• 제목/요약/키워드: Potential Theory Method

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EXISTENCE OF THE SOLUTIONS FOR THE SINGULAR POTENTIAL ELLIPTIC SYSTEM

  • Jung, Tacksun;Choi, Q-Heung
    • Korean Journal of Mathematics
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    • 제20권1호
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    • pp.107-116
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    • 2012
  • We investigate the multiple solutions for a class of the elliptic system with the singular potential nonlinearity. We obtain a theorem which shows the existence of the solution for a class of the elliptic system with singular potential nonlinearity and Dirichlet boundary condition. We obtain this result by using variational method and critical point theory.

이동로봇의 장애물 회피를 위한 복소 포텐셜 항법의 개선 (Enhancement of Complex Potential Navigation Method for Obstacle Avoidance of Mobile Robot)

  • 김동한;류근호
    • 제어로봇시스템학회논문지
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    • 제15권4호
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    • pp.385-389
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    • 2009
  • This paper deals with the enhancement of the complex potential navigation for wheeled mobile robots. The circle theorem from complex function theory is used to avoid an obstacle, and the enhancement to avoid multiple obstacles is proposed. The limit cycle navigation can be combined for robot to kick the ball to the intentioned direction. Avoiding step and superposing twin vortices can be applied to adjust the direction of robot's trajectory. The proposed method is verified through a set of simulation works, and the feasibilities for the enhancement of complex potential theory are successful.

고분자액체에 대한 포텐셜의 비교 (Comparison of Potentials for Polymeric Liquids)

  • 정해영
    • 대한화학회지
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    • 제46권6호
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    • pp.545-549
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    • 2002
  • 고분자액체에 대한 이론들은 많은 경우 cell, hole, free volume 또는 lattice 등의 개념에 근거를 두고 있다. 여기에 van der Waals 포텐셜이나 Lennard-Jones 6-12포텐셜 또는 이를 개선한 형태의 포텐셜을 보통 사용되고 있다. 본 연구에서는 고분자 액체를 설명?求?성공적인 이론으로 알려져 있는 격자유체이론에서 불연속적 격자를 고전적으로 연속적으로 격자로까지 확장한 연속격자유체이론과 Flory의 상태방정식이론을 개선한 Dee-Walsch의 Cell 이론에 각각 Mie(p,6)포텐셜을 적용하여 반발포텐셜항의 지수 p에 따른 PVT 값을 계산하여 실험값과 비교를 하였다. 또한 격자유체이론, Flory의 상태방정식이론, 섭동법을 이용한 Cho-Sanchez 이론의 계산값과도 비교를 하였다. 계산결과를 통하여 고분자액체에 대한 포텐셜로 Van der Waals 포텐셜, Lennaed-Jones 6-12 포텐셜, Mie(p,6)포텐셜들을 비교하였다.

Mode I Field Intensity Factors of Infinitely Long Strip in Piezoelectric Media

  • Kwon, Soon-Man;Lee, Kang-Yong
    • Journal of Mechanical Science and Technology
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    • 제14권8호
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    • pp.845-850
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    • 2000
  • We consider the problem of determining the singular stresses and electric fields in a piezoelectric ceramic strip containing a Griffith crack under in-plane normal loading within the framework of linear piezoelectricity. The potential theory method and Fourier transforms are used to reduce the problem to the solution of dual integral equations, which are then expressed to a Fredholm integral equation of the second kind. Numerical values on the field intensity factors are obtained, and the influences of the electric fields for PZT-6B piezoelectric ceramic are discussed.

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범함수궤도법을 이용하여 계산한 Al, Ga, In이 도핑된 ZnO의 전자상태 (Electronic State of ZnO doped with Al, Ga and In, Calculated by Density Functional Theory)

  • 이동윤;이원재;송재성
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2004년도 추계학술대회 논문집 Vol.17
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    • pp.218-221
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    • 2004
  • The electronic state of ZnO doped with Al, Ga and In, which belong to III family elements in periodic table, was calculated using the density functional theory. In this study, the program used for the calculation on theoretical structures of ZnO and doped ZnO was Vienna Ab-initio Simulation Package (VASP), which is a sort of pseudo potential method. The detail of electronic structure was obtained by the describe variational $X{\alpha}(DV-X{\alpha})$(DV-Xa) method, which is a sort of molecular orbital full potential method. The optimized crystal structures obtained by calculations were compared to the measured structure. The density of state and energy levels of dopant elements was shown and discussed in association with properties.

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양력판(揚力板) 이론(理論)에 의(依)한 2차원(次元) 수중익(水中翼)의 초월(超越) 공동(空洞) 문제(問題) 해석(解析) (A Potential-Based Panel Method for the Analysis of A Two-Dimensional Super-Cavitating Hydrofoil)

