• 제목/요약/키워드: fault angles

검색결과 64건 처리시간 0.026초

단층핵의 물리적 특성과 마찰 특성의 상관관계 분석 (Physical Properties and Friction Characteristics of Fault Cores in South Korea)

  • 문성우;윤현석;서용석
    • 자원환경지질
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    • 제53권1호
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    • pp.71-85
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    • 2020
  • 본 연구에서는 지반공학 및 지질공학적 측면에서 단층핵의 거동을 이해하기 위해 화강암, 퇴적암 및 화산암 단층대에서 채취된 단층핵 시료를 대상으로 물리적 특성(각력 및 점토함량, 단위중량, 공극률, 함수비)과 마찰 특성(내부마찰각, 점착력)의 관계를 분석하였다. 실내시험으로부터 산정된 물리적 특성을 분석한 결과, 단층핵 내 각력은 단위중량과 양(+)의 상관관계를 가지고, 점토함량, 공극률 및 함수비와는 음(-)의 상관관계를 가진다. 직접전단시험으로부터 산정된 내부 마찰각과 점착력에 대한 사분위수 범위(IQR)는 각각 16.7-38.1°, 2.5-25.3 kPa로 나타났다. 또한, 단층핵의 마찰특성에 미치는 물리적 특성의 영향을 분석한 결과, 마찰각은 모든 암종에서 각각 각력함량 및 단위중량과 양(+)의 상관관계를 가지고, 점토함량, 공극률 및 함수비와 음(-)의 상관관계를 보인다. 대조적으로, 단층핵의 점착력은 각력함량 및 단위중량과 음(-)의 상관관계를 가지고, 점토함량, 공극률 및 함수비와 양(+)의 상관관계를 보인다.

배전설비 결함 검출을 위한 초음파 음원 위치추정 및 시각화 기법 (Ultrasonic Source Localization and Visualization Technique for Fault Detection of a Power Distribution Equipment)

  • 박진하;정하형;유준
    • 제어로봇시스템학회논문지
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    • 제21권4호
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    • pp.315-320
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    • 2015
  • This paper describes the implemenation of localization and visualization scheme to find out an ultrasonic source caused by defects of a power distribution line equipment. To increase the fault detection performance, $2{\times}4$ sensor array is configured with MEMS ultrasonic sensors, and from the sensor signals aquired, the azimuth and elevation angles of the ultrasonic source is estimated based on the delay-sum beam forming method. Also, to visualize the estimated location, it is marked on the background image. Experimental results show applicability of the present technique.

디지탈 계산기에 의한 우리나라 154KV계통의 과도안정도 해석 (Analysis of transient stability of 154KV power systems in Korea by digital computer techniques)

  • 한만춘;박상희;김영찬
    • 전기의세계
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    • 제17권4호
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    • pp.18-27
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    • 1968
  • Analysis of the transient stability of power systems following disturbances involves many sets of non-linear differential equations. This paper attempts to analyze the transient stability of multi-machine power systems by the step by step method, using the electronic digital computer. The critical switching times and phase angles for the main 154KV transmission system in Korea, are given from the swing curves of the probable conditions. It is concluded that the system is, in general, stable if the relay is cut off within 12 cycles after the fault. However the fault of DAEGU-SANGJU branch, accompanying much real power, makes the system unstable when the raly is cut off within 4 cycles after fault or automatic voltage regulators are equipped in this branch.

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포항 흥해지역에서 포항분지의 변형작용사와 2017 포항지진(Mw 5.4) 동시성 지표변형 특성 고찰 (Deformation History of the Pohang Basin in the Heunghae Area, Pohang and Consideration on Characteristics of Coseismic Ground Deformations of the 2017 Pohang Earthquake (Mw 5.4), Korea)

