• 제목/요약/키워드: utility damage

검색결과 125건 처리시간 0.026초

향상된 고조파 검출 능력을 갖는 계통연계 인버터의 하이브리드 단독운전 방지기법 (A Hybrid Anti-islanding Detection Scheme for Utility Interactive Inverter with Enhanced Harmonic Extraction Capability)

  • 강성욱;김경화
    • 전력전자학회논문지
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    • 제19권4호
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    • pp.312-319
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    • 2014
  • When distributed generation such as a wind power system is connected to the grid, it should meet grid requirements like IEEE Std. 1547, which regulates the anti-islanding method. Since the islanding may cause damage on electrical equipments or safety hazards for utility line worker, a distributed generation should detect it as soon as possible. This paper proposes a hybrid anti-islanding method coupled with the active and passive detection methods. To enhance the harmonic extraction capability for an active harmonic injection method, cascaded second-order band-pass filter and signal processing scheme are employed. Simulation and experiments are carried out under the islanding test condition specified in IEEE Std. 1547. Passive over/under voltage and over/under frequency methods are combined with the active method to improve the detection speed under certain condition. The simulation and experimental results are presented to verify that the proposed hybrid anti-islanding method can effectively detect the islanding.

LAN을 이용한 분산전원 연계 계통의 보호 (LAN-Based Protective Relaying for Interconnect Protection of Dispersed Generators)

  • 정태영;백영식
    • 전기학회논문지
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    • 제56권3호
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    • pp.491-497
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    • 2007
  • As dispersed generators was driven in condition interconnecting with utility, it could cause a variety of new effects to the original distribution system that was running as considered only the one-way power flow. Therefore, the protection devices that is builted in distribution system should be designed to be able to operate with disposing of not only a fault of the generator, but also utility condition. Especially, the fault of the feeder interconnected with Dispersed Generator can cause the islanding phenomenon of open DG(Dispersed Generators). This phenomenon has many problems such as a machinery damage, electricity qualify degradation and a difficulty of the system recovery. In the fault therefore, we must separate Dispersed Generator from the system quickly. In this paper, for the fault classification of the interconnected DG and the outside feeder we judge the fault of the interconnected DG and the outside feeder in HMI through data provided by IED(Intelligent Electronic Device) on the network and decide whether it operates or not by sending the result to each relay.

3상 오프라인 무정전 전원 시스템의 돌입전류 제거 (Inrush Current Elimination for a Three-Phase Off-Line UPS System)

  • ;권병일
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2015년도 제46회 하계학술대회
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    • pp.944-945
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    • 2015
  • Many sensitive loads always rely on UPS systems to maintain continuous power during abnormal utility power conditions. As any disturbance occurs at the utility side, an off-line UPS system takes over the load within a quarter cycle to avoid a blackout. However, the starting of the inverter can root the momentous inrush current for the transformer installed before the load, due to its magnetic saturation. The consequences of this current can be a reduction of line voltage and tripping of protective devices of the UPS system. Furthermore, it can also damage the transformer and decrease its lifetime by increasing the mechanical stresses on its windings. To prevent the inrush current, and to avoid its disruptive effects, this paper proposes an off-line UPS system that eliminates the inrush current phenomenon while powering the transformer coupled loads, using a current regulated voltage source inverter (CRVSI) instead of a typical voltage source inverter (VSI). Simulations have been performed to validate the operation of proposed off-line UPS system.

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발전용 저 NOx 가스터빈의 연소모드 변환시기의 연소특성 전산해석 (Numerical Analysis of Combustion Characteristics during Combustion Mode Change of a Low NOx Utility Gas Turbine)

  • 정재모;정재화;박정규
    • 한국자동차공학회논문집
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    • 제12권6호
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    • pp.127-134
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    • 2004
  • Three-dimensional numerical investigations are carried out to understand the combustion characteristics inside a DLN(dry low NOx) utility gas turbine combustor during the combustion mode change period by applying transient fuel flow rates in fuel supply system as numerical boundary conditions. The numerical solution domain comprises the complex combustor liner including cooling air holes, three types of fuel nozzles, a swirl vane, and a venturi. Detailed three-dimensional flow and temperature fields before and after combustion mode changeover have been analyzed. The results may be useful for further studies on the unfavorable phenomena, such as flashback or thermal damage of combustor parts when the combustion mode changes.

