• Title/Summary/Keyword: Electric field calculation

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Trapped Field Analysis of a High Temperature Superconducting Bulk with Artificial Holes

  • Jang, Guneik;Lee, Man-Soo;Han, Seung-Yong;Kim, Chan-Joong;Han, Young-Hee;Park, Byung-Joon
    • Journal of Magnetics
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    • v.16 no.2
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    • pp.181-185
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    • 2011
  • To improve trapped field characteristics of a high temperature superconducting (HTS) bulk, a technique to implement artificial holes has been studied. The artificial holes, filled up with epoxy or metal, may provide better cooling channel and enhance mechanical strength of the HTS bulk. Although many useful researches based on experiments have been reported, a numerical approach is still limited because of several reasons that include: 1) highly non-linear electromagnetic properties of HTS; and 2) difficulty in modeling of randomly scattered "small" artificial holes. In this paper, a 2-D finite element method with iteration is adopted to analyze trapped field characteristics of HTS bulk with artificial holes. The validity of the calculation is verified by comparison between measurement and calculation of a trapped field in a $40{\times}40\;mm$ square and 3.1 mm thick HTS bulk having 16 artificial holes with diameter of 0.7 mm. The effects of sizes and array patterns of artificial holes on distribution of trapped field within HTS bulk are numerically investigated using suggested method.

Torque Calculation Method of a Permanent Magnet Spherical Motor

  • Lee, Hyung-Woo;Kang, Dong-Woo;Lee, Ju
    • Journal of Electrical Engineering and Technology
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    • v.5 no.3
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    • pp.431-434
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    • 2010
  • This paper presents the torque calculation method of a permanent magnet spherical motor. To calculate using the finite element method (FEM), three-dimensional (3D) FEM must be used. However, since the method requires excessive time and memory, an easier torque calculation method is hereby presented. In the proposed method, it is very important to obtain the approximation function of the torque profile curve. We present the approximation method of the torque profile curve and show that the torque calculation result can approximate the torque obtained by 3-D FEM.

Electric Field Calculation in High Voltage Electrode by Combination Method (전하종첩법과 유한요소법의 결합에 의한 고전계 계산)

  • 지철근;김상태
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.32 no.9
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    • pp.297-304
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    • 1983
  • This paper deals with the electric fileds calculation by combination of finite element method and charge simulation method. Since this method has the advantage of both F.E.M and C.S.M.the application of this method is more useful for the caleulation of non-enclosed fields, multi-dielectric fields, space charge fields and so on. On the basis of this method, computer programs for the calculation of two-demensional and axisymmetric fields were developed. This paper shows that the calculation results are accurately abtained through several examples.

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Numerical analysis of electromagnetic fields in the trailer car of high speed train by transmission line matrix method (TLM 방법을 이용한 고속열차내의 객차 내부의 전자기장 해석)

  • Han, In-Su;Lee, Tae-Hyung;Park, Choon-Soo;Kim, Ki-Hwan
    • Proceedings of the KSR Conference
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    • 2009.05b
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    • pp.403-406
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    • 2009
  • Recently, electricity is essential for human lives. Modem people take cultural benefits due to the development of the electric power system and the spread of the high tech-electric appliances, the cell phones, and etc. However, the electromagnetic field problems become prominent figures owing to the fault of the communication devices around the power line and the biological effect, and etc. In this paper, we introduce the simple electromagnetic field calculation based on the transmission line matrix method, prior to the analysis about the influence of electromagnetic field. Simulation object is the inner part of the trailer car in the high speed train. Unlike the existing paper we submitted, we analyze not only the magnetic field but the electric field in the inner part of the trailer car which makes up the high speed train.

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Forward Calculation of Electric Potential, Electric Field and Resistivity Survey on Anisotropic Layered Half Space (이방성 층상구조에 대한 전위와 전기장 및 전기비저항탐사 계산 연구)

  • Na, Sung-Ho;Kim, Hyoung-Soo
    • Geophysics and Geophysical Exploration
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    • v.24 no.3
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    • pp.98-112
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    • 2021
  • We followed and extended the algorithm originally made by Das (1995) to calculate the electric potential and field induced by electric current in arbitrary anisotropic layered structure. We confirmed all the theoretical contents and coded the corresponding program to acquire the electric potential and field. Further we extended to forward estimation of apparent resistivity to be attained by electrical resistivity survey on anisotropic layered structure with differing the electrode spacing and azimuth of anisotropy. The effects of anisotropy were reviewed by considering some examples.

