• 제목/요약/키워드: magnetic stripes

검색결과 11건 처리시간 0.023초

자기역전 시각화 장치와 지자기띠에 대하여 (On an Apparatus of Visualization for Magnetic Reversal and Magnetic Stripes)

  • 류충렬
    • 암석학회지
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    • 제25권1호
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    • pp.85-88
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    • 2016
  • 중앙해령에서는 해양지각으로 현무암과 같은 암석이 새로이 생겨나며, 암석에는 자기방향이 당시의 지구자기장에 따라 배열된다. 해수면상에서의 광범위한 자력탐사에 의해 대부분의 중앙해령-특히 대서양 중앙해령-의 중심축과 평행한 남-북 방향의 자기띠(또는 자기 줄무늬)가 알려져 있다. 이러한 지자기띠에 기초하여, 지구의 자기장은 지질시대 동안 여러 번에 걸쳐 반복하여 역전된 것으로 고려되어 왔다. 해양지각에서의 지자기 역전의 발견은 해양저확장과 대륙이동설 그리고 판구조론을 설명하는 중요한 증거가 되었다. 이 논문에서는 중앙해령 근처에서 지자기띠를 이루며 새로이 생겨나는 해양지각 자기역전의 가능한 메커니즘을 설명하는 간단한 장치를 소개하고자 한다. 이 장치는 중앙해령의 중심에서 암석이 가지는 특정한 자기극성을 가지도록 근처에 인접하는 자기띠가 막대자석의 역할을 함을 보인다. 따라서 새로이 생겨나는 지자기띠는 일반적인 지구자기장 뿐 만 아니라 국지적으로 마치 막대자석처럼 작용하는 중앙해령 근처에 이웃하는 기존의 지자기띠에 의해 영향을 받았을 가능성이 있는 것으로 사료된다.

Quench Characteristics of YBCO Film for Current Limiting Using Magnetic Field

  • 박권배;최효상;김혜림;현옥배;황시돌
    • Progress in Superconductivity
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    • 제3권2호
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    • pp.252-256
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    • 2002
  • We studied YBCO films for current limiting of the resistive type which utilizes a transition from superconducting to normal state caused by exceeding critical current. The films were deposited on sapphire substrates and covered by gold top layer. The current limiting element consists of 2 mm wide YBCO stripes connected in series. A serious problem in using YBCO films for current limiting is inhomogeneities caused by imperfect manufacturing. Therefore simultaneous quench is a difficult problem when elements for current limiting are connected in series. So some researchers have recently proposed using magnetic field and heating for simultaneous quench. We have measured extended exec trim field-current density(E-J) characteristics for current limiting elements of YBCO films in applied magnetic field of 0 - 130 mT. And we have investigated quench characteristics in current limiting elements and between elements of YBCO films in applied magnetic field. The result of the experiments show that the presence of applied magnetic fields induces uniform quench distribution fur the stripes in element at $50V_{rms}$, otherwise non-uniform quenches were observed. And simultaneous quenches between elements were investigated at $150V_{rms}$. We suggest that suppressing the critical current by increased fields due to fault current effectively forced the stripes of higher $J_{c}$(0) to quench, resulting in equalizing quench times.s.s.s.

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YBCO 박막형 한류소자의 외부 자기장에 대한 퀜치 의존성 (Quench distributions in a YBCO film unit for curret limiting under magnetic field)

  • 박권배;최효상;김혜림;현옥배;항시돌;류경우
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 B
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    • pp.760-761
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    • 2001
  • We have studied quench characteristics for current limiting elements of YBCO films in applied fields of 0 - 130 mT. The films were deposited on sapphire substrates and covered by gold top layer. The current limiting element consists of 2 mm wide YBCO stripes connected in series. The electric field - current density (E-J) measurements showed that the presence of applied magnetic fields induces uniform quench distribution for the stripes, otherwise non-uniform quenches were observed. We suggest that suppressing the critical current by increased fields due to fault current effectively forced the stripes of higher Jc(0) to quench, resulting in equalizing quench times.

