• 제목/요약/키워드: Hydrodynamic resistance

검색결과 158건 처리시간 0.027초

모형실험과 수치해석을 이용한 저항 저감형 중층 트롤어구의 성능 해석 (Performance analysis of a low drag generated midwater trawl using the model experiments and the numerical analysis)

  • 김지은;이지훈;박성호;이춘우;박수봉
    • 수산해양기술연구
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    • 제53권2호
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    • pp.115-125
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    • 2017
  • Fuel consumption in fisheries is a primary concern due to environmental effects and costs to fishermen. Much research has been carried out to reduce the fuel consumption related to fishing operations. The fuel consumption of fishing gear in fishing operation is generally related to hydrodynamic resistance on the gear. This research is to propose a low drag generated midwater trawl in terms of the gear design improvement using simulations. The results from the simulation were verified with results that mirrored the model experiments. From the results, the resistance force of the proposed gear decreased to 29% compared to that of the current gear. Furthermore, the gear performance also improved with increased gear mouth compared to the current one. Therefore, the proposed gear will be helpful to reduce the greenhouse gases from fishing operation. It will also contribute to the fishing industry by saving fuel.

Significance of seabed interaction on fatigue assessment of steel catenary risers in the touchdown zone

  • Elosta, Hany;Huang, Shan;Incecik, Atilla
    • Structural Engineering and Mechanics
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    • 제57권3호
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    • pp.403-423
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    • 2016
  • The challenges involved with fatigue damage assessment of steel catenary riser (SCR) in the touchdown zone (TDZ) are primarily due to the non-linear behaviour of the SCR-seabed interaction, considerable uncertainty in SCR-seabed interaction modelling and geotechnical parameters. The issue of fatigue damage induced by the cyclic movements of the SCR with the seabed has acquired prominence with the touch down point (TDP) interaction in the TDZ. Therefore, the SCR-seabed response is critical for reliable estimation of fatigue life in the TDZ. Various design approaches pertaining to the lateral pipe-soil resistance model are discussed. These techniques have been applied in the finite element model that can be used to analyse the lateral SCR-seabed interaction under hydrodynamic loading. This study investigates the sensitivity of fatigue performance to geotechnical parameters through a parametric study. In this study, global analyses are performed to assess the influence of vertical linear seabed springs, the lateral seabed model and the non-linear seabed model, including trench evolution into seabed, seabed normalised stiffness, re-penetration offset parameter and soil suction resistance ratio, on the fatigue life of SCRs in the TDZ.

LPG 선박의 선수 Bulb 형상 비교 Study (A Comparison Study of the Bulbous Bow Shape for LPG Carrier)

  • 이종기;박재상;김성표
    • 대한조선학회 특별논문집
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    • 대한조선학회 2005년도 특별논문집
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    • pp.31-37
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    • 2005
  • An attempt to improve the speed performance through the minimizing in wave resistance has been done by an application of gooseneck and no bulb type to bulbous bow for the DSME 78,500 Class LPG Carrier on the basis of the CFD calculation and comparatives model tests. The hydrodynamic characteristics according to the variation of the shape of Cp-curve, design load water line, frame line and bulbous bow that have an important effect on the wave resistance has been evaluated/calculated by ship-flow code. A wide variety in hull variation have been tried to have a good hull form with three types of fore-body hull forms mainly classified by the shape of bulbous bow. The speed performances for the three final hull forms with different bulbous bows have been evaluated through the model tests.

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Evaluation of sloshing resistance performance for LNG carrier insulation system based on fluid-structure interaction analysis

  • Lee, Chi-Seung;Cho, Jin-Rae;Kim, Wha-Soo;Noh, Byeong-Jae;Kim, Myung-Hyun;Lee, Jae-Myung
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제5권1호
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    • pp.1-20
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    • 2013
  • In the present paper, the sloshing resistance performance of a huge-size LNG carrier's insulation system is evaluated by the fluid-structure interaction (FSI) analysis. To do this, the global-local analysis which is based on the arbitrary Lagrangian-Eulerian (ALE) method is adopted to accurately calculate the structural behavior induced by internal LNG sloshing of a KC-1 type LNG carrier insulation system. During the global analysis, the sloshing flow and hydrodynamic pressure of internal LNG are analyzed by postulating the flexible insulation system as a rigid body. In addition, during the local analysis, the local hydroelastic response of the LNG carrier insulation system is computed by solving the local hydroelastic model where the entire and flexible insulation system is adopted and the numerical analysis results of the global analysis such as initial and boundary conditions are implemented into the local finite element model. The proposed novel analysis techniques can potentially be used to evaluate the structural integrity of LNG carrier insulation systems.

