• Title/Summary/Keyword: 횡류

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A study on the effective fire and smoke control in transverse oversized exhaust ventilation (횡류식 선택대배기환기에서의 배연특성에 관한 연구)

  • Han, Sang-Pil;Jeon, Yong-Han
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.13 no.6
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    • pp.451-462
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    • 2011
  • The smoke control system plays the most important role in securing evacuation environment when a fire occurs in road tunnels. Smoke control methods in road tunnels are classified into two categories which are longitudinal ventilation system and transverse ventilation system. In this study it is intended to review the characteristics of smoke behavior by performing numerical analysis for calculating the optimal smoke exhaust air volume with scaled-model and simulation when a fire occurs in tunnels in which transverse ventilation is applied, and for obtaining the basic data required for the design of smoke exhaust systems by deriving optimal smoke exhaust operational conditions for various conditions. As a result of this study, when the critical velocity in the tunnel is 1.75 m/s and 2.5 m/s, the optimal smoke exhaust air volume has to be more than $173m^3/s$, $236m^3/s$ for the distance of the smoke moving which can limit the distance to 250 m. In addition, in case of uniform exhaust the generated smoke is effectively taken away if the two exhaust holes near the fire region are opened at the same time.

A Numerical Study on Characteristics of Smoke Exhaust in Road Tunnel Fires for Different Ventilation System (터널 화재 시 환기 방식에 따른 배연 특성의 수치해석 연구)

  • Kim, Jong-Yoon;Yoo, Ji-Oh
    • Fire Science and Engineering
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    • v.22 no.3
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    • pp.201-207
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    • 2008
  • In this study, three Dimensional CFD simulations were carried out to investigate the effective smoke extraction system in bi-directional road tunnel fires using FLUENT. Characteristics of transverse system with big size extraction port or with uniform extraction port, semi-transverse system and longitudinal system for smoke extraction system were analyzed. Air velocity, port size, and operating method were used with variable. Distributions of smoke spread, CO was analyzed. As a result, the transverse ventilation system with big size port was found to be more effective than the uniform ports for bi-directional road tunnel.

A study on Parallel running Hydroelectric power Generation breakdown through Reactive Current (무효횡류에 의한 병렬 운전 수력발전소 고장에 관한 연구)

  • Ha, Sung-Jong;Kim, Ji-Chan;Ahn, Jae-Hu;Byeon, Gyu-Yong;Pi, In-Seop;Ye, Cheol-Hae;Jeong, Ho-Un
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.214-215
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    • 2011
  • 2대의 교류발전기 G1과 G2가 병렬운전 중 일 때 내부 기전력 E1, E2는 같은 위상이지만, 크기가 E1>E2로 될 때 두 발전기 사이에는 전위차가 있으므로 횡류 Ic가 흐르게 된다. 남강수력발전소는 주변압기(15MVA, 3.45/66kV) 한대에 수차발전기(7MVA) 2대가 병렬로 운전 중인데, 남강수력 제1호 수차발전기 AVR 시스템의 고장(RS 1기판)으로 G1 발전기의 내부 유기전압과 G2 발전기의 내부 유기전압에 차가 생기고, 이 양자의 차 전압을 전원으로 하여 발전기 G1과 G2를 환류하는 전류가 발생하여 발전 기동 중 비상정지 하였다. 본 논문에서는 고장원인 분석과정 및 AVR 시스템 보수 전 후 파형 비교 및 사고원인을 논하고자 한다.

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Performance and Internal Flow Analysis on the 80kW-Class Cross-Flow Hydro Turbine with the Variation of Effective Head (유효낙차에 따른 80kW급 횡류수차의 성능 및 내부유동 해석)

  • Choi, Young-Do;Lim, Jae-Ik;Lee, Young-Ho
    • Journal of Advanced Marine Engineering and Technology
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    • v.34 no.5
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    • pp.703-710
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    • 2010
  • Recently, small hydropower attracts attention because of its clean, renewable and abundant energy resources to develop. However, suitable turbine type is not determined yet in the range of small hydropower and it is necessary to study for the effective turbine type. Therefore, a 80kW-Class cross-flow turbine is adopted in this study because of its simple structure and high possibility of applying to small hydropower. The result shows that as effective head increases, tangential and radial flow velocities increase and thus, the increased tangential velocity contributes to the increase of angular momentum and output torque.