  • 강지훈
    • 광물과 암석
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    • 제35권4호
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    • pp.485-505
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    • 2022
  • 2017년 11월 15일 Mw 5.4의 포항지진은 흥해지역 지하 약 4 km의 진원 깊이에서 발생하여 포항시에 막대한 피해를 끼쳤다. 포항분지의 중부에 해당하는 흥해지역은 백악기 경상누층군과 백악기 말~고신생기 초불국사 화성암류를 기반암으로 하여 포항분지 충전물인 신신생기 연일층군이 분포한다. 이 논문에서는 포항분지에서 지각변형물(습곡, 단층, 절리)과 포항지진 동시성 지표변형물(모래화산, 지표균열, 팝업구조)에 대한 구조지질학적 연구를 수행하여 포항분지의 변형작용사와 포항지진 동시성 지표변형의 특성을 고찰해 보았다. 연구지역의 지각변형물은 제4기 단층운동 이전까지 적어도 5회의 변형단계를 거쳐 형성되었다: (북)북동 주향에 고각 경사하는 정이동(곡강단층) 단층 형성단계, 연일층군에 광역적으로 인지되는 동-서 방향의 고각 절리와 이에 (준)평행한 단층 형성단계, 동-서 주향에 중각 내지 저각 경사하는 공액상 정이동 단층(흥해단층과 형산단층)과 이에 수반된 동-서 계열의 습곡 형성단계, (역이동성) 좌수향 주향이동의 (북)북서 방향 단층조와 우수향 주향이동의 동-서(북동) 방향 단층조가 고각으로 경사하는 공액상 주향이동 단층 형성단계, 북북동과 북북서 주향에 중각 경사하는 공액상 역이동 단층과 이에 수반된 남-북 계열의 습곡 형성단계. 포항지진 동시성 지표변형물에서 모래화산은 종종 지표균열과 (준)평행한 선상배열을 보인다. 남-북 내지 (북)북동 방향의 팝업구조와 지표균열, 동-서 내지 서북서 방향의 지표균열 등은 포항지진 발생 응력원의 최대수평응력에 의한 지진원 단층의 역이동성 운동과 이에 수반된 상반지괴의 좌굴습곡작용에 의해 형성되었다. 이러한 구조적 활동은 지진원 단층의 상반지괴에 해당하는 포항시 흥해읍 중심으로 광범위하게 발생하여 이곳에 막대한 재산 피해를 끼쳤다.

Development of A Test Apparatus for Control Rod Drive Mechanism in Nuclear Power Plants

  • Kim, Choon-Kyung;Cheon, Jong-Min;Lee, Jong-Moo;Kim, Seog-Joo;Kwon, Soon-Man
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2003년도 ICCAS
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    • pp.1732-1735
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    • 2003
  • In this paper, a DSP-based test apparatus for Control Rod Drive Mechanism (CRDM) that is used in nuclear power plants is described. Using this apparatus, we can test the mechanical and electrical characteristics of CRDM and obtain some information about how to improve the CRDM further and how to design a power controller to actuate the CRDM. Since firing angles can be directly applied to the gate-drive circuits of thyristors in the power controller by using this apparatus, the maximum and minimum values of firing angles within available limits are easily measured. Also step-current inputs help us investigate each coil's response characteristics. Therefore, we can easily find the range of control gains which enables a stable CRDM operation in insertion and withdrawal actions at high speed, mid speed, and low speed. Since this apparatus has a test mode in which an insertion or withdrawal action is divided into several phases so that the current command for each phase is given step by step, we may judge whether the CRDM works as expected or not. We also describe a fault detection capability of the test apparatus for the power controller by using discrete Fourier transform.

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슬라이딩 모드 관측기 기반 전지형 크레인의 조향입력 고장검출 알고리즘 (Sliding Mode Observer-based Fault Detection Algorithm for Steering Input of an All-Terrain Crane)

  • 오광석;서자호
    • 드라이브 ㆍ 컨트롤
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    • 제14권2호
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    • pp.30-36
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    • 2017
  • This paper presents a sliding mode observer-based fault detection algorithm for steering inputs of an all-terrain crane. All-terrain cranes with multi-axles have several steering modes for various working purposes. Since steering angles at the other axles except the first wheel are controlled by using the information of steering angle at the first wheel, a reliable signal of the first axle's steering angle should be secured for the driving safety of cranes. For the fault detection of steering input signal, a simplified crane model-based sliding mode observer has been used. Using a sliding mode observer with an equivalent output injection signal that represents an actual fault signal, a fault signal in steering input was reconstructed. The road steering mode of the crane's steering system was used to conduct performance evaluations of a proposed algorithm, and an arbitrary fault signal was applied to the steering angle at the first wheel. Since the road steering mode has different steering strategies according to different speed intervals, performance evaluations were conducted based on the curved path scenario with various speed conditions. The design of algorithms and performance evaluations were conducted on Matlab/Simulink environment, and evaluation results reveal that the proposed algorithm is capable of detecting and reconstructing a fault signal reasonably well.

Performance evaluation on Fault Current Controller System for the Applications of Smart Grid

  • Jang, Jae-Young;Lee, Woo-Seung;Lee, Ji-Ho;Hwang, Young-Jin;Jo, Hyun-Chul;Ahn, Min-Cheol;Hur, Kyeon;Ko, Tae-Kuk
    • 한국초전도ㆍ저온공학회논문지
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    • 제14권2호
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    • pp.12-15
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    • 2012
  • This paper presents simulation and small-scale experimental tests of a fault current controller. Smart fault controller as proposed and proven conceptually in our previous work is promising technology for the smart power grid where distributed and even stochastic generation sources are prevalent and grid operations are more dynamic. Existing protection schemes simply limiting the fault current to the pre-determined set values may not show best performance and even lead to coordination failures, potentially leading to catastrophic failure. Thus, this paper designs fault current controller with a full bridge thyristor rectifier, embedding a superconducting coil for which the controller is electrically invisible during normal operation because the loss due to the coil is near-zero. When a fault occurs and the resulting current through the superconducting coil exceeds a certain value set intelligently based on the current operating condition of the grid, the magnitude of the fault current is controlled to this desired value by adjusting the firing angles of thyristors such that the overall system integrity is successfully maintained. Detailed time-domain simulations are performed and lab-scale testing circuits are built to demonstrate the desired functionality and efficacy of the proposed fault current controller.

