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      KCI등재 SCIE SCOPUS

      Density Acquisition and Aero-optics Measurement from BOS Images for a Hot Jet

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      https://www.riss.kr/link?id=A105909609

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      다국어 초록 (Multilingual Abstract)

      Acquiring density field of a flow is important to understand the flow structure, especially for studying aero-optics. Background-oriented schlieren (BOS) is one of a flow visualization technique which can obtain density field of the flow. Using BOS im...

      Acquiring density field of a flow is important to understand the flow structure, especially for studying aero-optics. Background-oriented schlieren (BOS) is one of a flow visualization technique which can obtain density field of the flow. Using BOS images density gradient can be acquired quantitatively and density field can be obtained when additional numerical method is applied. In this paper, density field of a hot jet is reconstructed from BOS images by assuming the jet as asymmetric flow and applying adaptive Fourier–Hankel Abel method. Reconstructed density field is evaluated by comparing with wavefront of the optical wave propagating through the hot jet. Optical path difference (OPD) is calculated from the reconstructed density field and compared with Shack–Hartmann (S–H) sensor measured OPD map. OPD obtained from the reconstructed density field and S–H sensor show similar tendency, especially when results are time averaged and turbulence characteristics are removed. Comparing RMS OPD of each time-averaged result show 8.8% error, which is within reasonable range. Thus, it seems that the density field acquisition using BOS technique is reliable for the hot jet flow.

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      참고문헌 (Reference)

      1 Goldhahn E, "The background oriented schlieren technique: sensitivity, accuracy, resolution and application to a three-dimensional density field" 43 : 241-249, 2007

      2 Settles GS, "Schlieren and shadowgraph techniques: visualizing phenomena in transparent media" Springer 2001

      3 Sourgen F, "Reconstruction of the density field using the colored background oriented technique (CBOS)" 50 : 29-38, 2012

      4 Jumper EJ, "Quantification of aero-optical phase distortion using the small-aperture beam technique" 33 (33): 2151-2157, 1995

      5 Thielicke W, "PIVlab-towards user-friendly, affordable and accurate digital particle image velocimetry inMATLAB" 2 (2): e30-, 2014

      6 Bicahl A, "On the application of background oriented schlieren for wavefront sensing" 25 : 015001-, 2014

      7 Yanta WJ, "Nearand farfield measurements of aero-optical effects due to propagation through hypersonic flows" 2000

      8 Tan DJ, "Measurement of density in axisymmetric jets using a novel background-oriented schlieren (BOS) technique" 56 : 204-, 2015

      9 Venkatakrishnan L, "Density measurements using the background oriented schlieren technique" 37 : 237-247, 2004

      10 van Hinsberg NP, "Density measurements using near-field background-oriented schlieren" 55 : 1720-, 2014

      1 Goldhahn E, "The background oriented schlieren technique: sensitivity, accuracy, resolution and application to a three-dimensional density field" 43 : 241-249, 2007

      2 Settles GS, "Schlieren and shadowgraph techniques: visualizing phenomena in transparent media" Springer 2001

      3 Sourgen F, "Reconstruction of the density field using the colored background oriented technique (CBOS)" 50 : 29-38, 2012

      4 Jumper EJ, "Quantification of aero-optical phase distortion using the small-aperture beam technique" 33 (33): 2151-2157, 1995

      5 Thielicke W, "PIVlab-towards user-friendly, affordable and accurate digital particle image velocimetry inMATLAB" 2 (2): e30-, 2014

      6 Bicahl A, "On the application of background oriented schlieren for wavefront sensing" 25 : 015001-, 2014

      7 Yanta WJ, "Nearand farfield measurements of aero-optical effects due to propagation through hypersonic flows" 2000

      8 Tan DJ, "Measurement of density in axisymmetric jets using a novel background-oriented schlieren (BOS) technique" 56 : 204-, 2015

      9 Venkatakrishnan L, "Density measurements using the background oriented schlieren technique" 37 : 237-247, 2004

      10 van Hinsberg NP, "Density measurements using near-field background-oriented schlieren" 55 : 1720-, 2014

      11 Venkatakrishnan L, "Density field measurements of a supersonic impinging jet with microjet control" 49 (49): 432-438, 2011

      12 Ota M, "Computedtomographic density measurement of supersonic flow field by colored-grid background oriented schlieren (CGBOS) technique" 22 : 104011-, 2011

      13 Sourgen FL, "Comparison between background oriented schlieren measurements (B.O.S.) and numerical simulations" 2004-2602, 2004

      14 Hartmann U, "Combining ART and FBP for improved fidelity of tomographic BOS" 27 : 097001-, 2016

      15 Raffel M, "Background-oriented schlieren (BOS) techniques" 56 : 60-, 2015

      16 Chehouani H, "Adaption of Fourier-Hankel method for deflection tomographic reconstruction of axisymmetric field" 52 (52): 439-448, 2013

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-10-01 평가 등재학술지 선정 (기타) KCI등재
      2011-01-01 평가 등재후보학술지 선정 (기타) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.37 0.2 0.3
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.26 0.24 0.394 0.03
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