Effects of Hydrogen Sulfide and Siloxane on Landfill Gas Utility Facilities

  • Nam, Sang-Chul;Hur, Kwang-Beom;Lee, Nam-Hoon
    • Environmental Engineering Research
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    • 제16권3호
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    • pp.159-164
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    • 2011
  • This study examined the emission characteristics of impure gas-like hydrogen sulfide and siloxane contained in landfill gas (LFG) and investigated the effect of impure gas on LFG utility facilities. As a result of an LFG component analysis from eight landfills in the same environment, hydrogen sulfide averaged 436 ppmv (22-1,211 ppmv), and the concentration of total siloxane averaged 7.95 mg/$m^3$ (1.85-21.18 mg/$m^3$). In case of siloxane concentration by component, the ratio of D4 (average 3.79 mg/$m^3$) and D5 (average 2.64 mg/$m^3$) indicated the highest level. Different kinds of scales were found on the gas air heater (GAH) and inside the boiler. The major component of scale from the GAH was $Fe_2O_3$ of 38.5%, and it was caused by hydrogen sulfide. Other scale was found on the bottom and the wall of the boiler and the scale was silicon dioxide of 92.8% and 98.9%. The silicon dioxide scale was caused by combustion of siloxane. As a result of a scanning electron microscopy analysis, the structure of the silicon dioxide scale from the boiler was an immediate filamentous type. Consequently, as silicon dioxide scale is bulky, such bad effects were worsening, as an interruption in heat conduction, increase in fuel consumption, damage to the boiler by overheating, and clogged emission pipeline could occur in LFG utility facilities.

스마트 팜을 위한 UAS 모니터링의 자연재해 작물 피해 분석 (Analysis of Crop Damage Caused by Natural Disasters in UAS Monitoring for Smart Farm)

  • 강준오;이용창
    • 한국측량학회지
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    • 제38권6호
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    • pp.583-589
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    • 2020
  • 최근 다양한 센서 및 정보통신 기술(ICT: Information & Communications Technology)을 융합·활용한 스마트 팜을 위한 UAS (Unmanned Aerial System)의 활용성이 기대되고 있다. 특히, 다양한 지수를 통한 실외 작물 모니터링 방안으로 효용성이 입증되며 여러 분야에서 연구되고 있다. 본 연구는 벼를 대상으로 자연재해 작물 피해를 분석하고 피해량을 계측하는 것이다. 이를 위해, BG-NIR (Blue Green_near Infrared red) 및 RGB 센서를 통해 데이터를 획득하고 영상해석 및 NDWI (Normalized Difference Water Index) 지수를 활용하여 장마에 의한 작물 피해를 검토한다. 또한, 영상해석 기반 포인트 클라우드 데이터를 생성, 인스펙션 맵을 통해 태풍 전·후 데이터를 비교하여 피해량을 계측한다. 연구결과, NDWI 지수 분석을 통해 벼의 생장 및 장마 피해를 검토하였고, 인스펙션 맵 분석으로 태풍에 의한 피해 면적을 계측하였다.

수소환경에서의 재료 열화도 평가 (Assessment of Materials Degradation in a Hydrogen Environment)

  • 원순호;현양기;이종오;이재도;조경식
    • 연구논문집
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    • 통권31호
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    • pp.149-156
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    • 2001
  • Hydrogen damage affects carbon steel tubes in many fossil-fuel-fired boilers, often causing large tube ruptures that necessitate an immediate shutdown. Therefore, equipment handling high-temperature, high-pressure hydrogen must undergo careful periodic inspection because of its susceptibility to hydrogen attack. This paper describes the application of an ultrasonic technique for detecting the presence of hydrogen damage in utility boiler tubes. The accuracy of the technique has been shown in laboratory tests. However, it is difficult to evaluate hydrogen attack quantitatively by this technique, because ultrasonic wave is influenced by the test conditions and the material itself.

