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박종규 교수

Jong-Kyu Park

서울대학교 · 물리·천문학

연구실 소개

박종규 교수의 연구실은 토카막 및 스플라인 토루스 등 축대칭 플라즈마 시스템에서의 비축대칭 자기장 편향이 플라즈마 성능과 안정성에 미치는 영향을 이론적·수치적 방법을 통해 연구합니다. 주요 연구는 외부 자기장 오차에 의한 도시형상(島) 형성, 비보존적 이동, 나코클래식 토로이드 뷰진스 등 비축대칭장에 의한 플라즈마 응답을 이해하고, 이를 바탕으로 ITER와 같은 fusion 디바이스의 오차장 보정 기법을 개발하는 데 초점이 맞춰져 있습니다. 특히 이상적 편미분 평형 이론(IPEC)을 활용한 정밀한 수치 해석을 통해 실험 결과와의 괴리를 해소하고자 합니다.

비축대칭 자기장플라즈마 안정성오차장 보정이상적 편미분 평형나코클래식 토로이드 뷰진스

연구 현황

논문 수
301
총 인용 수
4,053
최근 5년 논문
79
주요 분야
물리·천문학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
79총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
399총합
20222023202420252026

주요 논문

15
1
논문|인용수 211·2007
Computation of three-dimensional tokamak and spherical torus equilibria
Jong-Kyu Park, Allen H. Boozer, A. H. Glasser
SJR Q2FWCI 16.0Physics of PlasmasOA

A nominally axisymmetric plasma configuration, such as a tokamak or a spherical torus, is highly sensitive to nonaxisymmetric magnetic perturbations due to currents outside of the plasma. The high sensitivity means that the primary interest is in the response of the plasma to very small perturbations, i.e., ∣b⃗∕B⃗∣≈10−2 to 10−4, which can be calculated using the theory of perturbed equilibria. The ideal perturbed equilibrium code (IPEC) is described and applied to the study of the plasma respons

Nuclear and High Energy PhysicsPhysics and Astronomy
2
논문|인용수 154·2007
Control of Asymmetric Magnetic Perturbations in Tokamaks
Jong-Kyu Park, M. J. Schaffer, J. Ménard, Allen H. Boozer
SJR Q1FWCI 18.8Physical Review Letters

The sensitivity of tokamak plasmas to very small deviations from the axisymmetry of the magnetic field $|\ensuremath{\delta}\stackrel{\ensuremath{\rightarrow}}{B}/\stackrel{\ensuremath{\rightarrow}}{B}|\ensuremath{\approx}{10}^{\ensuremath{-}4}$ is well known. What was not understood until very recently is the importance of the perturbation to the plasma equilibrium in assessing the effects of externally produced asymmetries in the magnetic field, even far from a stability limit. DIII-D and NSTX

Nuclear and High Energy PhysicsPhysics and Astronomy
3
논문|인용수 133·2009
Nonambipolar Transport by Trapped Particles in Tokamaks
Jong-Kyu Park, Allen H. Boozer, J. Ménard
SJR Q1FWCI 21.3Physical Review Letters

Small nonaxisymmetric perturbations of the magnetic field can greatly change the performance of tokamaks through nonambipolar transport. A number of theories have been developed, but the predictions were not consistent with experimental observations in tokamaks. This Letter provides a resolution, with a generalized analytic treatment of the nonambipolar transport. It is shown that the discrepancy between theory and experiment can be greatly reduced by two effects: (1) the small fraction of trapp

Nuclear and High Energy PhysicsPhysics and Astronomy
4
논문|인용수 120·2018
3D field phase-space control in tokamak plasmas
Jong-Kyu Park, Y.M. Jeon, Y. In, Joon-Wook Ahn, R. Nazikian, Gunyoung Park, Jaehyun Kim, Hyungho Lee, W.H. Ko, Hyun-Seok Kim, N.C. Logan, Zhirui Wang
SJR Q1FWCI 21.3Nature PhysicsOA
Nuclear and High Energy PhysicsPhysics and Astronomy
5
논문|인용수 89·2008
Error field correction in ITER
Jong-Kyu Park, Allen H. Boozer, J. Ménard, M. J. Schaffer
SJR Q1FWCI 10.8Nuclear Fusion

A new method for correcting magnetic field errors in the ITER tokamak is developed using the Ideal Perturbed Equilibrium Code. The dominant external magnetic field for driving islands is shown to be localized to the outboard midplane for three ITER equilibria that represent the projected range of operational scenarios. The coupling matrices between the poloidal harmonics of the external magnetic perturbations and the resonant fields on the rational surfaces that drive islands are combined for di

Nuclear and High Energy PhysicsPhysics and Astronomy
6
논문|인용수 88·2009
Importance of plasma response to nonaxisymmetric perturbations in tokamaks
Jong-Kyu Park, Allen H. Boozer, J. Ménard, A. M. Garofalo, M. J. Schaffer, R.J. Hawryluk, S. Kaye, S. P. Gerhardt, Steve Sabbagh, NSTX Team
SJR Q2FWCI 13.5Physics of PlasmasOA

Tokamaks are sensitive to deviations from axisymmetry as small as δB/B0∼10−4. These nonaxisymmetric perturbations greatly modify plasma confinement and performance by either destroying magnetic surfaces with subsequent locking or deforming magnetic surfaces with associated nonambipolar transport. The Ideal Perturbed Equilibrium Code (IPEC) calculates ideal perturbed equilibria and provides important basis for understanding the sensitivity of tokamak plasmas to perturbations. IPEC calculations in

Nuclear and High Energy PhysicsPhysics and Astronomy
7
논문|인용수 70·2017
Self-consistent perturbed equilibrium with neoclassical toroidal torque in tokamaks
Jong-Kyu Park, N.C. Logan
SJR Q2FWCI 10.1Physics of PlasmasOA

