밀한 구조응답 예측을 위해 ANSYS를 이용한 비정상 유동 해석과 모드해석을 각기 수행하여 공력가진력과 주요 공진조건을 도출하였다. 이 후 공력-구조를 연계하는 단일방향의 강제진동 해석을 수행하고, 결과들을 토대로 고주기피로에 대한 안전도를 평가하였다.

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