• 제목/요약/키워드: South Korea Power System

검색결과 271건 처리시간 0.025초

태양광/풍력 연계 기반의 에너지저장장치 설비계획 모델링 (Energy Storage System Model for Facility Plan Connected with Solar and Wind Power Plant)

  • 이용봉;김정호
    • 전기전자학회논문지
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    • 제19권3호
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    • pp.295-303
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    • 2015
  • 지구 온난화 및 탄소배출권 저감을 위한 대안으로 에너지저장장치(ESS, Energy Storage System)의 중요성을 인식하고 ESS 산업육성을 위한 보급사업 및 인센티브 정책을 추진하고 있다. 우리나라는 2020년까지 ESS 누적 용량 2GW 보급을 추진하고 있다. 이러한 보급정책과 기업들의 기술개발에 따라 시장 확대로 인한 ESS의 배터리 가격이 점차 하락할 전망이다. 본 논문에서는 ESS 기술개발에 따른 ESS 가격 하락에 따른 ESS 보급량 추정을 하였으며, 이에 따라 발생하는 비용의 경제성 분석을 실시하였다. 또한 ESS 종류에 따라 발생할 수 있는 비용 및 ESS와 풍력전원의 연계에 따른 투자비용 분석을 하였으며, ESS보급에 따라 발생할 수 있는 전력판매수익 및 신재생에너지공급인증서 판매수익에 대한 경제성 분석을 실시하였다.

Code development on steady-state thermal-hydraulic for small modular natural circulation lead-based fast reactor

  • Zhao, Pengcheng;Liu, Zijing;Yu, Tao;Xie, Jinsen;Chen, Zhenping;Shen, Chong
    • Nuclear Engineering and Technology
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    • 제52권12호
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    • pp.2789-2802
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    • 2020
  • Small Modular Reactors (SMRs) are attracting wide attention due to their outstanding performance, extensive studies have been carried out for lead-based fast reactors (LFRs) that cooled with Lead or Lead-bismuth (LBE), and small modular natural circulation LFR is one of the promising candidates for SMRs and LFRs development. One of the challenges for the design small modular natural circulation LFR is to master the natural circulation thermal-hydraulic performance in the reactor primary circuit, while the natural circulation characteristics is a coupled thermal-hydraulic problem of the core thermal power, the primary loop layout and the operating state of secondary cooling system etc. Thus, accurate predicting the natural circulation LFRs thermal-hydraulic features are highly required for conducting reactor operating condition evaluate and Thermal hydraulic design optimization. In this study, a thermal-hydraulic analysis code is developed for small modular natural circulation LFRs, which is based on several mathematical models for natural circulation originally. A small modular natural circulation LBE cooled fast reactor named URANUS developed by Korea is chosen to assess the code's capability. Comparisons are performed to demonstrate the accuracy of the code by the calculation results of MARS, and the key thermal-hydraulic parameters agree fairly well with the MARS ones. As a typical application case, steady-state analyses were conducted to have an assessment of thermal-hydraulic behavior under nominal condition, and several parameters affecting natural circulation were evaluated. What's more, two characteristics parameters that used to analyze natural circulation LFRs natural circulation capacity were established. The analyses show that the core thermal power, thermal center difference and flow resistance is the main factors affecting the reactor natural circulation. Improving the core thermal power, increasing the thermal center difference and decreasing the flow resistance can significantly increase the reactor mass flow rate. Characteristics parameters can be used to quickly evaluate the natural circulation capacity of natural circulation LFR under normal operating conditions.

Analysis of the influence of nuclear facilities on environmental radiation by monitoring the highest nuclear power plant density region

  • Lee, UkJae;Lee, Chanki;Kim, Minji;Kim, Hee Reyoung
    • Nuclear Engineering and Technology
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    • 제51권6호
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    • pp.1626-1632
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    • 2019
  • Monitoring of environmental radioactivity is essential for ensuring the radiological safety of residents who live near nuclear power plants. Ulsan, South Korea, is surrounded by 16 nuclear power plants, the highest density in the country. In addition, the city contains facilities for conducting radiological nondestructive testing and using radioisotopes for medical purposes. It makes the confirmation of radiological safety particularly necessary. In this study, sampling points were selected based on regional characteristics, and surface water samples were pretreated and analyzed for gross beta and gamma radiation levels. In addition, the distribution of the city's gamma dose rate was determined using a mobile monitoring system and distribution visualization program. The results showed that there is no effect on the gross beta and gamma nuclides of artificial radionuclides, and the gamma dose rate of the entire region did not exceed the environmental radiation level in South Korea overall, confirming the radiological safety of the city.

