• Title/Summary/Keyword: Stacked conductors

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Magnetization Loss Characteristics at Arbitrary Directional Magnetic Field by Perpendicular Magnetization Loss in YBCO CC and BSCCO Stacked Conductors (YBCO CC 적층 및 BSCCO tape 적층선재에서 수직자화 손실 값을 이용한 임의 방향 자화손실 평가)

  • Lee, Ji-Kwang;Lim, Hyoung-Woo;Park, Myung-Jin;Cha, Guee-Soo
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.56 no.2
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    • pp.282-288
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    • 2007
  • Magnetization loss of high temperature superconductoring BSCCO tape and YBCO coated conductor(YBCOCC) is most important issue in the development of superconducting power devices. In this paper, the measured results of magnetization losses under various angles of external magnetic field in BSCCO tape stacked conductors and YBCO CC stacked conductors are presented and compared with each other. Also, we present the compared results of magnetization losses measured at arbitrary reaction magnetic fields and analyzed with perpendicular magnetic field components of those. The results show that magnetization losses of YBCO CC single and stacked conductors agree well with the analyzed value by it's perpendicular magnetic field component, but BSCCO single and stacked conductors are not.

Numerical Analysis of Transport Current Losses in Stacked HTS Conductors (적층 형태의 고온 초전도선재에서의 통전손실 수치 해석)

  • 최세용;나완수;김정호;주진호;류경우
    • Progress in Superconductivity
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    • v.5 no.2
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    • pp.89-93
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    • 2004
  • We have studied alternating transport current losses in the vertically stacked high temperature superconducting tapes(HTS) using numerical techniques. In the case of stacked conductors, HTS tapes are exposed to self-field generated by transport current itself and also experienced external magnetic field around adjacent tapes. It is well known that magnetic interactions between neighbored tapes have significant effect on their properties of superconducting tapes such as current distribution, AC loss, and critical current. In this paper, we investigated the transport current losses in stacked conductors consisting of a few of the HTS tapes using numerical analysis. Current distributions are calculated in HTS tape cross-section taking account of magnetic field dependencies, which are represented superconducting nonlinear properties. Dissipated losses in tape and stacked conductors were integrated with current distribution and electric field intensity in the whole conductor region. Finally estimated results were discussed and verified through the analytical theory.

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Effects of the insulation thickness on the magnetization loss of the multi-stacked YBCO coated conductor (절연거리 변화에 따른 적층된 YBCO 도체의 자화손실 변화)

  • Lim, Hyoung-Woo;Lee, Hee-Joon;Cha, Guee-Soo;Lee, Ji-Kwang
    • Proceedings of the KIEE Conference
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    • 2005.10c
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    • pp.95-97
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    • 2005
  • Loss in the multi-stacked HTS wires are affected by a number of factor, such as, number of wires used in the stack, direction of external magnetic field and insulation thickness between the wire. This paper examines the effects of the insulation thickness on the magnetization loss of the multi-stacked YBCO coated conductor. Measurements of magnetization loss were performed using 4 different typo of multi-stacked wires and under various angle of external magnetic field. Test results show that loss density per unit volume increased for YBCO coated conductors when thickness of insulation increased. Loss density per unit volume decreased for YBCO coaled conductors when stacking number of tapes increased.

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A Study on the Characteristics of Voltage Distribution of Stacked YBCO Coated Conductors in Series Connection

  • Chu, Sung-Yul;Hwang, Young-Jin;Kim, Young-Jae;Ko, Tae-Kuk
    • Progress in Superconductivity and Cryogenics
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    • v.11 no.4
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    • pp.25-28
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    • 2009
  • In order to apply superconducting electric machineries such as a Superconducting Fault Current Limiter (SFCL) to the power grid, the single module should be connected in series to have reasonable size. Superconducting tapes in the module also should be stacked to satisfy requirements such as large operation current of the power grid. This is because a single superconducting tape has restricted applicable current capacity. Moreover especially in SFCL at the fault, there should be equal voltage distribution in series-connected SFCL modules. In this paper, we investigated the voltage distribution in fault current of series-connected YBCO coated conductors (CC). Depending on characteristics of the CC samples such as critical current, even voltage distribution could be achieved or not. In addition, the effect of stacked CC on the change of voltage distribution comparing to non-stack cases in series connection was confirmed by experiments. As the CC stacked, voltage difference could be reduced.

