• 제목/요약/키워드: wave generation

검색결과 947건 처리시간 0.035초

차세대 ITS를 위한 WAVE 통신 시스템 성능 평가 (Performance Evaluation of WAVE Communication System for the Next-Generation ITS)

  • 이세연;정한균;신대교;임기택;이명호
    • 한국항행학회논문지
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    • 제15권6호
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    • pp.1059-1067
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    • 2011
  • 차세대 ITS 환경에서는 도로에서 주행 중인 차량을 대상으로 하여 도로변에 RSE와 차량에는 OBU를 설치하여 고속 패킷 V2I 및 V2V 통신 기능, 보안 및 인증 기능, 기지국 셀 간 핸드 오버 기능 지원을 필요로 한다. 이에 따라, 이러한 서비스를 가능하게 하는 무선 통신 기술 역시 최대 200km/h의 차량 속도를 지원하고, 1km의 통신 거리를 가지며, 텍스트, 이미지, 동영상 등 멀티미디어 데이터 전송이 가능하도록 데이터 전송속도를 최소 10Mbps까지 지원하는 한편, 높은 통신 신뢰성을 갖도록 발전하고 있다. 본 논문에서는 IEEE 802.11p PHY/MAC을 기반으로 하는 WAVE 통신시스템을 구현하고, 차세대 ITS 환경에 부합하는지의 여부를 평가하였다.

계류시스템을 가진 부유식 파력발전기의 동적거동 해석 (Dynamic Analysis of Floating Wave Energy Generation System with Mooring System)

  • 최규석;손정현
    • 대한기계학회논문집A
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    • 제37권2호
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    • pp.257-263
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    • 2013
  • 본 논문에서는 파력에너지를 전기에너지로 변환시키는 파력발전기를 다물체 동역학을 이용하여 모델링 하였으며, 계류시스템이 부유식 파력발전기에 미치는 영향에 대해서 분석하였다. 계류시스템이 파력발전기에 미치는 영향을 줄이기 위한 연구가 많이 이루어지고 있다. 구속방정식과 힘 요소를 이용하여 다물체 시스템을 모델링 하였으며, 3 차원 파랑하중을 적용하여 부유체에 작용하는 파력을 모델링 하였다. 파력발전기의 거동과 발전량을 분석하기 의해 상용 다물체 동역학 해석프로그램인 MSC/ADAMS 를 이용하였다. 계류시스템이 있을 때와 없을 때의 결과를 비교하였고, 특히 극한 파랑하중이 작용했을 때의 시뮬레이션을 통해 파력발전기의 안정성을 평가하였다.

고에너지 음향환경시험 튜브 개발 (Development of High Intensity Progressive Wave Tube)

  • 김영기;김홍배;문상무;우성현;임종민
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 춘계학술대회논문집
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    • pp.962-965
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    • 2005
  • A high intensity progressive wave tube is installed at Korea Aerospace Research Institute (KARI) for acoustic environmental tests. The test facility has 700 mm x 800 mm cross-sectional area, and provides acoustic environment of 165 dB over the frequency range of $25Hz{\sim}10,000Hz$. The facility consists of a 6 m long acoustic wave tube, acoustic power generation systems, gases nitrogen supply systems, and acoustic control systems. This paper describes how the basic parameters of the facility and power generation systems are controlled to meet the requirement of the test. The shape and length of the tube has been designed by using the size of test objects and the wave propagation characteristics of the tube. The capacity of acoustic power generation systems is determined by the energy conversion of acoustic wave and the efficiency of acoustic modulators. Moreover, the paper introduces test run results of the tube. Overall of 163dB has been generated by using the test facility.

