• 제목/요약/키워드: Tidal stream

검색결과 113건 처리시간 0.023초

Topography, Vertical and Horizontal Deformation In the Sulzberger Ice Shelf, West Antarctica Using InSAR

  • Kwoun Oh-Ig;Baek Sangho;Lee Hyongki;Sohn Hong-Gyoo;Han Uk;Shum C. K.
    • 대한원격탐사학회지
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    • 제21권1호
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    • pp.73-81
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    • 2005
  • We construct improved geocentric digital elevation model (DEM), estimate tidal dynamics and ice stream velocity over Sulzberger Ice Shelf, West Antarctica employing differential interferograms from 12 ERS tandem mission Synthetic Aperture Radar (SAR) images acquired in austral fall of 1996. Ice, Cloud, and land Elevation Satellite (ICESat) laser altimetry profiles acquired in the same season as the SAR scenes in 2004 are used as ground control points (GCPs) for Interferometric SAR (InSAR) DEM generation. 20 additional ICESat profiles acquired in 2003-2004 are then used to assess the accuracy of the DEM. The vertical accuracy of the OEM is estimated by comparing elevations with laser altimetry data from ICESat. The mean height difference between all ICESat data and DEM is -0.57m with a standard deviation of 5.88m. We demonstrate that ICESat elevations can be successfully used as GCPs to improve the accuracy of an InSAR derived DEM. In addition, the magnitude and the direction of tidal changes estimated from interferogram are compared with those predicted tidal differences from four ocean tide models. Tidal deformation measured in InSAR is -16.7cm and it agrees well within 3cm with predicted ones from tide models. Lastly, ice surface velocity is estimated by combining speckle matching technique and InSAR line-of-sight measurement. This study shows that the maximum speed and mean speed are 509 m/yr and 131 m/yr, respectively. Our results can be useful for the mass balance study in this area and sea level change.

CFD를 이용한 수평축 조류발전 로터 성능의 기초연구 (Fundamental Study on the HAT Tidal Current Power Rotor Performance by CFD)

  • 조철희;임진영;이강희;채광수;노유호;송승호
    • 신재생에너지
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    • 제5권2호
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    • pp.3-8
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    • 2009
  • Tidal current power system is one of ocean renewable energies that can minimize the environmental impact with many advantages compared to other energy sources. Not like others, the produced energy can be precisely predicted without weather conditions and also the operation rate is very high. To convert the current into power, the first device encountered to the incoming flow is the rotor that can transform into rotational energy. The performance of rotor can be determined by various design parameters including numbers of blade, sectional shape, diameter, and etc. The stream lines near the rotating rotor is very complex and the interference effects around the system is also difficult to predict. The paper introduces the experiment of rotor performance and also the fundamental study on the characteristics of three different rotors and flow near the rotor by CFD.

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Numerical and experimental investigation on the performance of three newly designed 100 kW-class tidal current turbines

  • Song, Mu-Seok;Kim, Moon-Chan;Do, In-Rok;Rhee, Shin-Hyung;Lee, Ju-Hyun;Hyun, Beom-Soo
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제4권3호
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    • pp.241-255
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    • 2012
  • Three types of 100 kW-class tidal stream turbines are proposed and their performance is studied both numerically and experimentally. Following a wind turbine design procedure, a base blade is derived and two additional blades are newly designed focusing more on efficiency and cavitation. For the three designed turbines, a CFD is performed by using FLUENT. The calculations predict that the newly designed turbines perform better than the base turbine and the tip vortex can be reduced with additional efficiency increase by adopting a tip rake. The performance of the turbines is tested in a towing tank with 700 mm models. The scale problem is carefully investigated and the measurements are compared with the CFD results. All the prediction from the CFD is supported by the model experiment with some quantitative discrepancy. The maximum efficiencies are 0.49 (CFD) and 0.45 (experiment) at TSR 5.17 for the turbine with a tip rake.