기본파 성분의 정확한 측정을 위한 해석적 방법 (An Analytic Method for Measuring Accurate Fundamental Frequency Components)

  • 남순열;강상희;박종근
    • 대한전기학회논문지:전력기술부문A
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    • 제51권4호
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    • pp.175-182
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    • 2002
  • This paper proposes an analytic method for measuring the accurate fundamental frequency component of a fault current signal distorted with a DC-offset, a characteristic frequency component, and harmonics. The proposed algorithm is composed of four stages: sine filer, linear filter, Prony's method, and measurement. The sine filter and the linear filter eliminate harmonics and the fundamental frequency component, respectively. Then Prony's method is used to estimate the parameters of the DC-offset and the characteristic frequency component. Finally, the fundamental frequency component is measured by compensating the sine-filtered signal with the estimated parameters. The performance evaluation of the proposed method is presented for a-phase to around faults on a 345 kV 200 km overhead transmission line. The EMTP is used to generate fault current signals under different fault locations and fault inception angles. It is shown that the analytic method accurately measures the fundamental frequency component regardless of the characteristic frequency component as well as the DC-offset.

일체화된 삼상 자속구속형 고온초전도 전류제한기의 사고각에 따른 전류제한 특성 분석 (Analysis of Current Limiting Characteristics According to Fault Angles in Integrated Three-Phase Flux-Lock Type Superconducting Fault Current Limiting)

  • 박충렬;두호익;임성우;현옥배;임성훈;박형민;조용선;남긍현;이나영;최효상;한병성
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 하계학술대회 논문집 Vol.7
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    • pp.255-256
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    • 2006
  • In this paper, we investigated the. characteristics of fault current limiting according to fault angle in the integrated three-phase flux-lock type SFCL in fault types such as the single-line-to-ground fault, the double-line-to-ground fault and the three-line-to-ground fault. When the SFCL is operating under normal condition, the magnetic flux generated between primary and secondary coils of each single phase is canceled out perfectly, so that the impedance of the SFCL is also not generated and the power system can be operated normally without any loss, However, if a fault occurs even in any phase out of three phases, quench happened in SFCL elements and the current flowing secondary coil is restricted abruptly. Finally, the balance of magnetic flux in whole SFCL system is destroyed, and the fault currents in every phase could be limited at the same time irrespective of the fault types. As a result, the developed SFCL in this study were operated normally as expected and the purpose of the integration of 3 phase current limiting was also achieved successfully. However, the fault current limiting characteristics of the SFCL was dependant on the quench characteristics of HTSC elements in each phase, and it was expected that the improvement of the SFCL could be possible through the introduction of HTSC elements which have better critical characteristics.

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Peak seismic response of a symmetric base-isolated steel building: near vs. far fault excitations and varying incident angle

  • Pavlidou, Constantina;Komodromos, Petros
    • Earthquakes and Structures
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    • 제18권3호
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    • pp.349-365
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    • 2020
  • Since the peak seismic response of a base-isolated building strongly depends on the characteristics of the imposed seismic ground motion, the behavior of a base-isolated building under different seismic ground motions is studied, in order to better assess their effects on its peak seismic response. Specifically, the behavior of a typical steel building is examined as base-isolated with elastomeric bearings, while the effect of near-fault ground motions is studied by imposing 7 pairs of near- and 7 pairs of far-fault seismic records, from the same 7 earthquake events, to the building, under 3 different loading combinations, through three-dimensional (3D) nonlinear dynamic analyses, conducted with SAP2000. The results indicate that near-fault seismic components are more likely to increase the building's peak seismic response than the corresponding far-fault components. Furthermore, the direction of the imposed earthquake excitations is also varied by rotating the imposed pairs of seismic records from 0◦ to 360◦, with respect to the major construction axes. It is observed that the peak seismic responses along the critical incident angles, which in general differ from the major horizontal construction axes of the building, are significantly higher. Moreover, the influence of 5% and 10% accidental mass eccentricities is also studied, revealing that when considering accidental mass eccentricities the peak relative displacements of the base isolated building at the isolation level are substantially increased, while the peak floor accelerations and interstory drifts of its superstructure are only slightly affected.