• 제목/요약/키워드: Destructive Interference

검색결과 48건 처리시간 0.032초

상(이미지)/회절도형 형성의 광학적 원리를 이해하기 위한 실험장치 제작 (An Experimental Device for Understanding the Optical Principles of Image/Diffraction Formation)

  • 김진규;정종만;김문창;최주형;김윤중
    • Applied Microscopy
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    • 제37권3호
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    • pp.199-208
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    • 2007
  • 본 장치는 실험자가 레이저 빔과 광학 렌즈를 조정하여 이미지 및 회절도형의 형성, 보강 및 소멸간섭과 같은 파동광학 현상을 이해하도록 제작된 실험 장치이다. 실험장치는 광원으로 쓰이는 레이저빔과 빔의 광축을 정렬하는 광원 부분과 시료대, 대물렌즈, 중간렌즈, 확대렌즈, CCD system, 컴퓨터, 그리고 렌즈를 상하 조절하는 경통부분으로 구성된다. 본 장치를 통해서 다양한 회절격자의 이미지 및 회절도형을 최대 약 44배 확대할 수 있고, 최대 약 5um의 분해능을 가지고 분석할 수 있다. 이 장치는 전자현미경 이용자들이 TEM의 원리를 보다 쉽게 이해하는데 도움을 주리라 기대한다.

표면파 분산특성과 전기비저항 분포특성에 대한 인접구조물의 영향 (Influence of Adjacent Structures on Surface-Wave Dispersion Characteristics and 2-D Resistivity Structure)

  • 조성호;김봉찬;조미라;김석철;윤대희;홍재호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.1318-1327
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    • 2008
  • Geotechnical sites in urban areas may have embedded structures such as utility lines and underground concrete structures, which cause difficulties in site investigation. This study is a preliminary research to establish knowledge base for developing an optimal technique for site investigation in urban areas. Surface-wave method and resistivity survey, which are frequently adopted for non-destructive site-investigation for geotechnical sites, were investigated to characterize effects of adjacent structures. In case of surface wave method, patterns of wave propagation were investigated for typical sets of multi-layered geotechnical profiles by numerical simulation based on forward modeling theory and field experiments for small-size model tests and real-scale tests in the field. In case of resistivity survey, 3-D finite element analyses and field tests were performed to investigate effects of adjacent concrete structures. These theoretical and experimental researches for surface-wave method and resistivity survey resulted in establishing physical criteria to cause interference of adjacent structures in site investigation at urban areas.

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극미소 부분방전 측정시스템의 설계 및 제작 (Design and Fabrication of an Ultra-low Partial Discharge Measurement System)

  • 서황동;송재용;문승보;길경석;권장우
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2005년도 추계종합학술대회
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    • pp.208-211
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    • 2005
  • This paper presents an ultra-low partial discharge(PD) measurement system that has been accepted as a non-destructive method to estimate electrical insulation of low-voltage electric devices. The PD measurement system is composed of a coupling network, a low noise amplifier, and associated electronics. A shielding box is used to make a better condition against electromagnetic interference. A low cut-off frequency of the coupling network was 1MHz(-3 dB). Calibration tests on laboratory set-up have shown that the PD measurement system has a stable sensitivity of 11.4mV/pC. In an application experiment on a low-voltage induction motor(5HP), we could detect 0.77pC level of partial discharge pulse at the applied voltage of AC 664 V$_{peak}$.

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Optical-fiber Electronic Speckle Pattern Interferometry for Quantitative Measurement of Defects on Aluminum Liners in Composite Pressure Vessels

  • Kim, Seong Jong;Kang, Young June;Choi, Nak-Jung
    • Journal of the Optical Society of Korea
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    • 제17권1호
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    • pp.50-56
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    • 2013
  • Optical-fiber electronic speckle pattern interferometry (ESPI) is a non-contact, non-destructive examination technique with the advantages of rapid measurement, high accuracy, and full-field measurement. The optical-fiber ESPI system used in this study was compact and portable with the advantages of easy set-up and signal acquisition. By suitably configuring the optical-fiber ESPI system, producing an image signal in a charge-coupled device camera, and periodically modulating beam phases, we obtained phase information from the speckle pattern using a four-step phase shifting algorithm. Moreover, we compared the actual defect size with that of interference fringes which appeared on a screen after calculating the pixel value according to the distance between the object and the CCD camera. Conventional methods of measuring defects are time-consuming and resource-intensive because the estimated values are relative. However, our simple method could quantitatively estimate the defect length by carrying out numerical analysis for obtaining values on the X-axis in a line profile. The results showed reliable values for average error rates and a decrease in the error rate with increasing defect length or pressure.

