• 제목/요약/키워드: Offshore Installation

검색결과 227건 처리시간 0.027초

직교배열실험 방법 기반 해양플랜트 플로트오버 설치 공법용 수동형 DSF의 구조설계 민감도와 메타모델링 평가 (Evaluation on Structure Design Sensitivity and Meta-modeling of Passive Type DSF for Offshore Plant Float-over Installation Based on Orthogonal Array Experimental Method)

  • 이동준;송창용
    • 한국기계가공학회지
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    • 제20권5호
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    • pp.85-95
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    • 2021
  • Structure design sensitivity was evaluated using the orthogonal array experimental method for passive-type deck support frame (DSF) developed for float-over installation of the offshore plant. Moreover, approximation characteristics were also reviewed based on various meta-models. The minimum weight design of the DSF is significantly important for securing both maneuvering performance and buoyancy of a ship equipped with the DSF and guaranteeing structural design safety. The performance strength of the passive type DSF was evaluated through structure analysis based on the finite element method. The thickness of main structure members was applied to design factors, and output responses were considered structure weight and strength performances. Quantitative effects on the output responses for each design factor were evaluated using the orthogonal array experimental method and analysis of variance. The optimum design case was also identified from the orthogonal array experiment results. Various meta-models, such as Chebyshev orthogonal polynomial, Kriging, response surface method, and radial basis function-based neural network, were generated from the orthogonal array experiment results. The results of the orthogonal array experiment were validated using the meta-modeling results. It was found that the radial basis function-based neural network among the meta-models could approximate the design space of the passive type DSF with the highest accuracy.

Experimental investigations on detecting lateral buckling for subsea pipelines with distributed fiber optic sensors

  • Feng, Xin;Wu, Wenjing;Li, Xingyu;Zhang, Xiaowei;Zhou, Jing
    • Smart Structures and Systems
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    • 제15권2호
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    • pp.245-258
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    • 2015
  • A methodology based on distributed fiber optic sensors is proposed to detect the lateral buckling for subsea pipelines in this study. Uncontrolled buckling may lead to serious consequences for the structural integrity of a pipeline. A simple solution to this problem is to control the formation of lateral buckles among the pipeline. This firms the importance of monitoring the occurrence and evolution of pipeline buckling during the installation stage and long-term service cycle. This study reports the experimental investigations on a method for distributed detection of lateral buckling in subsea pipelines with Brillouin fiber optic sensor. The sensing scheme possesses the capability for monitoring the pipeline over the entire structure. The longitudinal strains are monitored by mounting the Brillouin optical time domain analysis (BOTDA) distributed sensors on the outer surface of the pipeline. Then the bending-induced strain is extracted to detect the occurrence and evolution of lateral buckling. Feasibility of the method was validated by using an experimental program on a small scale model pipe. The results demonstrate that the proposed approach is able to detect, in a distributed manner, the onset and progress of lateral buckling in pipelines. The methodology developed in this study provides a promising tool for assessing the structural integrity of subsea pipelines.

반응표면분석법에 의한 해상풍력터빈 최적배치 설계 (Optimal Layout Design of Offshore Wind Turbines by Response Surface Analysis)

  • 김지영;김경열;이준신
    • 한국해안·해양공학회논문집
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    • 제23권2호
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    • pp.163-170
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    • 2011
  • 해상풍력단지 설계과정의 일환으로 실험계획법의 일종인 반응표면분석법을 이용하여 풍력터빈의 최적 배치조건을 연구하였다. 총 36기 터빈을 해상에 설치한다는 가정 하에 터빈들의 행렬조합, 행간 및 열간거리를 반응표면 분석시의 설계변수로 사용하였으며, 터빈 후류손실에 의해 저하되는 발전효율과 내부 전력선 공사비를 목적함수로 고려하였다. 이러한 설계변수와 목적함수간의 관계를 이용한 반응 최적화 분석을 통해 목표 설계조건을 도출하였으며, 해상풍력단지의 경제성을 확보하기 위한 풍력터빈의 배치조건은 "설계범위에서 행수 및 행간거리를 최소화하고, 최적 열간거리를 산정하여 적용해야 한다"는 결과를 얻을 수 있었다.

