• 제목/요약/키워드: Work motions

검색결과 240건 처리시간 0.026초

Study of Magnetohydrodynamic Turbulence Using Multi-frequency Synchrotron Polarization Observations

  • Lee, Hyeseung;Cho, Jungyeon;Lazarian, Alex
    • 천문학회보
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    • 제44권1호
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    • pp.44.2-44.2
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    • 2019
  • Turbulent motions perturb magnetic field lines and produce magnetic fluctuations. The perturbations leave imprints of turbulence statistics on magnetic field. Observation of synchrotron radiation is one of the easiest ways to study turbulent magnetic field. First, we obtained the spatial spectrum of synchrotron polarization so that shows how the spectrum is affected by Faraday rotation and how to recover the statistics of underlying turbulence magnetic field. Since polarized synchrotron intensity arising from magnetized turbulence are anisotropic along the direction of mean magnetic field. Secondly, we studied quadrupole ratio to quantitatively describe the degree of anisotropy introduced by magnetic field at multi-wavelengths. This work demonstrated that the spectrum and quadrupole ratio of synchrotron polarization can be very informative tools to get detailed information about the statistical properties of MHD turbulence from radio observations of diffuse synchrotron polarization.

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Influence of shear preload on wave propagation in small-scale plates with nanofibers

  • Farajpour, M.R.;Shahidi, A.R.;Farajpour, A.
    • Structural Engineering and Mechanics
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    • 제70권4호
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    • pp.407-420
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    • 2019
  • In the present work, an attempt is made to explore the effects of shear in-plane preload on the wave propagation response of small-scale plates containing nanofibers. The small-scale system is assumed to be embedded in an elastic matrix. The nonlocal elasticity is utilized in order to develop a size-dependent model of plates. The proposed plate model is able to describe both nanofiber effects and the influences of being at small-scales on the wave propagation response. The size-dependent differential equations are derived for motions along all directions. The size-dependent coupled equations are solved analytically to obtain the phase and group velocities of the small-scale plate under a shear in-plane preload. The effects of this shear preload in conjunction with nanofiber and size effects as well as the influences of the elastic matrix on the wave propagation response are analyzed in detail.

Motion and Total Force Distribution for a Floating Marine Structure in Finite-Depth Water

  • Jin-S.,Chung
    • 대한조선학회지
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    • 제13권2호
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    • pp.13-43
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    • 1976
  • A potential flow approach is used to develop a method and an associated computer program for floating marine structures of general configuration in wave of all water depths with arbitrary heading. It computes the total force distributions and six degrees-of-freedom motion. The hydrodynamic-force equations and derived become identical under certain assumptions to the equations commonly used by the offshore industry, and the two methods are compared in detail. The computed motions of all six degree agree quite well with model-scale and full-scale experimental data for two typical semisubmersible drilling rigs in finite-depth water. Also the presented motion computations are more accurate than a previous work by the second approach. The present computations use experimentally validated or determined values of frequency-dependent hydrodynamic coefficients with the effects of the free surface and both finite and infinite water depths. The present method generates sufficient computation accuracy to use for practical design applications.

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Biomechanical model of pushing and pulling

  • Lee, K.S.
    • 대한인간공학회지
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    • 제1권2호
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    • pp.3-9
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    • 1982
  • This study demonstrates that certain personal and task factors can be modelled to predict slip potential as well as back loadings durings dynamic pushing and pulling tasks. Such tasks are com- mon to many manual material handling jobs in industry and the results of this work will hopefully be of use in improved job design. The objective of this research is to formulate and validate a dynamic biomechanical model of pushing and pulling a cart. For pushing and pulling tasks, the model can : (1) estimate foot forces for given hand forces, and (2) estimate tors muscle and vertabral column loadings. In order to formulate and validate the model, experiments involving pushing and pulling of a cart were performed. These experiments produced data of the following type : (1) dynamic forces on the feet, (2) hand forces required to move the cart, (3) body motions as functions of various cart motion and (4) back muscle actions. The model was validated using three different methods; precision was tested using correlation between predicted and measured results, accuracy using standard error between of predicted and measured results, and intuitive comparison of predicted results using sensitivity analyses.

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복합곡선으로 이루어진 캠의 설계에 관한 연구 (Study on BLENDED CAM DESIGN)

  • 양민양;손태영
    • 한국정밀공학회지
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    • 제12권9호
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    • pp.59-65
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    • 1995
  • The cam is used to a main component in a variety of automatic machines and instruments. To meet the demand of a complicated operation and of reducing weight for automatic machine, Curve Blending Technology, in which each of the basic curves suitable for individual interval is connected, is used for the cam design. In the curve blending, it is necessary to select appropriate elementary curve for each interval and to confirm the dynamic continuity at connecting points between adjoining elementary curves. This paper represented the elementary curve selection method to select an appropriate curve for each interval, and executed computation for the follower displacement and angular displacement of each interval. The paper made an analysis and examine closely for elementary curves to synthesizing curve blending, and it performed dynamic conditions clearly at every points on the cam motions. Therefore the curve blending technology presented by the paper turned into easier work.

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On the Hydrodynamic Forces of Oscillating Cylinders in the Presence of a Free Surface

  • Hwang, J.H.;Rhee, K.P.;Hong, S.W.
    • 대한조선학회지
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    • 제17권4호
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    • pp.13-20
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    • 1980
  • The integral equation method to solve the boundary-value problem of a 2-dimensional body oscillating in the presence of a free surface generally breaks down at and near irregular frequencies due to the hypothetical flow inside the body. In this paper singularity distributions were extended to an inner free surface to remove the irregular frequency as Ohmatsu's work in 1978, and the solution for the above problem was found by using stream function. For various bodies including Lewis form cylinders, the hydrodynamic forces were calculated numerically at various wave numbers. From the results we concluded that the irregular frequencies can be removed even for the Lewis form cylinder as Ohmatsu done for circular cylinders, and calculated hydrodynamic forces by the present method are little higher than those of Ohmatsu's when the singularities are put on the inner free surface of the body. We specially point out that the solution for heaving motion converges in an oscillatory manner but not for swaying and rolling motions.