해상풍력발전을 위한 연안지역의 난류에너지 특성 수치연구 (Numerical study on the characteristics of TKE in coastal area for offshore wind power)

  • 유정우;이순환;이화운
    • 한국환경과학회지
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    • 제23권9호
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    • pp.1551-1562
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    • 2014
  • To clarify the characteristics of TKE (Turbulence Kinetic Energy) variation for offshore wind power development, several numerical experiments using WRF were carried out in three different coastal area of the Korean Peninsula. Buoyancy, mechanical and shear production term of the TKE budget are fundamental elements in the production or dissipation of turbulence. Turbulent kinetic energy of the south coast region was higher than in other sea areas due to the higher sea surface temperature and strong wind speed. In south coast region, strong wind passing through the Korea Strait is caused by channelling effect of the terrain of the Geoje Island. Although wind speed is weak in east coast, because of large difference in wind speed between the upper and lower layer, the development of mechanical turbulence tend to be predominant. Since lower sea surface temperature and smaller wind shear were detected in west coastal region, the possibility of turbulence production not so great in comparison with other regions. The understanding of the characteristics of turbulence in three different coastal region can be reduced the uncertainty of offshore wind construction.

태양광발전소 운영유지보수를 위한 이기종 장비 지원 모니터링 시스템 (Heterogeneous Equipment Support Monitoring System for Operation and Maintenance of Solar power plant)

  • 임수창;홍석훈;박철영;조현욱;송법성;김종찬
    • 한국멀티미디어학회논문지
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    • 제23권9호
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    • pp.1171-1180
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    • 2020
  • The number of the PV systems installed in south korea has been gradually increasing. Interest of operation & management of PV System is rising up as PV System installation trends to increase. The vital function of operation & management is the monitoring system. Most monitoring systems are only available for equipment of suppliers and manufacturers. In this study, a monitoring system was implemented to support multi-domain equipment (inverter, junction box, water distribution board, environmental sensors) that are not limited to specific manufacturers. Monitoring system includes a visualization function, which makes it easy for users to check the power generation and the operation status of the equipment of PV System. In the future, this monitoring system will be utilized as an operation & maintenance foundation element in the PV system industry.

동북아 연계선로 구성 및 지역별 예비력 증가 효과 (Northeast Asia Interconnection and Regional Reserve Increase Effects)

  • 이상성
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2005년도 제36회 하계학술대회 논문집 A
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    • pp.417-419
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    • 2005
  • This paper presents the effects and the regional power distribution of an increase or a decrease of a power reserve by load flow calculations under seasonal load patterns of each country for the future power shortages faced by the metropolitan areas or by the southeastern area of the South Korea in North-East Asia. In these connections, the types of a power transmission for interconnection consist of the 765kV HVAC and the HVDC. In this paper, the various cases of the power system interconnections in Far-East Asia are presented, and the resulting interconnected power systems are simulated by means of a power flow analysis performed with the PSS/E 28 version tool. The power flow map is drawn from data simulated and the comparative study is done. In this future, a power flow analysis will be considered to reflect the effects of seasonal power exchanges And the plan of assumed scenarios will be considered with maximum or minimum power exchanges during summer or winter in North-East Asia countries.

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Examination of excess electricity generation patterns in South Korea under the renewable initiative for 2030

  • Kim, Philseo;Cho, So-Bin;Yim, Man-Sung
    • Nuclear Engineering and Technology
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    • 제54권8호
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    • pp.2883-2897
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    • 2022
  • According to the Renewable Energy 3020 Implementation Plan announced in 2017 by the South Korean government, the electricity share of renewable energy will be expanded to 20% of the total electricity generation by 2030. Given the intermittency of electricity generation from renewable energy, realization of such a plan presents challenges to managing South Korea's isolated national electric grid and implies potentially large excess electricity generation in certain situations. The purpose of this study is: 1) to develop a model to accurately simulate the effects of excess electricity generation from renewables which would arise during the transition, and 2) to propose strategies to manage excess electricity generation through effective utilization of domestic electricity generating capabilities. Our results show that in periods of greater PV and wind power, namely the spring and fall seasons, the frequency of excess electricity generation increases, while electricity demand decreases. This being the case, flexible operation of coal and nuclear power plants along with LNG and pumped-storage hydroelectricity can be used to counterbalance the excess electricity generation from renewables. In addition, nuclear energy plays an important role in reducing CO2 emissions and electricity costs unlike the fossil fuel-based generation sources outlined in the 8th Basic Plan.