해상풍력 발전단지의 전력망 연계방식에 따른 고장전류 분석 (Analysis of fault current in offshore wind farm ccording to the grid connection method)

  • 안진홍;김일환
    • 전기전자학회논문지
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    • 제24권3호
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    • pp.691-698
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    • 2020
  • 해상풍력 발전단지의 전력망 연계방식에 따라 설치비용이나 고장전류의 크기가 달라진다. 그렇기 때문에 단지의 용량과 위치 등을 고려한 효율적인 전력망 연계 방법이 필요하다. 특히 해상풍력 발전단지의 전력케이블은 대부분 비용 및 효율적인 부분을 고려하여 3-core를 사용한다. 케이블 단락 같은 고장이 발생하면 케이블 전체를 교체해야 하므로 수리비용 및 터빈 정지 기간을 고려하였을 때 비용적인 측면에서 상당한 손실이 발생할 수 있다. 따라서 본 논문에서는 제주해상에 설치될 100 MW 풍력단지에 방사형, 링형, 성형 방식을 도입하여 이에 따른 3상 단락고장을 PSCAD/EMTDC 프로그램을 활용하여 컴퓨터 해석을 수행하고, 그 결과를 분석하여 모델 단지에 알맞은 전력망 연계방식을 제안하고자 한다.

Main Engine의 Heavy Spare Parts가 설치된 Engine Room Opening Deck의 방진 설계 사례 (A Vibration Isolation Design for Engine Room Opening Deck around Heavy Spare Parts of the Main Engine)

  • 전용훈;임구섭;정태석
    • 대한조선학회 특별논문집
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    • 대한조선학회 2009년도 특별논문집
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    • pp.93-96
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    • 2009
  • Foundation structure for the main engine heavy spare parts in the engine room is susceptible to resonance problem due to outfitting weight. In addition the deck floor has a large opening for the main engine installation and maintenance, which further weakens the foundation structure. To reinforce the weak structure, two types of approaches have been used; 1) insert an H-pillar below or above the floor and 2) increase the stiffener size. In this paper, the H-pillar approach is used to solve the vibration problem of the foundation structure in the engine room opening area. A commercial program is used to analyze the vibration problem ad to find the location and the size of the H-pillar. Modal test at the quay and on-board vibration measurement during the sea trial have confirmed the validity of inserting an H-pillar below the floor.

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Natural frequency of bottom-fixed offshore wind turbines considering pile-soil-interaction with material uncertainties and scouring depth

  • Yi, Jin-Hak;Kim, Sun-Bin;Yoon, Gil-Lim;Andersen, Lars Vabbersgaard
    • Wind and Structures
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    • 제21권6호
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    • pp.625-639
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    • 2015
  • Monopiles have been most widely used for supporting offshore wind turbines (OWTs) in shallow water areas. However, multi-member lattice-type structures such as jackets and tripods are also considered good alternatives to monopile foundations for relatively deep water areas with depth ranging from 25-50 m owing to their technical and economic feasibility. Moreover, jacket structures have been popular in the oil and gas industry for a long time. However, several unsolved technical issues still persist in the utilization of multi-member lattice-type supporting structures for OWTs; these problems include pile-soil-interaction (PSI) effects, realization of dynamically stable designs to avoid resonances, and quick and safe installation in remote areas. In this study, the effects of PSI on the dynamic properties of bottom-fixed OWTs, including monopile-, tripod- and jacket-supported OWTs, were investigated intensively. The tower and substructure were modeled using conventional beam elements with added mass, and pile foundations were modeled with beam and nonlinear spring elements. The effects of PSI on the dynamic properties of the structure were evaluated using Monte Carlo simulation considering the load amplitude, scouring depth, and the uncertainties in soil properties.