ANALYSIS OF HIGH-FIELD MAGNETIZATION PROCESS IN $Sm_{2}Fe_{17}N_{3.0}$

  • Zhao, T.S.;Jin, H.M.;Lee, J.I.;Paug, K.S.
    • Journal of the Korean Magnetics Society
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    • v.5 no.5
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    • pp.679-682
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    • 1995
  • The observed high-field magnetization curves of $Sm_{2}Fe_{17}N_{3.0}$ at 4.2 K and 296 K are well reproduced by the calculation using the Sm-Fe exchange field $2\mu\textrm{B}H_{ex}\;=\;320\;K$ and two crystalline electric field parameters ${A_{0}}^{2}=\;-910\;K$ and ${A_{1}}^{0}=\;200\;K$. The calculation shows that during the magnetization process along the hard axis at 4.2 K, the Sm moment rotates toward the direction antiparallel to H when H < 110 kOe and then returns to the field direction with further increase of the field. At 296 K, the Sm moment rotates toward the direction antiparallel to H monotonously with increasing field and finally becomes antiparallel to H when $H{\geq}H_{A}=210\;kOe$. The particular magnetization process of the Sm moment can be explained by the field-induced noncollinear coupling between the spin and orbital moments of the Sm ion.

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Electric Therapy System Based on Discontinuous Conduction Mode Boost Circuit

  • Chen, Wenhui;Lee, Hyesoo;Jung, Heokyung
    • Journal of information and communication convergence engineering
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    • v.18 no.4
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    • pp.245-253
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    • 2020
  • The human body and nervous system transmit information through electric charges. After the electric charge transmits information to the brain, we can feel pain, numbness, comfort, and other feelings. Electric therapy is currently used widely in clinical practice because the field of examination is more representative of electrocardiogram, and in the field of treatment is more representative of electrotherapy. In this study, we design a system for neurophysiological therapy and conduct parameter calculation and model selection for the components of the system. The system is based on a discontinuous conduction mode (DCM) boost circuit, and controlled and regulated by a single-chip microcomputer. The system does not only have a low cost but also fully considers the safety of use, convenience of the human-computer interface, adjustment sensitivity, and waveform diversity in the design. In future, it will have strong implications in the field of electrotherapy.

3-Dimensional Analysis on Electric Field of Special Conductor Bundle for Reducing Aeolian Noise (풍소음 저감용 특수 다중도체 방식의 3차원 전계해석)

  • Min, Suk-Won;Song, Ki-Hyun
    • Proceedings of the KIEE Conference
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    • 2001.05a
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    • pp.254-258
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    • 2001
  • In this paper, 3-dimensional charge simulation method was developed to analyze electric field distributions of special conductor bundles equipped with spiral rods for reducing aeolian noise. When we applied this method to 765 kV double circuit transmission line, we found calculation error of this method was within a reasonable boundary of 1%.

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3-Dimensional Analysis on Electric Field of Special Conductor Bundle for Reducing Aeolian Noise In Corona Cage (코로나 케이지 내부에서의 풍소음 저감용 특수 다중도체 방식의 3차원 전계분포해석)

  • Min, Suk-Won;Song, Ki-Hyun
    • Proceedings of the KIEE Conference
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    • 2001.07a
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    • pp.359-361
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    • 2001
  • In this paper, 3-dimensional charge simulation method was applied to analyze electric field distributions of special conductor bundles equipped with spiral rods for reducing aeolian noise in a corona cage. We found calculation error of this method was w a reasonable boundary of 0.5%.

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ZORA DFT Calculation of $^{11}$B Electric Field Gradient Tensor for Lithium Borates

  • Woo, Ae-Ja;Wasylishen, Roderick E.
    • Journal of the Korean Magnetic Resonance Society
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    • v.8 no.2
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    • pp.70-76
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    • 2004
  • ZORA-DFT calculations of $^{11}$B EFG (electric field gradient) tensors for lithium borates, LiB$_3O_5$ (LBO) and Li$_2B_4O_7$ (LTB), were performed. The calculated values of 11B quadrupole coupling constant and asymmetry parameter are in good agreement with the experimental values. The sign of the quadrupole coupling constant for the tetrahedral boron site was deduced from the distortion from the ideal tetrahedral symmetry.

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