CFD Analysis on the Performance and Internal Flow of a Micro Cross-Flow Hydro Turbine in the Range of Very Low Specific Speed (극저비속도 영역 마이크로 횡류수차의 성능 및 내부유동 수치해석적 연구)

  • Choi, Young-Do;Son, Sung-Woo
    • The KSFM Journal of Fluid Machinery
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    • v.15 no.6
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    • pp.25-30
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    • 2012
  • Renewable energy has been interested because of fluctuation of oil price, depletion of fossil fuel resources and environmental impact. Amongst renewable energy resources, hydropower is most reliable and cost effective way. In this study, to develop a new type of micro hydro turbine which can be operated in the range of very low specific speed, a cross-flow hydro turbine with simple structure is proposed. The turbine is designed to be used at the very low specific speed range of hydropower resources, such as very high-head and considerably small-flow rate water resources. CFD analysis on the performance and internal flow characteristics of the turbine is conducted to obtain a practical data for the new design method of the turbine. Results show that optimized arrangement of guide vane angle and inner guide angle can give contribution to the turbine performance improvement.

파력발전용 수력터빈 성능시험을 위한 파랑수조의 유동장 수치해석

  • Jo, Yeong-Jin;Choe, Yeong-Do;Kim, Yu-Taek;Lee, Yeong-Ho
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2007.12a
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    • pp.357-359
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    • 2007
  • 해양에너지원 중에서 파랑은 모든 해역에 폭넓게 분포하므로 가용에너지원이 풍부하고 에너지를 회수하기 위한 장치를 설치할 수 있는 해역 또한 광범위하며 반도의 지형을 지닌 우리나라의 연안 해역에 대규모로 활용이 가능한 에너지 자원중 하나이다. 본 연구는 새로운 방식인 파력발전용 횡류형터빈인 케이슨 내장형 횡류터빈을 개발하기에 앞서 파랑수조의 왕복운동을 CFD해석을 통하여 구현하는 것이다.

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파력 발전용 횡류형 수력터빈의 개발

  • Kim, Chang-Gu;Choe, Yeong-Do;Kim, Yu-Taek;Lee, Yeong-Ho
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2007.12a
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    • pp.360-362
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    • 2007
  • 해양에너지는 자원량이 무한하고 무공해이기 때문에 미래의 중요한 대체에너지의 하나로 그 역할이 기대되고 있다. 세계적으로 파력, 조력, 해류, 해상풍력 등의 신재생에너지 이용 방안이 지속적으로 연구개발 되고 있다. 이중 파력은 모든 해역에 폭넓게 분포하므로 가용 에너지원이 풍부하고 설치 해역 또한 광범위하여 우리나라의 연안 해역에 대규모로 활용이 가능하다. 본 연구는 이와같은 파랑에너지를 이용하여 전기로 변환하는 파력 발전용 횡류형터빈의 개발을 하고자 한다.

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Performance Improvement of Very Low Head Cross Flow Turbine with Inlet Open Duct (입구 개방형 덕트를 적용한 초저낙차 횡류수차의 성능향상)

  • Chen, Zhenmu;Singh, Patrick Mark;Choi, Young-Do
    • The KSFM Journal of Fluid Machinery
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    • v.17 no.4
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    • pp.30-39
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    • 2014
  • The cross flow turbine is economical because of its simple structure. For remote rural region, there are needs for a more simple structure and very low head cross flow turbines. However, in this kind of locations, the water from upstream always flows into the turbine with some other materials such as sand and pebble. These materials will be damage to the runner blade and shorten the turbine lifespan. Therefore, there is a need to develop a new type of cross flow turbine for the remote rural region where there is availability of abundant resources. The new design of the cross flow turbine has an inlet open duct, without guide vane and nozzle to simplify the structure. However, the turbine with inlet open duct and very low head shows relatively low efficiency. Therefore, the purpose of this study is to optimize the shape of the turbine inlet to improve the efficiency, and investigate the internal flow of a very low head cross flow turbine. There are two steps to optimize the turbine inlet shape. Firstly, by changing the turbine open angle along with changing the turbine inlet open duct bottom line (IODBL) location to investigate the internal flow. Secondly, keeping the turbine IODBL location at the maximum efficiency achieved at the first step, and changing the turbine IODBL angle to improve the performance. The result shows that there is a 7.4% of efficiency improvement by optimizing turbine IODBL location (open angle), and there is 0.3% of efficiency improvement by optimizing the turbine IODBL angle.