VOB를 이용한 선형 설계 실용화에 대한 연구 (Practical Hull Form Design using VOB)

  • 김현철
    • 한국해양공학회지
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    • 제30권4호
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    • pp.235-242
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    • 2016
  • In general, ship hull form design is carried out in two stages. In the first stage, the longitudinal variation of the sectional area curves is adapted from a similar mother ship to determine the volume distribution in ships. At this design stage, the initial design conditions of displacement, longitudinal center of buoyancy, etc. are satisfied and the global hydrodynamic properties of the structure are optimized. The second stage includes the local designing of the sectional forms. Sectional forms are related to the local pressure resistance in the fore- and aft-body shapes, cargo boundaries, interaction between the hull and propeller, etc. These relationships indicate that the hull sections need to be optimized in order to minimize the local resistance. The volumetric balanced (VOB) variation of ship hull forms has been suggested by Kim (2013) as a generalized, systematic variation method for determining the sectional area curves in hull form design. This method is characterized by form parameters and is based on an optimization technique. This paper emphasizes on an extensional function of the VOB considering a geometrical wave profile. We select a container ship and an LNG carrier to demonstrate the applicability of the proposed technique. Through analysis, we confirm that the VOB method, considering the geometrical wave profile, can be used as an efficient tool in the hull form design for ships.

기선기현강의 연구 1, 재래식 어구의 유구저황과 그물꼴에 관하여 (STUDY ON THE ANCHOVY BOAT SEINE 1. On the Hydrodynamic Resistance and Performance of the Conventional Gear)

  • 이병기;양룡림;서영태;손부일
    • 한국수산과학회지
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    • 제4권3_4호
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    • pp.79-91
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    • 1971
  • 자루 입구의 둘레가 력자망지 150골(75m)되는 권현망어구의 $\frac{1}{10}$ 크기의 모형을 제작하여, 어구의 유분저항과 린망중의 그물꼴에 관하여 실험한 결과 다음과 같은 결론을 얻었다. 1. 모형 어구로부터 환산된 실물어구의 유분저항은 (R은 kg, v는 m/sec) 전저항 $$R_1=30,000\;v^{1.2}\;(0.2{\leqq}v{\leqq}1.0)$$ 자루 저항 $$R_2=16,000\;v^2\;(0.2{\leqq}v{\leqq}0.6)$$ 2. 예망중의 그물꼴은 (1) 오비기(extension wing) 발줄의 전 길이 중, 앞 끝부터 약 $70\%$ 까지는 직선상으로 깊어지며, 해저에 나란한 부분은 안쪽 약 $30\%$ 정도이다. (2) 수비(inside-wing)의 마깥 언저리는 예망속도가 0.2 m/sec이상 되면, 자루와 수비의 연결부 보다 더 뒤로 쏠려서, 어군을 자루로 유도하는 데 합리적인 형상이 아니다. 이것을 시정하기 위해서는, 수비의 깊이 방향의 코스를 $\frac{1}{2}\~\frac{2}{3}$ 정도로 줄이거나, 또는 그물코의 크기를 그런 정로로 줄임과 동시에, 자루 입구에서 오비기 발줄로 가는 힘줄을 넣어서 수비에는 예망장력이 적게 미치도록 하는 것이 좋다고 생각된다. (3) 앞치마(lower bosom)는 예망속도가 0.2m/sec이상 되면, 뒤끝치 들어 올려져서 수심이 깊은 어장에서는 수비에까지 유도된 어군도 이리로 해서 도피할 우려가 있다. (4) 문턱(upper bosom)의 계관 상의 경사 각도는 $35\~40^{\circ}$이다. 이것은 어군을 자루그물로 유도하게 유도하기에는 너무 크다고 보아진다. 따라서, 문턱은 좀 더길게 해서 경사 각도를 작게 하는 것이 좋다고 생각된다. (5) 자루(bag net)의 모양은 예망속도가 0.2m/sec 이상 되면, 뒤쪽이 앞쪽보다 좁아져서, 구성상 앞쪽보다 뒤쪽을 넓게한 의도가 나타나지 않는다. 따라서 자루 그물은 전체 모양이 길다란 원통형이 되게 구성하는 것이 합리적이라고 생각된다.