Comparison Magnetization Losses of the multi-stacked YBCO Coated conductor and the BSCCO tapes (YBCO CC와 BSCCO Tape의 적층에 따른 자화손실 특성비교)

  • Lim Hyoungwoo;Lee Heejoon;Cha Gueesoo;Lee Ji-Kwang
    • Progress in Superconductivity and Cryogenics
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    • v.7 no.3
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    • pp.13-16
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    • 2005
  • Multi-stacked HTS tapes are needed to conduct large current in the power application. In this paper magnetization losses of the multi-stacked YBCO coated conductor and the BSCCO tape have been measured and compared. Magnetization losses of single tape, 2-stacked, 3-stacked and 4-stacked HTS tapes have been presented in this paper. Multi-stacked tapes have been fabricated using face-to-face type stacking method. Measurements of magnetization loss were performed under various stacked of external magnetic field to consider the anisotropic characteristics of HTS tapes. Test results show that loss density per unit volume decreased for both YBCO coated conductors and BSCCO tapes when the stacking number of tapes is increased. As the external magnetic field decreased, the ratio of decrement has risen because the full penetration magnetic field(Bp) of the multi-stacked tape is larger than that of the single tape.

Fabrication of coated conductor stacked multi-filamentary wire (적층형 초전도 다심 선재 제조)

  • Yun, K.S.;Ha, H.S.;Oh, S.S.;Moon, S.H.;Kim, C.J.
    • Progress in Superconductivity and Cryogenics
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    • v.14 no.1
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    • pp.4-7
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    • 2012
  • Coated conductors have been developed to increase piece length and critical current for electric power applications. Otherwise, Many efforts were carried out to reduce AC loss of coated conductor for AC applications. Twisting and cabling processes are effective to reduce AC loss but, these processes can not be applied for tape shaped coated conductor. It is inevitable to have thin rectangular shape because coated conductor is fabricated by thin film deposition process on metal substrate. In this study, round shape superconducting wire was first fabricated using coated conductors. First of all, Ag coated conductor was used. coated conductor was slitted to several wires with narrow width below 1mm. 12ea slitted wires were parallel stacked on top of another until making up the square cross-section. The bundle of coated conductors was heat treated to stick on each other by diffusion bonding and then copper plated to make round shape wire. Critical current of round wire was measured 185A at 77K, self field.

The Magnetization Losses Characteristics of Multi-stacked and Variable Angle of External Magnet Field in YBCO CC and BSCCO tape (YBCO Coated Conducor와 BSCCO tape의 적층 및 외부자장의 각도에 따른 자화손실 특성)

  • Lim, Hyoung-Woo;Lee, Hee-Joon;Cha, Guee-Soo
    • Progress in Superconductivity and Cryogenics
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    • v.7 no.3
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    • pp.34-38
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    • 2005
  • Multi-stacked HTS tapes are needed to conduct large current in the power application. In this paper, magnetization losses of the multi-stacked YBCO coated conductor and the BSCCO tape have been measured and compared. Magnetization losses of single tape, 2-stacked, 3-stacked and 4-stacked HTS tapes have been presented in this paper. Multi-stacked tapes have been fabricated using face-to-face type stacking method. Measurements of magnetization loss were performed under various angle of external magnetic field to consider the anisotropic characteristics of HTS tapes. Test results show that loss density per unit volume decreased for both YBCO coated conductors and BSCCO tapes when the stacking number of tapes is increased. The magnetization losses of YBCO CC are larger than those of BSCCO tapes when the external magnetic field is increased.

R&D trends of high current REBCO conductor

  • Oh, Sang-Soo
    • Progress in Superconductivity and Cryogenics
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    • v.24 no.1
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    • pp.1-7
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    • 2022
  • So far, large-scale scientific devices such as nuclear fusion tokamaks and high energy circular accelerators were constructed using high-current conductors made of metallic superconducting wires. Recently, as REBCO superconducting wires usable in high magnetic fields have been developed by several companies, researchesto apply high current cable type REBCO conductors to next-generation large superconducting magnets were also started. High critical currents of several kA or more in high magnetic fields have been successfully demonstrated on test samples of REBCO cable conductors by several research groups. In this review article, the main features and properties of the representative high current REBCO conductors such as CORC(Conductor On Round Core), TSTC(Twisted Stacked-Tape Cable) and RACC(Roebel-Assembled Coated Conductor), which are currently being developed at abroad are briefly introduced. Research activities of high-current density REBCO MHOS(Multi HTS layers on One Substrate) conductor at KERI, whose structure is different from other cable type REBCO conductors are also shortly introduced.

Characteristics of the Magnetization Loss in Stacked YBCO Coated Conductors for Large Current Application (대전류 통전을 위한 YBCO CC 적층선재의 자화손실 특성)

  • Lee, Ji-Kwang;Lim, Hyung-Woo;Cha, Guee-Soo
    • Progress in Superconductivity and Cryogenics
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    • v.9 no.1
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    • pp.27-31
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    • 2007
  • For large power applications, multi-stacked tape should be used because single tape is limited in flowing demanded current capacity. Besides insulation between layers is needed for safe operation because high voltages are generated in those applications. In this study, considering those situations which mentioned above, we measure the magnetization loss in several multi-stacked tape samples having the different insulation thicknesses and various packing numbers of tape by external magnetic field having various incidence angles.