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Size dependent torsional vibration of a rotationally restrained circular FG nanorod via strain gradient nonlocal elasticity

  • Busra Uzun;Omer Civalek;M. Ozgur Yayli
    • Advances in nano research
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    • 제16권2호
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    • pp.175-186
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    • 2024
  • Dynamical behaviors of one-dimensional (1D) nano-sized structures are of great importance in nanotechnology applications. Therefore, the torsional dynamic response of functionally graded nanorods which could be used to model the nano electromechanical systems or micro electromechanical systems with torsional motion about the center of twist is examined based on the theory of strain gradient nonlocal elasticity in this work. The mathematical background is constructed based on both strain gradient theory and Eringen's nonlocal elasticity theory. The equation of motions and boundary conditions of radially functionally graded nanorods are derived using Hamilton's principle and then transformed into the eigenvalue analysis by using Fourier sine series. A general coefficient matrix is obtained to assemble the Stokes' transformation. The case of a restrained functionally graded nanorod embedded in two elastic springs against torsional rotation is then deeply investigated. The effect of changing the functionally graded index, the stiffness of elastic boundary conditions, the length scale parameter and nonlocal parameter are investigated in detail.

Semi-active vibration control using experimental model of magnetorheological damper with adaptive F-PID controller

  • Muthalif, Asan G.A.;Kasemi, Hasanul B.;Nordin, N.H. Diyana;Rashid, M.M.;Razali, M. Khusyaie M.
    • Smart Structures and Systems
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    • 제20권1호
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    • pp.85-97
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    • 2017
  • The aim of this research is to develop a new method to use magnetorheological (MR) damper for vibration control. It is a new way to achieve the MR damper response without the need to have detailed constant parameters estimations. The methodology adopted in designing the control structure in this work is based on the experimental results. In order to investigate and understand the behaviour of an MR damper, an experiment is first conducted. Force-displacement and force-velocity responses with varying current have been established to model the MR damper. The force for upward and downward motions of the damper piston is found to be increasing with current and velocity. In cyclic motion, which is the combination of upward and downward motions of the piston, the force with hysteresis behaviour is seen to be increasing with current. In addition, the energy dissipated is also found to be linear with current. A proportional-integral-derivative (PID) controller, based on the established characteristics for a quarter car suspension model, has been adapted in this study. A fuzzy rule based PID controller (F-PID) is opted to achieve better response for a varying frequency input. The outcome of this study can be used in the modelling of MR damper and applied to control engineering. Moreover, the identified behaviour can help in further development of the MR damper technology.

소형 해상 부유체의 확률 기반 위기평가기법 (Probability Based Risk Evaluation Techniques for the Small-Sized Sea Floater)

  • 임정빈
    • 한국항해항만학회지
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    • 제36권10호
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    • pp.795-801
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    • 2012
  • 본 논문에서는 요트 계류장과 같은 소형 해상 부유체의 위기수준을 모니터링하기 위한 확률 기반 위기평가기법(Probability based risk Evaluation Techniques, PET)의 이론적인 접근 방법을 기술하였다. PET는 5단계 척도의 위기 기준을 이용한 위기 판단 절차가 핵심 개념이다. 이러한 5단계 척도들은 폐형 공식을 이용한 해상 부유체 운동의 응답함수에 대한 누적확률분포에서 계산했다. 그리고 위기기준을 갖는 PET의 위기판단 절차를 제안하였다. PET의 유용성 검증을 위하여 시뮬레이션 실험을 하였는데, 실험에는 해상 부유체의 운동 측정에 사용할 ADIS16405 센서의 전기특성을 갖는 모의 신호를 이용하였다. 실험결과, PET의 위기평가 오차는 최대 5.0 수준에서 0.38 수준으로 나타났다. 이 결과로부터 제안한 PET가 모니터링 기법으로 사용 가능함을 확인하였다.

감시 영상에서의 장면 분석을 통한 이상행위 검출 (Detection of Abnormal Behavior by Scene Analysis in Surveillance Video)

  • 배건태;어영정;곽수영;변혜란
    • 한국통신학회논문지
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    • 제36권12C호
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    • pp.744-752
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    • 2011
  • 지능형 감시 분야에서 이상행위를 검출하는 것은 오랫동안 연구되어온 주제로 다양한 방법들이 제안되어 왔다. 그러나 많은 연구가 움직이는 객체의 개별적인 추적이 가능하다는 것을 전제로 하여 찾은 가려짐이 발생하는 실생활에 적용하는데 한계가 있다. 본 논문에서는 객체 추적이 어려운 복잡한 환경에서 장면의 주된 움직임을 분석하여 비정상적인 행위를 검출하는 방법을 제안한다. 먼저, 입력영상에서 움직임 정보를 추출하여 Visual Word와 Visual Document를 생성하고, 문서 분석 기법 중 하나인 LDA(Latent Dirichlet Allocation 알고리즘을 이용하여 장면의 주요한 움직임 정보j위치, 크기, 방향, 분포)를 추출한다. 이렇게 분석된 장면의 주요한 움직임과 입력영상에서 발생한 움직임과의 유사도를 분석하여 주요한 움직임에서 벗어나는 움직임을 비정상적인 움직임으로 간주하고 이를 이상행위로 검출하는 방법을 제안한다.