북한 인공지능 기술의 군사화와 우리 군의 대응 무기체계 발전방향 연구 (A Study on the Militarization of Artificial Intelligence Technology in North Korea and the Development Direction of Corresponding Weapon System in South Korea)

  • 김민혁
    • 한국IT서비스학회지
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    • 제20권1호
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    • pp.29-40
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    • 2021
  • North Korea's science and technology policies are being pursued under strong leadership and control by the central government. In particular, a large part of the research and development of science and technology related to the Fourth Industrial Revolution in North Korea is controlled and absorbed by the defense organizations under the national defense-oriented policy framework, among which North Korea is making national efforts to develop advanced technologies in artificial intelligence and actively utilize them in the military affairs. The future weapon system based on AI will have superior performance and destructive power that is different from modern weapons systems, which is likely to change the paradigm of the future battlefield, so a thorough analysis and prediction of the level of AI militarization technology, the direction of development, and AI-based weapons system in North Korea is needed. In addition, research and development of South Korea's corresponding weapon systems and military science and technology are strongly required as soon as possible. Therefore, in this paper, we will analyze the level of AI technology, the direction of AI militarization, and the AI-based weapons system in North Korea, and discuss the AI military technology and corresponding weapon systems that South Korea military must research and develop to counter the North Korea's. The next study will discuss the analysis of AI militarization technologies not only in North Korea but also in neighboring countries in Northeast Asia such as China and Russia, as well as AI weapon systems by battlefield function, detailed core technologies, and research and development measures.

IEC 국제표준에 따른 계통연계형 풍력터빈 발전기계통의 전력품질 측정방법에 관한 심화연구 (A Synthetical Study on Power Quality Measurement of Grid-Connected Wind Turbine Generating System based on the IEC International Standards)

  • 조수환
    • 전기학회논문지
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    • 제63권2호
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    • pp.197-204
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    • 2014
  • As more and more renewable energy resources are connected into the existing power system and their generation capacities are increasing, the need for regulations to minimize their impacts on the power grid is increasingly growing. And minimizing the irregular impacts made by grid-connected wind generators is important, since the output power generated by renewable energy resources can be changed easily by the weather condition and surrounding environment. In South Korea, an operational technical standard for distributed generation is used as a regulation, in which renewable energy sources including wind power are considered as a kind of distributed generation. In this paper, an international standard, IEC 61400-21, for the grid-connected wind turbine generating system(WTGS) will be introduced and a comprehensive and detailed review on the measuring methods of power quality characteristic parameters for WTGS based on the related IEC standards will be presented. Additionally, some prerequisites for applying the international standards to KEPCO system will be proposed.

민주화이후 한국 대통령제의 진화과정 분석 (An Evaluation of 30-Year's Democratization in South Korea: Focus on the Evolution of South Korean Presidential System and Its Future Prospects)

  • 김용호
    • 의정연구
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    • 제23권1호
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    • pp.37-79
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    • 2017
  • 이 글은 비교정치제도적 시각에서 민주화이후 지난 30년간 한국 대통령제의 진화과정을 분석, 평가, 전망하였다. 민주화이후 한국 대통령제는 3김시기의 제왕적 대통령제에서 3김이후 "대통령중심적 대통령제(president-centered presidentialism)"로 진화하였다. 이러한 진화과정에 제도적 요인(정치자금법을 비롯한 주요 정치관련법, 각 정당의 제도 개혁)과 비제도적 요인(대통령의 리더십성격)이 작용하였다. 이러한 진화과정을 분석한 결과 우리들은 앞으로 정치제도개혁을 통해 현행 "대통령중심적 대통령제"를 "대통령-의회 권력분립형 대통령제"로 발전시킬 가능성을 발견하였다. 특히 지난 30년간의 민주화 추세를 고려해보면 한국 대통령제가 장차 권력분립형 대통령제로 발전해 나갈 수 있을 것으로 전망된다. 이제 통치과정에서 대통령 우위의 "대통령중심적 대통령제"에서 벗어나 앞으로 행정, 입법, 사법 3부가 서로 대등한 통치의 주체로서 견제와 균형을 이루어 민주주의를 발전시켜 나가야 한다. 그동안 국회의 대통령 견제와 감독기능의 증가, 사법부의 독립성 증대, 시민사회의 책임 있는 정치적 참여 증가등이 권력분립형 대통령제를 가능하게 할 것으로 본다. 따라서 지난 30년간 대통령제하에서 우리들이 이룩한 민주적 성과를 유지, 발전시켜 나가려면 현행정부형태를 바꾸지 않고 대통령제를 유지하는 가운데 현행 대통령제의 문제점을 시정해 나가는 것이 바람직하다. 이를 위해 현행 헌법상의 대통령 권한을 축소하고, 4년 중임의 정부통령제로 변경하는 개헌이 필요하다. 또 현행 헌법의 내각제적 요소를 제거해야 한다. 그리고 권력분립형 대통령제를 뒷받침할 수 있도록 국회제도, 정당제도, 선거제도, 대선후보 경선제도를 개선하고 대통령제와 관련된 잘못된 인식과 잘못된 정치적 관행을 고쳐 나가야 한다.