  • 김영기;이창섭;이진태
    • 대한조선학회논문집
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    • 제28권2호
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    • pp.159-173
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    • 1991
  • 본 논문에서는 양력판 이론을 사용하여 2차원 수중익에 발생한 비 대칭 초월 공동 문제를 포텐셜을 기저로하여 수치 해석하였다. 수중익과 공동 표면에 법선 다이폴을 분포하고 공동 표면에는 공동 형상을 찾기위하여 쏘오스를 분포하였다. 수중익 표면에서의 운동학적 경계조건은 수중익 내부에서의 전체 포텐셜이 0이라는 조건으로 대치하였고 공동 표면에서의 역학적 경계조건은 공동 표면에서의 접선 방향 속도가 일정하다는 조건으로 표현되었다. 표면에 특이 함수를 분포하여 포텐셜을 기저로하여 공동 문제를 해석하였기 때문에 압력 분포에 대하여, 특히 수중익의 앞날 근처에서는 양력면 이론에 의한 결과보다 더욱 향상된 정도의 결과를 얻었다. 본 이론은 먼저 주어진 공동 길이에 대하여 그에 상응하는 공동 형상 및 공동수를 구하였다. 좀더 좋은 결과를 얻기 위하여 새로이 계산된 공동 표면과 수중익 표면에 또 다시 특이 함수를 분포하여 그곳에서 경계 조건을 만족시킴으로써 새로운 공동 형상 및 공동수를 구하는 반복 계산을 수행하였다. 본 이론에 의한 계산 결과의 검증을 위하여 폭 넓은 수렴성 시험을 수행하였으며 특히, Geurst의 선형 이론에 의한 해석해 및 Wu의 비 선형 이론에 의한 해석해, 그리고 Acosta, Parkin, Meijer, Silberman, Waid의 실험 결과와 비교한 결과, 본 이론의 효용성을 입증하였다.

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Equilibrium shape analysis of single layer structure by measure potential function

  • Ijima, Katsushi;Xi, Wei;Goto, Shigeo
    • Structural Engineering and Mechanics
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    • 제5권6호
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    • pp.775-784
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    • 1997
  • A unified theory is presented for the shape analysis of curved surface with a single layer structure composed by frame, membrane or shell. The shapes produced by the theory have no shear stress in elements, and the stress states in the whole shape are as uniform as possible under an ordinary load. The theory starts from defining an element potential function expressed by the measurement of the element length or the element area. Therefore, the shape analysis can produce various forms according to the definition of the potential function, and each of those form or the cable net form with the potential function of the second power of element length is simply gotten by the linear analysis. The form in tensile stress is mechanically equal to an isotropic tension form.

Dynamic response analysis of nanoparticle-nanobeam impact using nonlocal theory and meshless method

  • Isa Ahmadi;Mohammad Naeim Moradi;Mahdi Davar Panah
    • Structural Engineering and Mechanics
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    • 제89권2호
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    • pp.135-153
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    • 2024
  • In this study, the impact response of a nanobeam with a moving nanoparticle is investigated. Timoshenko beam theory is used to model the nanobeam behavior and nonlocal elasticity theory is used to consider the effects of small dimensions. The interaction between the nanoparticle and nanobeam has been described using Lennard-Jones potential theory and the equations are discretized by the radial basis meshless method and a mathematical model is presented for the nanobeam-nanoparticle system. Validation of the proposed model is achieved by comparing the obtained natural frequencies with reference values, demonstrating good agreement. Dimensionless frequency analysis reveals a decrease with increasing nonlocal parameter, pointing out a toughening effect in nanobeam. The dynamic response of the nanobeam and nanoparticle is obtained by time integration of equations of motion using Newmark and Wilson-𝜃 methods. A comparative analysis of the two methods is conducted to determine the most suitable approach for this study. As a distinctive aspect in this study, the analysis incorporates the deformation of the nanobeam resulting from the nanoparticle-nanobeam interaction when calculating the Lennard-Jones force in the nanobeam-nanoparticle system. The numerical findings explore the impact of various factors, including the nonlocal parameter, initial velocity, nanoparticle mass, and boundary conditions.

계류된 구조물에 작용하는 파도의 동적작용에 대하여 (Dynamic Interaction of Waves with a Moored Structure)

  • ;김창제;야전영명
    • 한국해양공학회지
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    • 제6권2호
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    • pp.94-102
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    • 1992
  • This paper presents the method of numerical analysis concerned with the hydropdynamic forces and moments of the floating bodies exerted by waves. The analytic methods of hydrodynamic wave forces and moments for large volume structures are generally classified into four categories ; the strip method, the boundary element method, the finite element method, and the potential matching method. In the case of the comparatively large structures, diffraction theory can be applied. However, there are no application limits of diffraction theory which have been known concerning with the analytic method of the rectangular structures. In this paper, the two-dimensional B.E.M. is treated for a moored small rectangular structure in order to evaluate applicability of diffraction theory. Numerical calculation is carried out for the structure. The results are compared with some other ones for verification. The result shows that diffraction theory is applicable to structures smaller than 0.15 in the ratio of the representative structure length d to wave length L for rectangular ones.

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Numerical Investigation of Motion Response of the Tanker at Varying Vertical Center of Gravities

  • Van Thuan Mai;Thi Loan Mai;Hyeon Kyu Yoon
    • 한국해양공학회지
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    • 제38권1호
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    • pp.1-9
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    • 2024
  • The vertical center of gravity (VCG) has a significant impact on the roll motion response of a surface ship, particularly oil tankers based on the oil level in the tanker after discharging oil at several stations or positional changes, such as changes in the superstructure and deck structure. This study examined the motion response of the Korea very large crude carrier 2 (KVLCC2) at various VCGs, especially roll motion when the VCG changed. The potential theory in the Ansys AQWA program was used as a numerical simulation method to calculate the motion response. On the other hand, the calculations obtained through potential theory overestimated the roll amplitudes during resonance and lacked precision. Therefore, roll damping is a necessary parameter that accounts for the viscosity effect by performing an experimental roll decay. The roll decay test estimated the roll damping coefficients for various VCGs using Froude's method. The motion response of the ship in regular waves was evaluated for various VCGs using the estimated roll-damping coefficients. In addition, the reliability of the numerical simulation in motion response was verified with those of the experiment method reported elsewhere. The simulation results showed that the responses of the surge, sway, heave, pitch, and yaw motion were not affected by changing the VCG, but the natural frequency and magnitude of the peak value of the roll motion response varied with the VCG.