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Validation of Photo-comet Assay as a Model for the Prediction of Photocarcinogenicity

  • Kim, Ji-Young;Koh, Woo-Suk;Lee, Mi-Chael
    • Toxicological Research
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    • 제22권4호
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    • pp.423-429
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    • 2006
  • Recent reports on the photocarcinogenicity and photogerotoxicity of many compounds led to an increasing awareness for the need of a standard approach to test for photogenotoxicity. The comet assay has been recently validated as a sensitive and specific test system for the quantification of DNA damage. Thus, the objectives of this study are to investigate the utility of photo-comet assay for detecting photo-mutagens, and to evaluate its ability to predict rodent photo-carcinogenicity. Photo-comet assays were performed using L5178Y $Tk^{+/-}$ mouse lymphoma cells on five test substances (8-methoxypsoralen, chlorpromazine, lomefloxacin, anthracene and retinoic acid) that demonstrated positive results in photocarcinogenicity tests. For the best discrimination between the test substance-mediated DNA damage and the undesirable DNA damage caused by direct UV absorption, a UV dose-response of the cells in the absence of the test substances was firstly fnalized. Out of 5 test substances, positive comet results were obtained for chlorpromazine, lomefloxacin, anthracene and retinoic acid while 8-methoxypsoralen found negative. An investigation into the predictive value of this photo-comet assay for determining the photocarcinogenicity showed that photo-comet assay has relatively high sensitivity. Therefore, the photo-comet assay with mammalian cells seems to be a good and sensitive predictor of the photocarcinogenic potential of new substances.

GIS를 이용한 로스엔젤레스에 매설된 강관 손상 평가 (Loss Estimation of Steel Pipeline Damage in Los Angeles Using GIS)

  • Jeon, Sang-Soo
    • 한국지반공학회논문집
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    • 제20권2호
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    • pp.47-58
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    • 2004
  • 강관은 Northridge 지진이 발생했을 당시 산사태가 일어나는 언덕이나 산악지역에 매설되어 있었다. 본 논문은 지리정보체계(GIS) 시스템에서 위치에 따라 강관을 서로 다른 유형별로 분류하고 정의하였다. 이 논문은 지반속도와 강관의 손상관계를 분석하고 Northridge 지진 시 발생한 산사태의 영향을 받았던 지역을 조사하였다. 하나의 주목할 만한 사실은 Northridge 지진 후 강관의 손상률이 다른 종류의 매설관, 특히 캐스트아이런(CI)보다 더 높았다는 것이다. Northridge 지진으로 인한 상대적으로 높은 강관의 손상률은 가장 큰 내부압력을 요하는 곳에서의 설치관례와 부식으로 인한 영향으로 해석될 수 있다.

Hydro-mechanical interaction of reinforced concrete lining in hydraulic pressure tunnel

  • Wu, He-Gao;Zhou, Li;Su, Kai;Zhou, Ya-Feng;Wen, Xi-Yu
    • Structural Engineering and Mechanics
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    • 제71권6호
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    • pp.699-712
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    • 2019
  • The reinforced concrete lining of hydraulic pressure tunnels tends to crack under high inner water pressure (IWP), which results in the inner water exosmosis along cracks and involves typical hydro-mechanical interaction. This study aims at the development, validation and application of an indirect-coupled method to simulate the lining cracking process. Based on the concrete damage plasticity (CDP) model, the utility routine GETVRM and the user subroutine USDFLD in the finite element code ABAQUS is employed to calculate and adjust the secondary hydraulic conductivity according to the material damage and the plastic volume strain. The friction-contact method (FCM) is introduced to track the lining-rock interface behavior. Compared with the traditional node-shared method (NSM) model, the FCM model is more feasible to simulate the lining cracking process. The number of cracks and the reinforcement stress can be significantly reduced, which matches well with the observed results in engineering practices. Moreover, the damage evolution of reinforced concrete lining can be effectively slowed down. This numerical method provides an insight into the cracking process of reinforced concrete lining in hydraulic pressure tunnels.