• Title/Summary/Keyword: 수중음압

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The Analysis of the 3D underwater radiated noise pattern of cylinder structure using the underwater experiment (수중 실험을 통한 원통구조물의 3차원 수중 방사패턴 산출기법)

  • Yi, Jongju;Jung, Woojin;Kang, Myunghwan;Han, Seungjin
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2014.10a
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    • pp.407-408
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    • 2014
  • 본 논문은 3차원 수중방사패턴 예측을 위하여 수중구조물의 표면진동장을 이용하여 3 차원 원음장 패턴을 예측한 뒤 수중구조물의 근접음장 계측데이터를 활용하여 산출된 원음장 음향파워를 이용하여 산출된 원음장 패턴의 음압크기를 보정하였고 이를 실험데이터와 비교 분석한 논문이다.

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Analysis of the Sound Source Field Using Spatial Transformation of the Sound Pressure in a Near-field (근거리 음압의 공간 변환에 의한 음원의 음장 분포 해석)

  • 김원호;윤종락
    • The Journal of the Acoustical Society of Korea
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    • v.22 no.8
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    • pp.660-669
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    • 2003
  • This paper describes a theory to calculate sound source field from the spatial transform of sound field and the measured cross-power spectrum of sound pressure over a hologram plane close to a sound source, Calculating method is proposed to solve sound pressures from cross-power spectrums over a hologram plane, For this, Taylor series for the nonlinear equations is expanded, and it is calculated using Newton-Raphon method, Also, a wave number filter is used to reduce errors that is occurred on the backward propagation, and is performed numerical simulation of the circular piston sound source with infinite baffle in water to verify the proposed theory.

A Thronging Response of the Shoal of Rudder Fish , Seriola Dumerili ( Risso ) to Audible Underwater Sound (수중 가청음에 대한 잿방어 어군의 유집 반응)

  • 이창헌
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.33 no.4
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    • pp.285-289
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    • 1997
  • A Held experiment was carried out to confirm the effect of underwater sound on the luring of fish school of rudder fish in a set net at the coast of Cheju Island. The effects of the acoustic emission on the luring of fish school were observed at a cage around a set net fishing ground using a manufactured underwater speaker. Underwater sounds that were emitted for the luring of fish school were the pure sounds of which frequency were 300Hz and 400Hz, engine noise and swimming sound. The results of the observation are as follows : 1. The input and output wave forms of a manufactured underwater speaker in water tank were similar to those in measurement frequencies. The result of the observation indicated that it could be used for the purpose of the sound emission in measurement frequencies. 2. The effect of the emitted pure sound of 300Hz, 400Hz was remarkable for the luring of fish school in 2 minutes after the sound emission. The reaction of fish school was more sensitive to the pure sound of 400Hz than 300Hz. 3. The effect of the emitted engine noise was more remarkable than that of the pure sound for 3 minute continuously. On the feeding sound, fish formed a shoal and swimmed, but didn't gather around the underwater speaker. 4. The feeding and swimming sound spectra on rudder Hsh showed similar sound pressure distribution each other, they appeared low sound pressure in frequencies of 200-600Hz.

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The Hearing Ability of Coralfish Chromis notatus to Low Frequency Sound 2. The Auditory Critical Ratio and Hearing Index (저주파음에 의한 자리돔의 청각 능력 2. 청각 임계비 및 청각능력지수)

  • 이창헌;서두옥
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.36 no.4
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    • pp.314-321
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    • 2000
  • In order to obtain the fundamental data on the auditory thresholds of fishes for catching method using low frequency sound, the auditory thresholds of coralfish Chromis notatus were measured in the presence of masking noise in the spectrum level range of 73~83dB re l$\mu$Pa/√Hz by heartbeat conditioning technique using pure tones coupled with a delayed electric shock. Critical ratios were about 23~41dB at measurement frequency, The critical ratio increased almost linearly with increasing frequency from 500Hz. The noise spectrum level at the start of masking was about 60~65dB. This suggests that hearing of coralfish is masked in the natural environment with the noise spectrum level above 60dB. The sound pressure level of which the signal sound of 300Hz is recognized by coralfish under the ambient noise is above 88dB and the critical ratio of them is above 23dB. The hearing index of coralfish with ambient noise was 81.