Reliability analysis of laterally loaded piles for an offshore wind turbine support structure using response surface methodology

  • Kim, Sun B.;Yoon, Gil L.;Yi, Jin H.;Lee, Jun H.
    • Wind and Structures
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    • 제21권6호
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    • pp.597-607
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    • 2015
  • With an increasing demand of a renewable energy, new offshore wind turbine farms are being planned in some parts of the world. Foundation installation asks a significant cost of the total budget of offshore wind turbine (OWT) projects. Hence, a cost reduction from foundation parts is a key element when a cost-efficient designing of OWT budget. Mono-piles have been largely used, accounting about 78% of existing OWT foundations, because they are considered as a most economical alternative with a relatively shallow-water, less than 30 m of seawater depth. OWT design standards such as IEC, GL, DNV, API, and Eurocode are being developed in a form of reliability based limit state design method. In this paper, reliability analysis using the response surface method (RSM) and numerical simulation technique for an OWT mono-pile foundation were performed to investigate the sensitivities of mono-pile design parameters, and to find practical implications of RSM reliability analysis.

RDAPS Sea Wind Model을 이용한 해상풍력발전단지 최적 Macro-Siting (Optimum Macro-Siting for Offshore Wind Farm Using RDAPS Sea Wind Model)

  • 이기학;전상옥;박경현;이동호;박종포
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2011년 춘계학술대회논문집
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    • pp.286-290
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    • 2011
  • This paper introduces the optimum macro-siting of a potential site for an offshore wind farm around Jeju Island using the RDAPS sea wind model. The statistical model was developed by analyzing the sea wind data from RDAPS model, and the meso-scale digital wind map was prepared. To develop the high resolution spatial calibration model, Artificial Neural Network(ANN) models were used to construct the wind and bathymetric maps. Accuracy and consistency of wind/bathymetric spatial calibration models were obtained using analysis of variance. The optimization problem was defined to maximize the energy density satisfying the criteria of maximum water depth and maximum distance from the coastline. The candidate site was selected through Genetic Algorithm(GA). From the results, it is possible to predict roughly a candidate site location for the installation of the offshore wind jam, and to evaluate the wind resources of the proposed site.

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Simplified Limit Solutions for the Inclined Load Capacity of a Dynamically Installed Pile in Soft Clay

  • Lee, Junho;Jung, Jong-Suk;Sim, Young-Jong;Park, Yong-Boo
    • 토지주택연구
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    • 제11권2호
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    • pp.87-94
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    • 2020
  • Offshore renewable energy resources are attractive alternatives in addressing the nation's clean energy policies because of the high demand for electricity in the coastal region. As a large portion of potential resources is in deep and farther water, economically competitive floating systems have been developed. Despite the advancement of floating technologies, the high capital cost remains a primary barrier to go ahead offshore renewable energy projects. The dynamically installed piles (DIPs) have been considered one of the most economical pile concepts due to their simple installation method, resulting in cost and time-saving. Nevertheless, applications to real fields are limited because of uncertainties and underestimated load capacity. Thus, this study suggests the appropriate analytical approach to estimate the inclined load capacity of the DIPs by using the upper bound plastic limit analysis (PLA) method. The validity of the PLA under several conditions is demonstrated through comparison to the finite element (FE) method. The PLA was performed to understand how flukes, soil profiles, and load inclinations can affect the inclined load capacity and to provide reliable evaluations of the total resistance of the DIPs. The studies show that PLA can be a useful framework for evaluating the inclined load capacity of the DIPs under undrained conditions.

부유식 파력 장치의 해상운송에 대한 구조 안전성 검토 (Structural Safety Analysis of FPWEC During Sea Transportation)

  • 조규남;김용대;배재형;신승호
    • 한국해안·해양공학회논문집
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    • 제28권4호
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    • pp.250-255
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    • 2016
  • 부유식 진자형 파력발전 장치의 실해역 설치를 위한 예인 시 예상항로의 조류 및 풍속, 유의 파고 등의 모든 환경자료를 수집 및 분류 분석하여 위험구간에 대해 검토하였다. 이를 위하여 기상청 및 국립 해양조사원의 자료들을 수집하였으며 이들 분류 검토된 자료들을 토대로 구조물에 작용하는 외력에 대해 계산하였다. 또한 ANSYS를 이용하여 복합 환경하중이 작용할 때의 FEM 해석에 기초한 상기 부유식 진자형 파력발전 장치의 안전 여부를 확인하였다.