• 제목/요약/키워드: Drag anchor

검색결과 22건 처리시간 0.028초

해성 모래지반에서 Drag Embedment Type Anchor Model의 파지 운동 및 파지력에 대한 실험적 연구 (Experimental Study of Embedding Motion and Holding Power of Drag Embedment Type Anchor (DEA) on Sand Seafloor)

  • 이재훈;서병천;신현경
    • 대한조선학회논문집
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    • 제48권2호
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    • pp.183-187
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    • 2011
  • As larger the commercial vessel is, and rougher the marine environment becomes nowadays, drag embedment type anchor (DEA) of more stable performance and higher holding power is requested to be applied on the vessel. But, the performance of DEA has not become well known to academy and industries so far, that the basic study of DEA performance and holding force for the development of new DEA of higher performance is insufficient that required. In this paper, three types of same holding category DEA model (HALL, AC-14, POOL-N, scale 1/10), which are generally applied on the commercial vessel nowadays, were tested by being horizontally dragged on the test tank, on which sand was being floored with sufficient depth, and measured the holding force of each anchor simultaneously using load cell and D/A converter. With the test results, the embedding motion was analyzed to have three different stages and the holding force of each anchor was analyzed with respect to the anchor geometry, such as shape and weight of each type of anchors, and final embedding depth.

Experimental study of embedding motion and holding power of drag embedment type anchor on hard and soft seafloor

  • Shin, Hyun-Kyoung;Seo, Byoung-Cheon;Lee, Jea-Hoon
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제3권3호
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    • pp.193-200
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    • 2011
  • As larger ships and floating offshore structures are, and rougher the marine environment becomes nowadays, a drag embedment type anchor of more stable performance and higher holding power is requested. This paper describes an experimental study of the drag embedding motion and the resultant holding force of three types of drag embedment type anchor model (HALL, AC-14, SEC POOL-N, scale 1/10).

씨앵커의 구성에 따른 수중 안정성에 관한 연구 (As tudy on the underwater stability according to the composition of the sea anchor)

  • 정정모;김형석
    • 수산해양기술연구
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    • 제58권4호
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    • pp.289-298
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    • 2022
  • Sea anchor for fishery is commonly used in jigging fishery and purse seine. The study of sea anchor was studied for improvement of opening efficiency and drag by changing the type of shape and the diameter of vent. However, standard specification of sea anchor is not set and has not been studied for underwater stability. Therefore, this study aimed to improve underwater stability of sea anchor by changing a vent diameter and weight of sinker. The experiment was conducted in flume water tank. The experiment model of sea anchor was made from actual model of sea anchor which is used in fishery by similarity law. The model of sea anchor was designed to different types of vent diameter and weight of sinker in different current speed. The value of movement of side to side (X-axis), drag of sea anchor (Y-axis) and movement of up and down (Z-axis) was measured for 30 seconds. Each value of X, Y, Z-axis was analyzed through t-test and ANOVA analysis to verify that each value had a significant difference according to the difference compositions. There was correlation between the movement of X-axis and Z-axis. The drag of sea anchor was stronger as the current speed increased. However, the larger the vent diameter, the weaker the drag. From the result of the standard deviation, the movement of X-axis was inversely proportional to the vent diameter. However, movement of Z-axis was larger as the weight of sinker was the heaviest or lightest from the result of the standard deviation. These results suggest that the sea anchor should be combined with proper size of the vent diameter and the weight of sinker to improve the stability.

CEL기법을 이용한 앵커 끌림 시뮬레이션에 의한 Rock-berm 설계 (Design of Rock-berm by Anchor Dragging Simulation using CEL Method)

  • 신문범;박동수;서영교
    • 한국해양공학회지
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    • 제31권6호
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    • pp.397-404
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    • 2017
  • In this study, an anchor dragging simulation was performed using the CEL method to design a rock-berm, which is a protection method for submarine cables. In order to simulate an anchor drag, preliminary simulations were first performed to determine the initial anchor penetration depth, anchor drag velocity, drag angle, and distance between the anchor and rock-berm. Based on the preceding simulation results, a safe rock-berm design for protecting the submarine cables was simulated to calculate the anchor penetration depth by the anchor dragging. As a result, the penetration depth of the anchor was found to be shallower in a hard seabed, and the penetration depth was deeper in a soft seabed, the height of the rock-berm was determined according to the physical properties of the seabed.

부이의 특성이 통발어구의 고정력에 미치는 영향 (Effect of the characteristics of buoy on the holding power of trapnet)

  • 이건호;조삼광;김인옥;차봉진;정성재
    • 수산해양기술연구
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    • 제53권4호
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    • pp.309-316
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    • 2017
  • In this paper, numerical modeling is conducted to analyze the tension of an anchor line by varying the size and drag coefficient of a buoy when the trapnet is influenced by the wave and the current simultaneously. A mass-spring model was used to analyze the behavior of trapnet underwater under the influence of waves and current. In the simulation of numerical model, wave height of 3, 4, 5 and 6 m, a period of 4.4 s, and the flow speed of 0.7 m/s were used for the wave and current condition. The drag coefficients of buoy were 0.8, 0.4 and 0.2, respectively. The size of buoy was 100, 50 and 25% based on the cylindrical buoy ($0.0311m^3$) used for swimming crab trap. The drag coefficient of the trapnet, the main model for numerical analysis, was obtained by a circular water channel experiment using a 6-component load cell. As a result of the simulation, the tension of the anchor line decreased proportional to buoy's drag coefficient and size; the higher the wave height, the greater the decrease rate of the tension. When the buoy drag coefficient and size decreased to one fourth, the tension of the anchor line decreased to a half and the tension of the anchor line was lower than the holding power of the anchor even at 6 m of wave height. Therefore, reducing the buoy drag coefficient and size appropriately reduces the trapnet load from the wave, which also reduces the possibility of trapnet loss.