Rotor dynamic analysis of a tidal turbine considering fluid-structure interaction under shear flow and waves

  • Lass, Andre;Schilling, Matti;Kumar, Jitendra;Wurm, Frank-Hendrik
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제11권1호
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    • pp.154-164
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    • 2019
  • A rotor dynamic analysis is mandatory for stability and design optimization of submerged propellers and turbines. An accurate simulation requires a proper consideration of fluid-induced reaction forces. This paper presents a bi-directional coupling of a bond graph method solver and an unsteady vortex lattice method solver where the former is used to model the rotor dynamics of the power train and the latter is used to predict transient hydrodynamic forces. Due to solver coupling, determination of hydrodynamic coefficients is obsolete and added mass effects are considered automatically. Additionally, power grid and structural faults like grid fluctuations, eccentricity or failure could be investigated using the same model. In this research work a fast, time resolved dynamic simulation of the complete power train is conducted. As an example, the rotor dynamics of a tidal stream turbine is investigated under two inflow conditions: I - shear flow, II - shear flow + water waves.

EVOLUTION OF DEBRIS OF A TIDALLY DISRUPTED STAR BY A MASSIVE BLACK HOLE: DEVELOPMENT OF A HYBRID SCHEME OF THE SPH AND TVD METHODS

  • LEE HYUNG MOK;KIM SUNGSOO
    • 천문학회지
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    • 제29권2호
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    • pp.195-205
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    • 1996
  • The evolution of the stellar debris after tidal disruption due to the super massive black hole's tidal force is difficult to solve numerically because of the large dynamical range of the problem. We developed an SPH (Smoothed Particle Hydrodynamics) - TVD (Total Variation Diminishing) hybrid code in which the SPH is used to cover a widely spread debris and the TVD is used to compute the stream collision more accurately. While the code in the present form is not sufficient to obtain desired resoultion, it could provide a useful tool in studying the aftermath of the stellar disruption by a massive black hole.

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함평만의 간석지 해안지형의 변화 (The Changing Process of the Tidal Landforms in Hampyeung Bay, Southwest Korea)

  • 김남신;이민부
    • 한국지형학회지
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    • 제18권4호
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    • pp.223-233
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    • 2011
  • 본 연구는 함평만의 간석지 해안지형의 분포특징과 그 변화과정이다. 함평만은 하천의 유입이 없는 분지형태와 같은 반폐쇄형 만으로, 외해 만 입구는 좁고, 내해로 가면서 넓어지는 형태이다. 이곳의 퇴적물 공급원은 조류와 연안사면에서 이동된 물질이다. 연구지역의 주요 지형요소는 간석지, 갯골, 조간대사주, 해식애, 해안단구 등이다. 간석지형은 입도조성에 따라 뻘 간석지, 사질혼성 간석지로 분류되었다. 뻘 간석지는 갯벌이 간석지와 연속성을 보이며 완만히 이어지는 해안지역에, 그리고 사질혼성 간석지는 해식애와 해안단구 기저 지역에 발달하였다. 일부 해안 지형에서는 신생대 4기 해수면 변동으로 퇴적된 지층이 확인되었다. 10년간 간석지 입도조성 변화 분석에서 모래는 2%, 실트는 6% 증가하였고, 점토는 9% 감소하였다. 오목형 간석지에는 염생식물이 정착해 있다. 염생식물의 분포 면적 변화는 2001년에 2.4km2에서 2009년에는 9.3km2로 약 4배 확대되었다. 같은 시기 염생식물 분포 지역에서 평균입도는 6.5φ에서 4.5φ로 조립화되는 경향을 보였다.

헬리컬 터빈의 설계인자에 따른 성능 연구 (Parametric Numerical Study on the Performance of Helical Tidal Stream Turbines)

  • 한준선;최다혜;현범수;김문찬;이신형;송무석
    • 한국해양환경ㆍ에너지학회지
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    • 제14권2호
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    • pp.114-120
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    • 2011
  • 조류발전용 다리우스 터빈의 변형된 형태인 헬리컬 터빈의 설계 인자 변화에 따른 성능을 수치해석으로 살펴보았다. 헬리컬 터빈은 수직축 다리우스 터빈을 회전축을 중심으로 상부와 하부를 비틀리게 함으로써 다리우스 터빈의 일반적인 취약점인 초기구동불량과 진동문제를 개선하기 위해 고안된 형태이다. 본 논문에서는 헬리컬 터빈의 비틀림각(Twisting Angle)과 직경대비 높이를 변화시키며 수치해석을 수행하였고, 결과를 바탕으로 최적의 구조를 제안하였다. 3차원 비정상 난류유동해석을 위하여 FLUENT의 RANS방정식과 k-${\omega}$ SST 난류모델을, 격자계 모델링을 위하여 GAMBIT을 이용하였다. 헬리컬 터빈은 적절한 비틀림각에서 양호한 발전효율을 보장하면서 진동을 유발하는 회전력 변화의 진폭을 최소화 할 수 있음을 확인하였고, 효율의 최대가 확보되는 터빈의 최소 높이를 발견하였다.

