• 제목/요약/키워드: 홀로그래피 속도계

검색결과 9건 처리시간 0.023초

홀로그래피 입자속도 측정시스템의 개발과 분무 액적에의 적용 (Development of Holographic Particle Velocimetry System and Its Application to Spray Droplets)

  • 추연준;강보선
    • 한국분무공학회지
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    • 제10권3호
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    • pp.17-28
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    • 2005
  • The Holographic Particle Velocimetry system can be a promising optical tool for the measurements of three dimensional particle velocities. In this study, diffused illumination holographic system to measure the sizes and 3D velocities of moving particles based on automatic image processing was developed. First of all basic optical systems for pulse laser recording, continuous laser reconstruction, and image acquisition, were constructed. To determine the position of particles in the optical axis, new three auto-focusing parameters(AEP), namely, Correlation Coefficient, Sharpness Index, and Depth Intensity were introduced and verified. The developed system was applied to spray droplets to validate the capability of the system. Three dimensional positions of particles viewed from two sides were decided using AFP and then 3D velocities of Particles were extracted by particle tracking algorithm. Comparison of measurement results of sizes and 3D velocities of particles with those obtained by laser instrument, PDPA, showed good consistency of the developed holographic system.

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스페클 간섭계의 원리와 전망 (Principles and Prospect of Speckle Pattern Interferometry)

  • 강영준
    • 한국정밀공학회지
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    • 제21권5호
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    • pp.7-13
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    • 2004
  • 간섭성 광원인 레이저를 이용한 계측 및 검사기법 중 대표적인 것이 홀로그래피를 이용한 간섭법(Holographic Interferometry, HI)이다. HI는 레이저 파장을 단위로 하기 때문에 물체변형에 대해 측정감도가 좋고 비파괴 비접촉의 계측이 가능하다. 또한 삼차원 정보 추출이 가능해서 주어진 간섭무늬로부터 전 영역의 변형을 구할 수 있다는 커다란 장점을 가지고 있다. 그러나 일반적으로 홀로그래피용 필름은 기록 및 현상방법이 성가시고 그 속도 또한 느릴 뿐만 아니라 간섭무늬 패턴도 매우 복잡해서 산업현장 등 실제의 응용에는 현실적인 어려움이 있다.(중략)

양 방향 홀로그래피를 이용한 분무 특성 해석 시스템 (Two-Side Holography System for the Measurements of Spray Characteristics)

  • 추연준;강보선
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.1755-1760
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    • 2004
  • The holographic velocimetry system has a significant potential for the measurements of three dimensional velocities of particles. In this study, orthogonal two-side holography system was developed to obtain three dimensional velocities and sizes of spray droplets. To get high quality of reconstructed images, singe-exposure holography at two time moments and two orthogonal sides was adopted instead of multi-exposure, single-side holography. From three dimensional positions of droplets determined by reconstruction and image processing system, the three dimensional velocities and sizes of each droplet was extracted using the PTV algorithm. To determine the position of particles in the optical axis, a new focusing parameter was introduced based on the correlation between two droplet images at the same distance. The measured results by holography system were compared with those by the PDPA.

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입자 홀로그래피에서 입자의 광축 방향 위치 특성에 관한 연구 (The Characteristics of the Particle Position Along an Optical Axis in Particle Holography)

  • 추연준;강보선
    • 대한기계학회논문집B
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    • 제30권4호
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    • pp.287-297
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    • 2006
  • The Holographic Particle Velocimetry system can be a promising optical tool for the measurements of three dimensional particle velocities. One of inherent limitations of particle holography is the very long depth of field of particle images, which causes considerable difficulty in the determination of particle positions in the optical axis. In this study, we introduced three auto-focusing parameters corresponding to the size of particles, namely, Correlation Coefficient, Sharpness Index, and Depth Intensity to determine the focal plane of a particle along the optical axis. To investigate the suitability of the above parameters, the plane image of dot array screens containing different size of dots was recorded by diffused illumination holography and the positions of each dot in the optical axis were evaluated. In addition, the effect of particle position from the holographic film was examined by changing the distance of the screen from the holographic film. All measurement results verified that the evaluated positions using suggested auto-focusing parameters remain within acceptable range of errors. These research results may provide fundamental information for the development of the holographic velocimetry system based on the automatic image processing.