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나노 구조 철띠의 자성과 전자구조에 대한 제일원리 연구 (First-Principles Study on the Magnetism and Electronic Structure of Fe Nanostripes)

  • 변영신;이재일
    • 한국자기학회지
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    • 제16권5호
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    • pp.229-233
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    • 2006
  • 나노 구조 철띠의 자기적 성질을 일반기울기 근사(GGA)를 채택한 전전자 full-potenial linearized augmented plane-wave(FLAPW)에너지 띠 방법을 이용하여 이론적으로 연구하였다. 세 줄, 다섯 줄, 일곱 줄의 철선으로 이루어진 띠에서 가장자리 줄의 자기모멘트는 2.97 또는 2.98 ${\mu}_B$로 Fe 단일 직선의 값과 비슷하게 포화된 값을 가졌으며, 가운데 선의 자기모멘트는 2.82 ${\mu}_B$로 2차원 격자의 값과 같았다. 일곱 줄로 이루어진 철 띠의 전하밀도나 스핀밀도는 가장자리 영역에서 거의 평평한 분포를 보였는데, 이는 가장자리 원자로부터 배출된 p-전자로 인한 가리기에 의한 것이다. 일곱 줄로 이루어진 철 띠에서 가장자리 원자의 상태밀도는 가운데 원자에 비해 띠폭이 줄어들었는데 이는 가장자리 효과에 의한 띠좁힘 때문이다.

스마트멀티카드를 위한 동적자장모사장치의 개발 (Development of Dynamic Magnetic Field Emulator for Smart Multi-Card)

  • 배재호
    • 산업경영시스템학회지
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    • 제40권4호
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    • pp.183-190
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    • 2017
  • This paper proposes a dynamic magnetic field emulator (DMFE), which can electrically emulate information for the magnetic stripes of most widely used credit cards. Payment transactions with most common credit cards are performed by reading the card's information, encoded in magnetic stripes, using the reader head of a point-of-sale (POS) system. A stripe-type permanent magnet is attached to the back side of the credit card, and information for payments or value-added service is reorganized by exposing it to strong magnetic field. The process of data recording and retrieving as stated above has been pointed out as a major cause of illegal credit card use, because the information on the magnetic stripe is always exposed, and is thus vulnerable to forgery or alteration. A dynamic magnetic field emulator displays card information only when necessary by using the principle of solenoidal magnets. The DMFE proposed in this paper can prevent fraudulent use if it is operated with a device, like a smart phone, or a separate user-authentication procedure. In addition, because it is possible to display various information as needed, it can be utilized for a smart multi-card application, in which information for multiple cards is stored in one card, and can be selected and used as needed. This paper introduces the necessity of the DMFE and its manufacturing principles. As a result, this study will be helpful for making various application cases in payment, which is a core area of the Fintech (a newly-coined word of finance and technology) industry.

Hybrid형 초전도 한류기의 동시퀜치 유도방안 (A method for simultaneous quench of hybrid type superconducting fault current limiter)

  • 최효상;현옥배;김혜림;박권배;황시돌
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 B
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    • pp.916-917
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    • 2001
  • We investigated the properties of a hybrid type superconducting fault current limiter (SFCL), which consists of a transformer with multiple secondary windings and resistive $YBa_2Cu_3O_7$ (YBCO) thin film stripes. The secondary windings of the transformer were coupled with each other, and a superconducting current limiting unit of YBCO stripes was connected to each of them as a switch. Simple connection in series of SFCL units tends to produce imbalance in power among the units due to slight differences in quench current. In current design, magnetic coupling between the SFCL units provides a solution to power dissipation imbalance, inducing simultaneous quench by current redistribution in the YBCO films.

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자기장인가에 따른 YBCO 박막형 한류기의 동시?치 연구 (Studies of Simultaneous Quench of Superconducting YBCO Flims for Fault Current Limiter Under the Influence of Magnetic Fields)

  • 박권배;이방욱;강종성;오일성;최효상;현옥배
    • 한국초전도ㆍ저온공학회논문지
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    • 제4권1호
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    • pp.84-88
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    • 2002
  • The resistive fault current limiter (SFCL) is a very attractive device for power networks. But it has a serious Problem in using YBCO films for fault current limiter is inhomogeneities caused by imperpect manufacturing. So simultaneous quenches are a difficult problem which elements for current limiting are connected in series for increasing voltage ratings. We investigated extended electric field-current characteristics for current limiting element of YBCO film when O-130mT magnetic field is applied. And quench characteristics were investigated in over all element and between elements of YBCO films. From the experiments, it was shown that applied magnetic fields using solenoid coil induced uniform quench distribution for over all stripes and simultaneous quench in all elements for current limiting of YBCO film was realized. We have achieved resistive fault current limiter of 1.2kV/20A rating using magnetic field.

