• 제목/요약/키워드: mode shape function

검색결과 177건 처리시간 0.024초

벡터 트리거조건에 의한 Random Decrement 함수의 모우드 해석 (Modal Analysis of the Vector Triggering Random Decrement Function)

  • 정범석;이외득
    • 한국전산구조공학회논문집
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    • 제15권2호
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    • pp.209-218
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    • 2002
  • Vector Random Decrement(VRD) 기법은 상시하중을 받는 선형의 구조물에서 동적응답의 장시간기록을 자유진동신호로 전환시키는 효과적인 알고리즘으로 발전되어 왔으며, 이에 따른 VRD함수는 실측한 자유감쇄응답과 거의 동일하게 모우드변수에 대한 정보를 갖는다. 본 연구에서는 모우드형상비의 개념을 동특성 평가과정인 Ibrahim Time Domain (ITD) 알고리즘에 적용하여 VRD 기법을 개선하였다. 제안된 기법에서는 이동시간의 보정과정에서 VRD 함수가 변환되지 않기 때문에 벡터 트리거조건에 적용된 최대 이동시간 영역의 정보가 VRD 함수에 누락 없이 포함되고 입력하중의 영향은 평균과정에서 소거된다. 제안된 기법에 의한 모우드변수의 추정결과를 일반적인 Random Decrement(RD) 기법과 비교하였으며, VRD 기법의 적용성을 모의 예제해석과 상시하중이 재하된 보의 실내실험으로 검증하였다.

T-접합 도파관의 수치적 해석 (Numerical Analysis of Waveguide T-Junction)

  • 천창율;정진교
    • 산업기술연구
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    • 제13권
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    • pp.25-31
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    • 1993
  • This paper presents an analysis of microwave device component. An H-Plane waveguide component with arbitrary shape is analyzed using finite element method(FEM) cooperated with boundary element method(BEM). The finite element method(FEM) is applied to the junction region and the boundary element method(BEM) to the waveguide region. For the application of BEM in the waveguide structure, a ray representation of the waveguide Green's function is used. The proposed technique was applied to the analysis of the waveguide inductive junction to compare the numerical result with the result of the mode matching technique. The comparison showed good agreements between the two results. Transmitted powers were also computed in T-junction waveguides for the various shape of the junction area.

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ADJOINT METHOD FOR CONTROLLED CAVITATION INVERSE NOZZLE DESIGN

  • Petropoulou, S.;Gavaises, M.;Theodorakakos, A.
    • International Journal of Automotive Technology
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    • 제7권3호
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    • pp.283-288
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    • 2006
  • A mathematical methodology is proposed for designing nozzle hole shapes producing controlled geometric cavitation. The proposed methodology uses an unstructured RANS flow solver, with the ability to compute sensitivity derivatives via an adjoint algorithm. The adjoint formulation for the N-S equations is presented while variation of the turbulence viscosity is not taken into account during the geometry modifications. The sensitivities are calculated in a mode independently of the shape parameterisation. The method is used to develop and evaluate conceptual shapes for nozzle hole cavitation reduction. The localized region at the hole inlet producing cavitation, is parameterised using its radius of curvature, while a cost function is formulated to eliminate the negative pressures present at this location. Sensitivity derivatives are used to assess the dependence of the localized region on the minimum pressure, and to drive the geometry to the targeted shape. The results show that the computer model can provide nozzle hole entry shapes that produce predefined flow characteristics, and thus can be used as an inverse design tool for nozzle hole cavitation control.

Progressive fracture analysis of concrete using finite elements with embedded displacement discontinuity

  • Song, Ha-Won;Shim, Byul;Woo, Seung-Min;Koo, Ja-Choon
    • Structural Engineering and Mechanics
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    • 제11권6호
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    • pp.591-604
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    • 2001
  • In this paper, a finite element with embedded displacement discontinuity which eliminates the need for remeshing of elements in the discrete crack approach is applied for the progressive fracture analysis of concrete structures. A finite element formulation is implemented with the extension of the principle of virtual work to a continuum which contains internal displacement discontinuity. By introducing a discontinuous displacement shape function into the finite element formulation, the displacement discontinuity is obtained within an element. By applying either a nonlinear or an idealized linear softening curve representing the fracture process zone (FPZ) of concrete as a constitutive equation to the displacement discontinuity, progressive fracture analysis of concrete structures is performed. In this analysis, localized progressive fracture simultaneous with crack closure in concrete structures under mixed mode loading is simulated by adopting the unloading path in the softening curve. Several examples demonstrate the capability of the analytical technique for the progressive fracture analysis of concrete structures.

승용차의 도로면 발생 소음 개선을 위한 시험 및 평가 연구 (Integrated Test and Evaluation for Improvement of Vehicle Road Noise)

  • 고강호;허승진;국형석
    • 한국소음진동공학회논문집
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    • 제13권5호
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    • pp.327-333
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    • 2003
  • Several tests are performed to evaluate road booming noise. Baseline test delivers the information of road noise characteristics. Coupling effect between structure and acoustics is obtained from the mode shapes and the natural frequencies by the modal test. Equivalent stiffness at joint areas between chassis and car-body system can be determined by the input point inertance test. Noise sensitivity of body mounting point of a chassis part can be obtained from the noise transfer function test with input point inertance test. Operational deflection shape makes us analyze the actual vibration modes of the chassis system under actual leading and find noise sources very easily. Finally, the transfer path analysis is used to Identify noise Paths through the chassis system. The objectives and the procedures of the tests are described in this Paper Also, the guideline for efficient road noise evaluation test can be found.