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파력발전용 횡류형 수력터빈의 성능 및 내부유동 (Performance and Internal Flow of a Cross-Flow Type Hydro Turbine for Wave Power Generation)

  • 최영도;조영진;김유택;이영호
    • 한국유체기계학회 논문집
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    • 제11권3호
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    • pp.22-29
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    • 2008
  • Clean and renewable energy technologies using ocean energy give us non-polluting alternatives to fossil and nuclear-fueled power plants to meet establishment of countermeasures against the global warming and growing demand for electrical energy. Among the ocean energy resources, wave power takes a growing interest because of its enormous amount of potential energy in the world. Therefore, various types of wave power conversion system to capture the energy of ocean waves have been developed. However, suitable turbine type is not normalized yet because of relatively low efficiency of the turbine systems. The purpose of this study is to investigate the internal flow and performance characteristics of a cross-flow type hydro turbine, which will be built in a caisson for wave power generation. Numerical simulation using a commercial CFD code is conducted to clarify the effects of the turbine rotation speed and flow rate variation on the turbine characteristics. The results show that the output power of the cross-flow type hydro turbine with symmetric nozzle shape is obtained mainly from Stage 2. Turbine inlet configuration should be designed to obtain large amount of flow rate because the static pressure and absolute tangential velocity are influenced considerably by inlet flow rate.

WAVESTAR형 파력발전장치의 유압식 2차변환장치의 물리모델 구축에 관한 연구 (A Study on the Physical Model Establishment of Hydraulic Secondary Conversion Device of Wavestar Type Wave Power Generator)

  • 이정희;오재원;하윤진;박지용;천호정;김경환
    • 한국산업융합학회 논문집
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    • 제23권6_2호
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    • pp.999-1006
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    • 2020
  • This study was conducted to develop an efficiency prediction program of a hydraulic secondary energy converter for calculating annual power generation of a Wavestar type wave power generator. Using the period and wave height obtained from the frequency domain analysis, the behavior of the floating body was obtained by assuming the sin function. The piston displacement and speed of the hydraulic cylinder were calculated considering the behavior of the floating body and the shape of the mechanism. The numerical simulation of the hydraulic system was performed by physically modeling the hydraulic cylinders, check valves, hydraulic motors, which are the main devices. In the future, this analysis program will be used to develop a program for estimating annual power generation of a moveable body type wave power generation device.

Numerical simulation of wave and current interaction with a fixed offshore substructure

  • Kim, Sung-Yong;Kim, Kyung-Mi;Park, Jong-Chun;Jeon, Gyu-Mok;Chun, Ho-Hwan
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제8권2호
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    • pp.188-197
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    • 2016
  • Offshore substructures have been developed to support structures against complex offshore environments. The load at offshore substructures is dominated by waves, and deformation of waves caused by interactions with the current is an important phenomena. Wave load simulation of fixed offshore substructures in waves with the presence of uniform current was carried out by numerical wave tank technique using the commercial software, FLUENT. The continuity and Navier-Stokes equations were applied as the governing equations for incompressible fluid motion, and numerical wavemaker was employed to reproduce offshore wave environment. Convergence test against grids number was carried out to investigate grid dependency and optimized conditions for numerical wave generation were derived including investigation of the damping effect against length of the damping domain. Numerical simulation of wave and current interactions with fixed offshore substructure was carried out by computational fluid dynamics, and comparison with other experiments and simulations results was conducted.

스펙트럴 방법에 의한 실해역파 재현 및 파 방향 해석 (Generation of Real Sea Waves based on Spectral Method and Wave Direction Analysis)

  • 이진호;최재웅;강윤태;하문근
    • 대한조선학회논문집
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    • 제42권3호
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    • pp.212-219
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    • 2005
  • Real sea waves in a towing wave basin have been generated using random periodic motion of the segmented wave makers and the wave reflections of sidewalls. Theoretically, the real sea waves can be described by the superposition of many random oblique waves. This paper introduces numerical real sea wave generation in a rectangular wave basin using spectral method that uses a superposition of orthogonal functions which have to satisfy the Laplace equation. Oblique regular waves, long crested irregular waves and real sea waves were simulated and met the requirement of sidewall wave reflection and wave absorption. MLM (Maximum Likelihood Method) and Spatial Fourier Transform were used in order to obtain propagated wave direction characteristics. The estimated results proved the usefulness of the method and the performances showed reasonable directional patterns comparing with generating patterns.