Toroidal torque is one of the most important consequences of non-axisymmetric fields in tokamaks. The well-known neoclassical toroidal viscosity (NTV) is due to the second-order toroidal force from anisotropic pressure tensor in the presence of these asymmetries. This work shows that the first-order toroidal force originating from the same anisotropic pressure tensor, despite having no flux surface average, can significantly modify the local perturbed force balance and thus must be included in p

Nuclear and High Energy PhysicsPhysics and Astronomy
8
논문|인용수 58·2011
Error field correction in DIII-D Ohmic plasmas with either handedness
Jong-Kyu Park, M. J. Schaffer, R.J. La Haye, T. Scoville, J. Ménard
SJR Q1FWCI 6.1Nuclear FusionOA

Error field correction results in DIII-D plasmas are presented in various configurations. In both left-handed and right-handed plasma configurations, where the intrinsic error fields become different due to the opposite helical twist (handedness) of the magnetic field, the optimal error correction currents and the toroidal phases of internal(I)-coils are empirically established. Applications of the Ideal Perturbed Equilibrium Code to these results demonstrate that the field component to be minim

Nuclear and High Energy PhysicsPhysics and Astronomy
9
논문|인용수 45·2013
Rotational Resonance of Nonaxisymmetric Magnetic Braking in the KSTAR Tokamak
Jong-Kyu Park, Y.M. Jeon, J. Ménard, W.H. Ko, S. G. Lee, Y.S. Bae, M. Joung, K.-I. You, K.-D. Lee, N.C. Logan, K. Kim, J. Ko
SJR Q1FWCI 6.9Physical Review Letters

One of the important rotational resonances in nonaxisymmetric neoclassical transport has been experimentally validated in the KSTAR tokamak by applying highly nonresonant n=1 magnetic perturbations to rapidly rotating plasmas. These so-called bounce-harmonic resonances are expected to occur in the presence of magnetic braking perturbations when the toroidal rotation is fast enough to resonate with periodic parallel motions of trapped particles. The predicted and observed resonant peak along with

Nuclear and High Energy PhysicsPhysics and Astronomy
10
논문|인용수 38·2009
Shielding of external magnetic perturbations by torque in rotating tokamak plasmas
Jong-Kyu Park, Allen H. Boozer, J. Ménard, S. P. Gerhardt, Steve Sabbagh
SJR Q2FWCI 5.7Physics of Plasmas

The imposition of a nonaxisymmetric magnetic perturbation on a rotating tokamak plasma requires energy and toroidal torque. Fundamental electrodynamics implies that the torque is essentially limited and must be consistent with the external response of a plasma equilibrium f⃗=j⃗×B⃗. Here magnetic measurements on National Spherical Torus Experiment device are used to derive the energy and the torque, and these empirical evaluations are compared with theoretical calculations based on perturbed scal

Nuclear and High Energy PhysicsPhysics and Astronomy
11
논문|인용수 30·2011
Kinetic energy principle and neoclassical toroidal torque in tokamaks
Jong-Kyu Park
SJR Q2FWCI 4.1Physics of Plasmas

It is shown that when tokamaks are perturbed, the kinetic energy principle is closely related to the neoclassical toroidal torque by the action invariance of particles. Especially when tokamaks are perturbed from scalar pressure equilibria, the imaginary part of the potential energy in the kinetic energy principle is equivalent to the toroidal torque by the neoclassical toroidal viscosity. A unified description therefore should be made for both physics. It is also shown in this case that the pot

Nuclear and High Energy PhysicsPhysics and Astronomy
12
논문|인용수 29·2004
Constitutive relations for piezoelectric benders under various boundary conditions
Jong-Kyu Park, Wonkyu Moon
SJR Q1FWCI 1.9Sensors and Actuators A Physical
Mechanics of MaterialsEngineering
13
논문|인용수 26·2008
Spectral asymmetry due to magnetic coordinates
Jong-Kyu Park, Allen H. Boozer, J. Ménard
SJR Q2FWCI 4.6Physics of PlasmasOA

The use of magnetic coordinates is ubiquitous in toroidal plasma physics but the distortion in Fourier spectra produced by these coordinates is not well known. A spatial symmetry of the field is not always represented by a symmetry in the Fourier spectrum when magnetic coordinates are used because of the distortion of the toroidal angle. The practical importance of spectral distortion is illustrated with a tokamak example.

Nuclear and High Energy PhysicsPhysics and Astronomy
14
논문|인용수 26·2012
Sensitivity to error fields in NSTX high β plasmas
Jong-Kyu Park, J. Ménard, S. P. Gerhardt, R. J. Buttery, Steve Sabbagh, R. E. Bell, B.P. LeBlanc
SJR Q1FWCI 1.3Nuclear Fusion

It was found that error field threshold decreases for high β in NSTX, although the density correlation in conventional threshold scaling implies the threshold would increase since higher β plasmas in our study have higher plasma density. This greater sensitivity to error field in higher β plasmas is due to error field amplification by plasmas. When the effect of amplification is included with ideal plasma response calculations, the conventional density correlation can be restored and threshold s

Nuclear and High Energy PhysicsPhysics and Astronomy
15
erratum|인용수 19·2012
Corrigendum: Error field correction in DIII-D Ohmic plasmas with either handedness
Jong-Kyu Park, M. J. Schaffer, R.J. La Haye, T. Scoville, J. Ménard
SJR Q1FWCI 0.5Nuclear FusionOA

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Electrical and Electronic EngineeringEngineering

대표 연구 분야

Nuclear and High Energy PhysicsElectrical and Electronic EngineeringMechanical EngineeringControl and Systems EngineeringAerospace EngineeringComputer Networks and Communications

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