V노치 또는 예리한 균열을 가지는 직사각형 평판의 굽힘 진동 (Flexural Vibrations of Rectangular Plates Having V-notches or Sharp Cracks)

  • 정희영;정의영;김주우
    • 한국소음진동공학회논문집
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    • 제14권4호
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    • pp.336-343
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    • 2004
  • This paper reports the first known free vibration data for thin rectangular plates with V-notches. The classical Ritz method is employed with two sets of admissible functions assumed for the transverse vibratory displacements. These sets include (1) mathematically complete algebraic-trigonometric polynomials which guarantee convergence to exact frequencies as sufficient terms are retained, and (2) corner functions which account for the bending moment singularities at the sharp reentrant corner of the Y-notch. Extensive convergence studies summarized herein confirm that the corner functions substantially enhance the convergence and accuracy of nondirectional frequencies for rectangular plates having the V-notch. In this paper, accurate frequencies and normalized contours of vibratory transverse displacement are presented for various notched plates, so that the effect of corner stress singularities may be understood.

피코초 분해능의 시간 상관 단광자 계수 장치 구성 및 동작 특성 (Construction and Performance Characterization of Time-correlated Single Photon Counting System having Picosecond Resolution)

  • 이민영;김동호
    • 한국광학회지
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    • 제5권1호
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    • pp.90-99
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    • 1994
  • 모드록킹된 피코초 레이저, 고속전자장치, 전자관형 광증배관 등을 사용하여, 피코초 분해능을 갖는 시간상관 단광자 계수 장치 및 시분해 스펙트럼 측정 장치를 제작하였다. 기기감음함수는 레이저의 펄스모양, 고속전자장치의 timing jitter 및 walk, 광증배관과 증폭기의 특성에 민감함을 보여주었다. 광학계의 분산등을 보정하여 25 ps의 반치폭을 갖는 기기감응함수를 얻었으며, 이와 같은 결과는 이 장치를 사용할 경우 deconvolution을 통하여 10 ps 이하의 분해능으로 피코초에서 마이크로초의 넓은 범위에 걸쳐서 여기상태 소멸시간의 측정이 가능함을 보여준다.

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실험모드해석에 의한 다점지지된 연속원통셸의 진동특성에 관한 연구 (A Study on the Vibrational Characteristics of the Continuous Circular Cylindrical Shell with the Multiple Supports Using the Experimental Modal Analysis)

  • 한창환;이영신
    • 한국소음진동공학회논문집
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    • 제11권4호
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    • pp.43-51
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    • 2001
  • An experimental modal analysis is the process to identify structure's dynamic characteristics such as resonant frequencies, damping values and mode shapes. An experimental model was made of stainless steel in the shape of a circular cylindrical shell and installed on the test bed with jigs. For investigating vibrational characteristics of the continuous circular cylindrical shell with intermediate supports, modal testing is performed by using impact hammer, accelerometer and 8-channel FFT analyzer. The frequency response function(FRF) measurements are also made on the experimental model within the frequency range from 0 to 4kHz. Modal parameters are identified from resonant peaks in the FRF's and animated deformation patterns associated with each of the resonances are shown on a computer screen. The experimental results are compared with analytical and FEA results.

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임의 형상 고정단 평판의 고정밀도 고유치 해석을 위한 파동 함수 기반 무요소법 (Meshless Method Based on Wave-type Function for Accurate Eigenvalue Analysis of Arbitrarily Shaped, Clamped Plates)

  • 강상욱
    • 한국소음진동공학회논문집
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    • 제26권5호
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    • pp.602-608
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    • 2016
  • The paper proposes a practical meshless method for the free vibration analysis of clamped plates having arbitrary shapes by extending the non-dimensional dynamic influence function (NDIF) method, which was developed by the author in 1999. In the proposed method, the domain and boundary of the plate of interest are discretized using only nodes without elements unlike FEM and the system matrices are obtained by making domain nodes and boundary nodes satisfy the governing differential equation and boundary conditions, respectively. However, since the above system matrices are not square ones, the problem of free vibrations of clamped plates is not reduced to an algebraic eigenvalue problem. An additional theoretical treatment is considered to produce an algebraic eigenvalue problem. It is revealed from case studies that the proposed method is valid and accurate.

승용차 타이어의 진동 특성에 관한 연구 (A study on the vibration characteristics of pssenger car radial tire)

  • 김병삼;이태근;양성모;정태진
    • 오토저널
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    • 제15권2호
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    • pp.76-83
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    • 1993
  • The vibration characteristics of radial tire are studied. In order to obtain theoretical natural frequency and mode shape, the plane vibration of a tire is modeled to that of circular beam. By using the Tielking method based on Hamilton's principle, theoretical results are determined by considering tension force due to tire inflation pressure, rotational velocity and tangential, radial stiffness. Modal parameters varying the inflation pressure are determined experimentally by using the transfer function method. Results show that material property and wear are parameter for shifting of natural frequency and damping.

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