유전자 알고리즘을 이용한 설계파 생성 및 해석 시스템 구축 (Construction of a System for the Generation and Analysis of Design Waves using the Genetic Algorithms)

  • 정성재;신종근;최진
    • 대한조선학회논문집
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    • 제43권1호
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    • pp.96-102
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    • 2006
  • In this study, an optimization routine with genetic algorithms is coupled for the selection of free variables for the production of a control signal for the motion of wave board in the numerical wave tank. An excitation function for the controlling of the wave board is formulated on basis of amplitude modulation for the generation of nonlinear wave packets. The found variables by the optimization serve for the determination of wave board motion both with the computation and with the experiment. The breaking criterion of the water waves is implemented as boundary condition for the optimization procedure. With the analysis of the time registration on the local position in the wave tank the optimization routine is accomplished until the given design wave with defined surface elevation is found. Water surface elevation and associated fields of velocity and pressure are numerically computed.

Leading Depression N (LDN) Wave 조파기법에 기초한 Hybrid Breaker의 지진해일 처오름 저감효과 수치해석 (Numerical Analysis of the Depression Effect of Hybrid Breaker on the Run Up Height due to Tsunami based on the Modified Leading Depression N (LDN) Wave Generation Technique)

  • 조용준;나동규
    • 한국해안·해양공학회논문집
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    • 제27권1호
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    • pp.38-49
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    • 2015
  • 지진해일에 대한 기존의 연구는 이차원 Boussinesq 모형과 Solitary wave에 기초한 수치해석이 그 주류를 이룬다. 최근 Solitary wave에 의한 처오름 높이가 관측치를 하회한다는 인식에 기초하여 지진해일 내습전 해안선이 전진하는 현상의 모의가 가능한 Leading Depression N (LDN) Wave가 제시되었으며 이에 기초하는 경우 보다 정확한 모의가 가능한 것으로 보고된 바 있다. 이러한 성과에도 불구하고 수리모형 실험의 경우 안정적인 Leading Depression N (LDN) Wave의 구현에 상당한 어려움을 겪어왔다. 이러한 이차원 Boussinesq 모형과 삼차원 수리모형 실험에서의 상충된 결과는 이차원 Boussinesq 계열 파랑 모형 유도과정에서 수행되는 파랑의 비선형성과 분산성이 균형을 이룬다는 가정과 이로 인해 다소 과소하게 평가된 분산성에 기인하는 것으로 판단된다. 이러한 인식에 기초하여 본고에서는 삼차원 수치수조에서 비교적 안정적인 LDN 파형의 조파가 가능한 수정 조파기법과 Navier Stoke 파랑모형에 기초하여 Hybrid Breaker의 지진해일에 의한 처오름 저감효과를 수치 해석하였다. 파랑모형의 검증은 불규칙 파랑을 대상으로 기 수행된 수리모형 실험결과를 토대로 진행되었으며, 그 결과 비교적 근접한 처오름 높이를 얻을 수 있었다. 세 개의 유수실과 전면 경사면으로 구성된 Hybrid Breaker의 경우 일반 경사제에 비해 H = 5m의 경우 약 13%, H = 6 m의 경우 10%정도의 처오름 저감 효과를 지니는 것으로 모의되었다.

Modeling of internal wave generation near a shelf slope by ocean finite element method

  • Lee, Kwi-Joo;Joa, Soon-Won;Eom, Ki-Chang
    • 수산해양기술연구
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    • 제42권1호
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    • pp.38-43
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    • 2006
  • The 3-D modeling of ocean finite element method(OFEM) using $k-{\varepsilon}$ turbulent model and tetrahedron grids has been used to investigate the internal wave generation during the expansion of the deep water from the open sea to the shelf with a simple shape, which can be widely used in the fields of submarine development, ocean environment and meteorology, etc. In this paper, the detailed configuration of internal wave with its length and height and also the distribution of salinity and turbulent kinematic energy, etc. were derived. It is hoped that this OFEM method can be successfully applied to the numerical calculation of internal wave for and the oceanographic problems (tidal flows around underwater hill, plateau, Georges Bank, etc.) and ocean engineering problems(flow past artificial sea reefs) in future.