역경계요소소법에 기초한 근접음장 음향홀로그래피에서 마이크로폰 이동 저감을 위한 반사체 이용 (Use of a reflective body for the reduction of the microphone movement in the near-field acoustical holography based on the inverse boundary element method)

  • 김성일;정지훈;이정권
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2006년도 추계학술대회논문집
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    • pp.510-514
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    • 2006
  • 역경계요소법에 기초한 근접음장 음향홀로그래피는 근접 음장에서의 음압 측정과 음향경계요소법을 이용한 전달함수를 이용하여 소음원의 특성을 재구성하고, 임의 형상의을 갖는 소음원을 재구성 할 수 있는 강점이 있지만, 음압 측정에 많은 마이크로폰이 필요로 한다. 많은 실험 비용을 줄이기 위해, 본 연구에서는 마이크로폰이 고정된 상태에서 반사체를 추가하여 음장을 변화시키고, 이 상태에서 측정된 음압을 음원 재구성의 추가 정보로 이용하는 방법이 제안되고, 적용예제로서 모터의 표면 속도를 재구성 하였다. 직육면체 강체 반사체를 이용하여, 각 마이크로폰 위치에서 2 배수의 음압을 얻어, 이를 재구성에 이용하였다. 또한 수치유효랭크를 이용하여 재구성에 사용된 모우드의 개수를 계산하였다.

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홀로그래피를 이용한 분무 액적의 3차원 속도 측정 (Measurements of Three-Dimensional Droplet Velocities Using the Holographic System)

  • 오대진;추연준;강보선
    • 한국분무공학회지
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    • 제6권4호
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    • pp.31-38
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    • 2001
  • The Holographic Particle Velocimetry system can be a promising optical tool for the measurements of three dimensional particle velocities. In this study, the holographic panicle velocimetry system was used to measure the sizes and velocities of droplets formed by a commercial full cone spray nozzle. Uncertainty analysis was performed to identify the sources of all relevant errors and to evaluate their magnitude. The droplet velocities ranged from 10.3 to 13.3 m/s with average uncertainty of ${\pm}1.6m/s$, which is ${\pm}14%$ of the mean droplet velocity. Compared with relatively small uncertainties of velocity components in the normal direction to the optical axis, the uncertainty of the optical axis component is ${\pm}3.6m/s$. This is due to the long depth of field of droplet images in the optical axis, which is inherent feature of holographic system using forward-scattering object wave of particles.

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홀로그래피를 이용한 분무 액적 속도 측정시스템 개발을 위한 실험적 검증 (Experimental Validation for the Development of Holographic Particle Velocimetry System for Spray Droplets)

  • 강보선;오대진;추연준
    • 대한기계학회논문집B
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    • 제26권4호
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    • pp.539-546
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    • 2002
  • The Holographic Particle Velocimetry system can be a promising optical tool leer the measurements of three dimensional particle velocities. In this research, validation experiments for the development of holographic particle velocimetry system for spray droplets were conducted with measuring the velocities of glass beads on a rotating disk. Uncertainty analysis was performed to identify the sources of all relevant errors and to evaluate their magnitude. The measurement results of distance between glass beads, size, and velocities obtained with holographic method are compared reasonably well with the known values within acceptable range of errors.

펄스 홀로그래프를 이용한 입자 속도 측정 시스템의 검증 실험 (Validation Experiments for a Holographic Particle Velocimetry System)

  • 오대진;추연준;강보선
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집E
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    • pp.714-719
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    • 2001
  • The Holographic Particle Velocimetry system can be a promising optical tool for the measurements of three dimensional particle velocities. In this research, the optical system for double pulse holographic recording and reconstruction of particle images was developed. Validation experiments for the developed system were conducted measuring the velocities of glass beads on a rotating disk. Uncertainty analysis was performed to identify the sources of all relevant errors and to evaluate their magnitude. The measurement results of distance between glass beads, size, and velocities of them using holographic method compared reasonalbly well with the known values within acceptable range of errors.

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음장의 공간적 변환기법을 이용한 타이어 구조 진동 소음 측정 (Measurement of Tire Structural Vibration Noise Using Spatial Transformation of Sound Field Technique)

  • 김병삼
    • 한국음향학회지
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    • 제14권5호
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    • pp.11-19
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    • 1995
  • 본 논문에서는 불규칙한 노면이 설치된 섀시 동력계(chassis dynamometer)로 부터 가진된 타이어의 구조 진동 소음을 음장의 공간적 변환기법을 이용하여 측정하였다. 음장의 공간적 변환기법은 소음원으로 부터 원거리까지의 전파를 계산하는 기법이다. 즉, 한평면의 음향 측정으로 부터 측정 평면에서 멀리 떨어지거나 더 가까운 평면에서의 음장을 표현하는 변수들인 음압, 음향 인텐시티, 입자속도 등을 계산한다. 측정 평면에서 음원쪽으로 가까운 평면의 계산은 관접음장 홀로그래피를 적용하여 계산하고 먼 쪽은 헬름흘쓰 적분식을 적용한다 측정결과로 부터 타이어 구조 진동 소음의 방사형태와 소음원의 위치를 예측하였다.

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