남해안 봉강천과 미룡천 하구에서 기수갈고둥의 분포 및 서식지 환경 특성 (Habitat Environments and Spatiotemporal Distribution of Clithon retropictum at the Estuaries of Bonggang and Miryoung Streams in the Southern Coast of Korea)

  • 장건강;김민섭;조수근;이원호;김형섭
    • Ocean and Polar Research
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    • 제43권3호
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    • pp.127-140
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    • 2021
  • At the estuaries of Bonggang and Miryong streams in the Korean southern coast, the spatiotemporal distribution and habitat environment of a nerite snail, Clithon retropictum (Gastropoda: Neritidae), which has been assigned as a legally protected species of Korea, were explored. Physicochemical environmental factors such as water temperature, salinity, tidal level distribution as well as biotic environments (chlorophyll-a concentration and epilithic microalgae composition) were monitored every month. The relationships between the environmental factors and spatiotemporal distribution of the nerite snail population were analyzed. Water temperature, salinity, and water level varied by season and lunar tidal rhythm. The spatiotemporal distribution of the nerite snail was mostly related to water salinity. Among epilithic algae which were the priority prey of snails, blue-green algae and green algae dominated in summer and autumn, while diatoms predominated during winter and spring. Chlorophyll-a concentration was highly and positively correlated with the population density of the nerite snail. The correlation coefficients were different depending on the taxon (Family) of epilithic algae. The mean population density was 302.2 inds m-2 and 271.8 inds m-2 in Bonggang Stream and Miryong Stream, respectively. The egg capsules of the nerite snail in the two habitats were observed from March (in Bonggang Stream) or April (in Miryong Stream) to August, and newly hatched juveniles recruited in the habitats from August were assessed with regard to frequency distributions of shell width. The occurrence of large-sized snails in upper stream reaches of both Bonggang and Miryong indicated the movement of spats from the mouth to the upper reaches during the whole life cycle.

조력에너지 기술 현황 및 경제성 분석 (Status and Feasibility Study on Tidal Energy Technology)

  • 조영범;위정호;김정인
    • 에너지공학
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    • 제19권2호
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    • pp.103-115
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    • 2010
  • 현재 전 세계적으로 신재생에너지의 개발과 이용에 관한 연구가 활발히 진행되고 있다. 조력에너지는 다른 재생에너지의 비해 안정적인 공급이 가능한 고급 자원이다. 본 논문에서는 조력에너지 대한 세계적인 연구 및 개발 동향을 고찰하였고 시화호 조력발전소와 울돌목 조류발전소의 경제성을 분석하였다. 댐 방식 조력발전은 경제성과 기술적 신뢰성이 있으나 상당한 환경적 논쟁이 있다. 반면, 조류식 조력발전은 완전한 상용화를 이루지 못하고 있으나 환경적 폐해가 거의 없는 것으로 평가되어 댐 방식 보다 더 많은 연구가 진행되고 있다. 시화호 조력발전인 경우 발전단가는 약 67.3원/kWh, 여기에 시화호의 조성비용을 추가로 고려할 경우 254원/kWh로 계산되었다. 반면 울돌목 조류발전의 발전단가는 약 400원/kWh로 이는 조류발전 기술이 성장 단계라 장비와 건설비용이 비싸고, 또한 아직 규모의 경제성이 적용되지 못한 결과라 하겠다.

SIMULATIONS OF THE INTERACTING MAGELLANIC SYSTEM

  • GARDINER LANCE T.;NOGUCHI MASAFUMI
    • 천문학회지
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    • 제29권spc1호
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    • pp.93-94
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    • 1996
  • The Galaxy and the Large and Small Magellanic Clouds (LMC and SMC respectively) form a triple system of mutually interacting galaxies. We have carried out a set of N-body simulations on the gravitational interaction of the SMC with the Galaxy and the LMC in order to model prominent features such as the Magellanic Stream, the inter-Cloud Bridge, and the large depth of the SMC which are thought to be products of the tidal interactions among the members of this system.

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