이산와법에 의한 원호형 Sea Anchor의 유동장 수치해석 (Numerical Analysis for Flowfield of a Circular Arc Type Sea Anchor by Discrete Vortex Method)

  • 노기덕;권병국;안희춘
    • 대한기계학회논문집B
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    • 제22권8호
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    • pp.1041-1051
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    • 1998
  • The fluid dynamic properties of a circular arc type sea anchor were calculated by a discrete vortex method. The flow for the surface of the sea anchor was represented by arranging bound vortices at adequate intervals. The simulations were performed by assuming that the separations occur at edges. With time, the drag coefficient was almost constant but the lift coefficient oscillated in a cycle by von Karman's vortex street. As the camber ratios increase, the drag coefficient and Strouhal number were almost constant but the oscillating amplitude of the lift coefficient increased largely.

해상풍력단지 내 공존어업설비 호미닻 성능 검증 실험 및 수치 해석 연구 (Drag Anchor Performance Experiment and Numerical Analysis for Coexistence Fishery Facility in Offshore Wind Farm)

  • 옥수열;김규원;김찬주;원종하;이호엽;경두현
    • 풍력에너지저널
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    • 제14권1호
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    • pp.21-28
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    • 2023
  • This paper investigates the resistance performance of drag anchors used for aqua farms installed in southwestern offshore wind farms in Korea. These anchors have been employed for a long time without any quantitative evaluation. Experimental campaigns were performed at the target site and the results were used to validate the numerical model by changing the penetration depths in the uniformly distributed seabed (i.e., flat). Based on the validated model with good agreement with the experiments (ARE 1.8 %), the resistance of the anchor with different pullout angles was thoroughly examined. It is worth noting that the Coupled Eulerian-Lagrangian (CEL) technique was applied to account for the large deformation of the anchor; Eulerian for the seabed and Lagrangian for the structure. The numerical results indicated that the pullout resistance is vulnerable to horizontal inclined force rather than vertical inclination, implying that the optimum performance is ideally expected to be 0-degree force applied.

Numerical Calculation of Flow Pattern and Fluid Force on a Circular Arc-type Sea Anchor

  • Ro, Ki-Deok;Oh, Se-Kyung
    • Journal of Advanced Marine Engineering and Technology
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    • 제28권8호
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    • pp.1258-1269
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    • 2004
  • The fluid dynamic characteristics of a circular arc type sea anchor were calculated by a discrete vortex method. The flow for the surface of the sea anchor was represented by arranging bound vortices at adequate intervals. The simulations were performed by assuming that the separations occur at edges. With time, the drag coefficient was almost constant but the lift coefficient oscillated in a cycle due to von Karman's vortex street. As the camber ratios increase, the drag coefficient and Strouhal number were almost constant but the oscillating amplitude of the lift coefficient increased largely.

Calculation of Anchor's Terminal Velocity in the Water and Onshore Dropped Heights Using MDM Technique

  • Shin, Mun-Beom;Seo, Young-Kyo
    • Journal of Advanced Research in Ocean Engineering
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    • 제3권2호
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    • pp.59-65
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    • 2017
  • When an anchor is dropped into the sea, there exists a danger of collision on the pipeline and subsea cables in the seabed. This collision could cause huge environmental disasters and serious economic losses. In order to secure the safety of subsea structures such as pipelines and subsea cables from the external impact, it is necessary to estimate the exact external force through the anchor's terminal velocity on the water. FLUENT, a computational fluid dynamic program, was used to acquire the terminal velocity and drag coefficient computation. A half-symmetry condition was used in order to reduce the computational time and a moving deforming mesh technique also adapted to present hydrostatic pressure. The results were examined with the equation based on Newton's Second Law to check the error rate. In this study, three example cases were calculated by stockless anchors of 5.25 ton, 10.5 ton, and 15.4 ton, and for the onshore experiment dropped height was back calculated with the anchor's terminal velocity in the water.

흐름중 부유쓰레기 차단막에 작용하는 장력계산 (Tension calculation on trash curtain in current)

  • 조일형;최학선;유정석
    • 한국해양환경ㆍ에너지학회지
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    • 제4권3호
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    • pp.65-73
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    • 2001
  • 본 논문에서는 현수선 모델에 기초를 둔 해석방법을 사용하여 부유쓰레기 차단막에 작용하는 흐름에 의한 장력 및 항력을 계산하였다. 흐름에 의한 항력우 차단막의 법선방향으로만 작동하여 차단막에 걸리는 장력은 일정하다고 가정하였다. 계산 모델로 차단막이 흐름방향과 대칭으로 설치된 경우와 비대칭으로 설치된 경우를 다루었다. 형상계수와 설치각도와 같은 차단막의 설치형상을 바꿔가면서 차단막에 작용하는 장력과 항력의 변화를 살펴보았다 계산 결과는 형상계수가 증가함에 따라 장력계수도 커지며 형상계수가 큰 범위에서는 장력계수의 증가폭이 커짐을 보여주고 있다 또한 차단막을 흐름방향과 비대칭으로 설치하였을 때 경사각도를 증가시키면 장력계수가 줄어든다는 사실을 발견하였다 계산모델은 한강 지류인 탄천에 설치한 길이 200m의 부유쓰레기 차단막에 적용하였다. 계산결과에 의하면 차단막 양 끝단에 설치한 앵커블록이 견딜 수 있는 최대 흐름속도는 2m/sec이다.

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