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전기저항 용접강관의 홈부식에 미치는 유동 해석 (Analysis of Flow on Grooving Corrosion at the Weld of a Carbon Steel pipe made by Electrical Resistance Welding)

  • 김용;장혁;류덕희;김재성;이보영;부준홍
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1-6
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    • 2004
  • Lots of researches were gone already about grooving corrosion mechanism of ERW carbon steel pipe. But there is seldom study for water hammer happened by fluid and acceleration of corrosion rate by incresed flow velocity. Therefore, in this study carried out the analysis based on hydrodynamic and fracture mechanics. Analyzed stress that act on a pipe using ANSYS as a program, and also FLUENT and STAR-CD were used for flow phenomenon confirmation. As the result, fatigue failure is happened by water hammer and corrosion rate was increased because of turbulent flow.

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식생분포에 따른 하도의 통수능 검토를 위한 3차원 모형의 적용 (Application of Three-Dimensional Model to Evaluate Stream Discharge Capacity due to Vegetation)

  • 노준우;이진영;안기홍
    • 환경영향평가
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    • 제20권1호
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    • pp.37-48
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    • 2011
  • Recently, the social and environmental functions of nature river are important due to the increase of expectation for river restoration. So it should be considered the effect of vegetation affecting the conveyance capacity and hydraulic resistance. However, it has not yet proposed a objective standard and modeling method to estimate the effect of conveyance capacity according to vegetaion distribution in the watercourse such as water level or velocity. Therefore, this study simulates the variations of water level and velocity using 3-dimensional hydrodynamic model, EFDC, to consider a conveyance capacity in downstream of the Soyang Reservoir. The simulation results were validated using statistical index such as F-test and T-test. As results, the water level rises about 0.01 to 0.47m and velocity difference are about -0.95m/s to 0.23m/s.

ER 유체의 채널유동에 대한 직접수치해석 (Direct Numerical Simulation of an Electro-Rheological Channel Flow)

  • 조상호;최형권;유정열
    • 대한기계학회논문집B
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    • 제28권1호
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    • pp.72-80
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    • 2004
  • Steady flow of an ER (electro-rheological) fluid in a two-dimensional electrode channel is studied by using FEM. Hydrodynamic interactions between the particles and the fluid are calculated by solving the Navier-Stokes equation combined with the equation of motion for each particle, where the multi-body electrostatic interaction is described by using point-dipole model. Motion of the particles in the ER fluid is elucidated in conjunction with the mechanisms of the flow resistance and the increase of viscosity. The ER effects have been studied by varying the Mason number and volume fraction of particles. These parameters have an influence on the formation of the chains resulting in the changes of the fluid velocity and the effective viscosity of ER fluids.

Effects of Thermal-Carrier Heat Conduction upon the Carrier Transport and the Drain Current Characteristics of Submicron GaAs MESFETs

  • Jyegal, Jang
    • 한국산업정보학회:학술대회논문집
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    • 한국산업정보학회 1997년도 추계학술대회 발표논문집:21세기를 향한 정보통신 기술의 전망
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    • pp.451-462
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    • 1997
  • A 2-dimensional numerical analysis is presented for thermal-electron heat conduction effects upon the electron transport and the drain current-voltage characteristics of submicron GaAs MESFETs, based on the use of a nonstationary hydrodynamic transport model. It is shown that for submicron GaAs MESFETs, electron heat conduction effects are significant on their internal electronic properties and also drain current-voltage characteristics. Due to electron heat conduction effects, the electron energy is greatly one-djmensionalized over the entire device region. Also, the drain current decreases continuously with increasing thermal conductivity in the saturation region of large drain voltages above 1 V. However, the opposite trend is observed in the linear region of small drain voltages below 1 V. Accordingly, for a large thermal conductivity, negative differential resistance drain current characteristics are observed with a pronounced peak of current at the drain voltage of 1 V. On the contrary, for zero thermal conductivity, a Gunn oscillation characteristic is observed at drain voltages above 2 V under a zero gate bias condition.

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