자기장이 인가된 YBCO 박막형 한류기의 ?치 특성 (Quench Behaviors of Superconducting YBCO Films for Fault Current Limiter Using Magnetic Fields)

  • 박권배;이방욱;강종성;오일성;최효상;현옥배
    • 한국초전도저온공학회:학술대회논문집
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    • 한국초전도저온공학회 2002년도 학술대회 논문집
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    • pp.365-367
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    • 2002
  • A serious problem in using YBCO films for fault current limiter is inhomogeneities caused by imperpect manufacturing. So simultaneous quenches are a difficult problem which elements for current limiting are connected in series for increasing voltage ratings. We investigated extended electric field - current characteristics for current limiting element of YBCO film when 0-130mT magnetic field is applied. And quench characteristics were investigated in over all element and between elements of YBCO films. From the experiments, it was shown that applied magnetic fields using solenoid coil induced uniform quench distribution for over all stripes and simultaneous quench in all elements for current limiting of YBCO film was realized.

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Quench characteristics of YBCO thin films using magnetic field source for superconducting fault current limiters

  • Lee, B.W.;Park, K.B.;Kang, J.S.;Oh, I.S.
    • 한국초전도ㆍ저온공학회논문지
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    • 제6권2호
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    • pp.11-14
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    • 2004
  • YBCO thin films have good characteristics for current limiting materials due to compact size and high current carrying capability. But the irregularities and the extreme thin thickness of YBCO films cause some difficulties in simultaneous quench and thermal shock protection. In order to solve these problems, vertical magnetic field generated from solenoid coil was applied to the YBCO element. And also to minimize the inductance caused by the serial connection of magnetic field source with superconducting elements, magnetic field source was separated from the power lines adapting protective current transformer. In this study, electric field-current (E-I) and quench characteristics of YBCO films were analyzed both by electrical measuring method and observations of bubble propagation. From the experiment results, it was revealed that the magnetic fields generated by surrounding coil could induce the uniform quench distribution for all stripes of current limiting units and finally simultaneous quenches were realized in all serial connection of YBCO elements. In addition, the separation of magnetic field source form electrical network could be good solution for simultaneous quench of YBCO films without any unnecessary effect caused by serial connection.

Application of Spatial Modulation of Magnetization to Cervical Spinal Stenosis for Evaluation of the Hydrodynamic Changes Occurring in Cerebrospinal Fluid

  • Kwang-Hun Lee;Tae-Sub Chung;Tae Joo Jeon;Young Hwan Kim;Daisy Chien;Gerhard Laub
    • Korean Journal of Radiology
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    • 제1권1호
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    • pp.11-18
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    • 2000
  • Objective: To evaluate the hydrodynamic changes occurring in cerebrospinal fluid (CSF) flow in cervical spinal stenosis using the spatial modulation of magnetization (SPAMM) technique. Materials and Methods: Using the SPAMM technique, 44 patients with cervical spinal stenosis and ten healthy volunteers were investigated. The degree of cervical spinal stenosis was rated as low-, intermediate-, or high-grade. Low-grade stenosis was defined as involving no effacement of the subarachnoid space, intermediate-grade as involving effacement of this space, and high-grade as involving effacement of this space, together with compressive myelopathy. The patterns of SPAMM stripes and CSF velocity were evaluated and compared between each type of spinal stenosis and normal spine. Results: Low-grade stenosis (n = 23) revealed displacement or discontinuity of stripes, while intermediate- (n = 10) and high-grade (n = 11) showed a continuous straight band at the stenotic segment. Among low-grade cases, 12 showed wave separation during the systolic phase. Peak systolic CSF velocity at C4-5 level in these cases was lower than in volunteers (p < .05), but jet-like CSF propulsion was maintained. Among intermediate-grade cases, peak systolic velocity at C1-2 level was lower than in the volunteer group, but the difference was not significant (p > .05). In high-grade stenosis, both diastolic and systolic velocities were significantly lower (p < .05). Conclusion: Various hydrodynamic changes occurring in CSF flow in cervical spinal stenosis were demonstrated by the SPAMM technique, and this may be a useful method for evaluating CSF hydrodynamic change in cervical spinal stenosis.

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