Improving aeroelastic characteristics of helicopter rotor blades in forward flight

  • Badran, Hossam T.;Tawfik, Mohammad;Negm, Hani M.
    • Advances in aircraft and spacecraft science
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    • 제6권1호
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    • pp.31-49
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    • 2019
  • Flutter is a dangerous phenomenon encountered in flexible structures subjected to aerodynamic forces. This includes aircraft, helicopter blades, engine rotors, buildings and bridges. Flutter occurs as a result of interactions between aerodynamic, stiffness and inertia forces on a structure. The conventional method for designing a rotor blade to be free from flutter instability throughout the helicopter's flight regime is to design the blade so that the aerodynamic center (AC), elastic axis (EA) and center of gravity (CG) are coincident and located at the quarter-chord. While this assures freedom from flutter, it adds constraints on rotor blade design which are not usually followed in fixed wing design. Periodic Structures have been in the focus of research for their useful characteristics and ability to attenuate vibration in frequency bands called "stop-bands". A periodic structure consists of cells which differ in material or geometry. As vibration waves travel along the structure and face the cell boundaries, some waves pass and some are reflected back, which may cause destructive interference with the succeeding waves. In this work, we analyze the flutter characteristics of a helicopter blades with a periodic change in their sandwich material using a finite element structural model. Results shows great improvements in the flutter forward speed of the rotating blade obtained by using periodic design and increasing the number of periodic cells.

Selection of PAUT probes for submarine pressure hull integrity assessment

  • Jung, Min-jae;Park, Byeong-cheol;Lim, Chae-og;Lee, Jae-chul;Shin, Sung-chul
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제12권1호
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    • pp.578-595
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    • 2020
  • Submarine pressure hulls must withstand high hydraulic pressure and be free of defects. To improve the precision of defect detection, we herein examined different probes for optimal defect assessment by applying the Phased Array Ultrasonic Testing (PAUT) method. Two sets of probe design parameters were selected by considering pressure hull characteristics and analyzed through modeling. PAUT probes were applied, and defect assessment results were compared based on ultrasonic signals of various simulated defects in specimens designed to be the same as actual pressure hulls. The final selected design parameters for the submarine probe, which were designed to minimize the grating lobe of wave interference effect and improve the ultrasonic resolution of pressure hull welds, were identified through the experiment. The improvement in the probe's ability to detect defects in a pressure hull was verified. Furthermore, the accuracy of defect length measurement was improved, enhancing the applicability of the technique.

High sensitivity determination of iridium contents in ultra-basic rocks by INAA with coincidence gamma-ray detection

  • Ebihara, Mitsuru;Shirai, Naoki;Kuwayama, Jin;Toh, Yosuke
    • Nuclear Engineering and Technology
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    • 제54권2호
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    • pp.423-428
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    • 2022
  • Very low contents (in the range of 10-9 g/g) of Ir in mantle-derived rock samples (komatiites) were non-destructively determined by INAA coupled with coincidence gamma-ray spectrometry using 16 Ge detectors. Aliquots of the same samples were analyzed by NiS fire-assay ICP-MS for Ir and other platinum group elements. Because the INAA procedure used in this study is non-destructive and is almost free from spectral interference in gamma-ray spectrometry, the INAA values of Ir contents obtained in this study can be highly reliable. Iridium values obtained by ICP-MS were consistent with the INAA values, implying that the ICP-MS values of Ir obtained in this study are equally reliable. Under the present experimental conditions, detection limits were estimated to be 1 pg/g, which corresponds to 0.1 pg for a sample mass of 0.1 g. These levels can be even lowered by an order of magnitude, if necessary, which cannot be achieved by ICP-MS carried out in this study.

APPLICATION OF BENFOR'S EQUATIONS TO THE PROBLEM OF "SEEING THROUGH LAYERS"

  • Krivoshiev, Georgi -P.;Chalucova, Raina-P.;Dahm, Donald-J.
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.1132-1132
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    • 2001
  • This work is a further development of the method created by G. Krivoshiev in 1996 for elimination of peel interference and prediction of fruit flesh optical density. In this investigation, as it was earlier, the objects are observed as being structured by three successive layer “AlongrightarrowOlongrightarrowB” denoting “peel-flesh-peel”. In the first version of the method the transmittances of the surface layers A and B were measured according to Kubelka-Munk theory by means of their diffuse reflectance. At that the overall transmittance T was approximated in the form of a multiplication approximation being valid for plane-parallel layers of a non-scattering material. In this work this approximation was done away with applying the theory of discontinuum, respectively Benfor's equations. As a result two mathematical models were created for non-destructive prediction of fruit flesh optical density. These models are different from the ones based solely on Kubelka-Munk theory, the destruction being marked by the terms 1n (1 - $R_{A}R_{0}$) and 1n (1 - $R_{A}R_{B}$), where: $R_{A}$ and $R_{B}$ are reflectance values for the surface layers A and B; $R_{0}$ is the average reflectance of the internal layer that could be obtained empirically by means of a preliminary measurement of sufficiently large number of physically peeled fruits of a given species and variety.

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주파수 종속 다중경로 페이딩이 비코히어런트 수중통신시스템에 미치는 영향 (Effect of frequency dependent multipath fading on non-coherent underwater communication system)

  • 김종주;박지현;배민자;박규칠;윤종락
    • 한국음향학회지
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    • 제35권4호
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    • pp.295-302
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    • 2016
  • 수중음향 채널은 다양한 경로들이 상호 간섭하여 주파수에 따른 보강 또는 상쇄 간섭을 보이는 다중경로 페이딩 채널로 정의된다. 따라서 수신신호의 신호 대 잡음비는 주파수에 따라 변화한다. 아울러 해면변동은 해면 반사경로의 코히어런트 성분의 주파수에 따른 시변 페이딩을 야기한다. 주파수 편이 키잉 시스템은 이러한 간섭과 페이딩에 덜 민감하여 강인한 시스템으로 알려져 있으며 전송률을 높이기 위해 다진 주파수 편이 키잉 시스템으로 사용되고 있다. 본 연구에서는 4 채널 4진 주파수 편이 키잉 시스템의 비트오류율을 천해 다중경로 채널에서 실험하였다. 실험결과 주파수 종속 시변 수중 음향 다중경로 페이딩은 연집오류를 발생시키는 특성을 보여 리드 솔로몬 코드가 4진 주파수 편이 키잉 시스템의 비트오류율을 효과적으로 경감시키는지를 보였다. 따라서 데이터 전송율 혹은 송수신기 거리에 따른 비트 오류율은 채널의 대역폭뿐만 아니라 주파수 종속 다중 경로 페이딩에 좌우됨을 보인다.

토양, 지하수 중 미세플라스틱 분석법에 관한 고찰 (The review on standard method of microplastics in soil and groundwater)

  • 권종범;최현희;박선화
    • 분석과학
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    • 제37권3호
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    • pp.174-188
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    • 2024
  • 본 연구에서는 토양 및 지하수 중 미세플라스틱(MP) 분석법 표준화를 위해 관련 국내·외 연구동향을 검토하고 매체 별 시료채취 방법, 전처리 방법 및 분석 장치의 종류 등에 관한 대표적인 방법을 리뷰하였다. 토양 시료채취는 시료채취 지점선정, 채취 깊이 및 시료량을 고려하고 있으며 대부분 15 cm 이내(표토) 깊이에서 약 1 kg의 시료를 혼합채취하는 것으로 파악되었다. 지하수 시료채취는 정치방법과 연속흐름방법 중 연속흐름방식이 대표적이고 채취량 300~1,000 L 구간에서 유량 2~6 L/min로 채취하며 현장 여과하였다. 처리 방법은 두 매체에 공통적으로 유기물 분해와 밀도차 분리로 나뉘며 유기물 분해방법인 H2O2, 산, 알칼리, 효소 활용 중 H2O2가 추천된다. 밀도 분리는 NaCl, ZnCl2, ZnBr2 등의 시약 중 NaCl이 주로 사용되나 분석하고자 하는 MP의 밀도에 따라 시약을 선택적으로 활용할 수 있다. 분석 기기는 비파괴적 분석법인 FTIR, Raman과 파괴 분석법인 Py-GC/MS가 대표적이다. µ-FTIR은 직경 10 ㎛ 이상 Raman은 1 ㎛ 이상의 MP 재질과 개수 분석이 가능하나 전처리를 통해 유기물과 같은 분광분석의 방해요소를 충분히 제거해야 한다. Py-GC/MS는 복잡한 전처리가 필요 없고 특정 재질의 정량분석이 가능하여 지속적으로 연구되어지고 있다.