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Acoustic Characteristics Analysis of piezoelectric Underwater Acoustic Sensors Using Finite Element Method. (유한요소법을 이용한 압전 수중음향센서의 음향특성 해석)

  • Son Sun Bong;Kim Jae Hwan
    • Proceedings of the Acoustical Society of Korea Conference
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    • spring
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    • pp.253-256
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    • 2000
  • 본 연구에서는 유한요소법(FEM)을 이용하여 압전 수중음향센서의 모델링 및 음향특성을 해석하였다. 압전 복합구조 수중음향센서의 해석에서 기본적인 압전-탄성 구조물과 유체-구조물의 연성해석을 위한 유한요소 정식화를 하였으며 무한영역의 음향유체를 처리하기 위하여 IWEE(Infinite Wave Envelop Element)를 도입하였다. Topilz형 수중음향센서를 수중 산란체로 볼 경우 입사파가 산란체의 표면을 가진할 때 산란체로부터 발생되는 산란파는 IWEE로 인하여 무한 유체영역에서의 산란파의 감소특성을 갖게되어 무한영역을 유한영역으로 나눈 인위적인 경계에서 반사가 일어나지 않게 되므로 산란파의 음압을 정확히 구할 수 있었다. 또한, 이러한 산란해석을 바탕으로 입사파에 대한 음향센서 내부의 전기적 응답특성인 RVS(Receiving Voltage Signal)를 구하였다. 이러한 일련의 연구 과정들은 소나(SONAR) 시스템을 정확히 해석하고 음향특성을 예측하는 데 큰 도움이 될 것이다.

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The Thronging of Shoals of Squid to Audible underwater Sound (가청 수중음에 대한 오징어 어군의 위집)

  • 서두옥
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.31 no.3
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    • pp.220-227
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    • 1995
  • An underwater speaker was designed and used as sound source for thronging shoal of squid in squid angling gear operation. The frequency characteristics of the designed speaker was analyzed experimentally and the thronging response of shoals of squid which may be a key parameter for a new sound catching method, was characterized in audible frequency. The field experiment was carried out in the coast of Cheju Island. The results of this study are summarized as follows; 1. Amplitude response of the speaker shows a maximum in their the frequency of 500Hz. 2. The output waveform distortion is not measured in the frequency range of 250~600Hz. 3. A underwater noise of shoals of squid which were thronged by fish lamp in night appeared the center frequency of 300~400Hz. 4. The shoals of squid shows a thronging response, when a manufactured underwater speaker transmits a intermittent audible sound of 300~400Hz in 10m depth of water.

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Optimal design of a tonpilz transducer (Tonpilz 변환기의 최적설계)

  • Kang Kookjin;Xiaoguang Lu;Roh Yongrae
    • Proceedings of the Acoustical Society of Korea Conference
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    • autumn
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    • pp.359-362
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    • 2004
  • 수중에서 사용되는 음향변환기의 성능은 사용환경 뿐만 아니라 많은 설계변수들의 조합에 의해 결정되며, 이들 설계변수들의 영향은 서로 선형 독립적이지 않은 경우가 대부분이다. 따라서 음향변환기의 최적성능을 구현하기 위해서는 각 설계변수들의 개별영향 뿐만 아니라 강호작용에 의한 영향을 동시에 고려하여야 한다. 본 연구에서는 tonpilz 변환기에 대하여 유한 요소 해석을 통하여 설계변수들이 중심 주파수, 대역폭, 음압 및 충격력에 미치는 영향을 파악하였고, 그 결과들의 통계적 다중 회귀분석을 통하여 중심 주파수 대역폭 음압 및 충격력을 이들 설계변수들의 함수로 도출하였다. 나아가 제한 최적화 기법을 이용하여 주어진 사용 환경에서 동작하면서 최대 음압을 구현할 수 있는 변환기의 최적 구조를 자동으로 결정할 수 있는 프로그램을 개발하였다. 본 연구에서 개발된 최적화 프로그램은 다중 설계변수들의 상호효과를 충분히 반영할 수 있으며, 유사한 기능의 여타 음향변환기 설계에 직접 응용이 가능할 것이다.

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해양목장 대상어류의 음향순치 기술 2. 잿방어의 청각임계비

  • 서익조;오승훈;이창헌;양용수;서두옥
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2002.10a
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    • pp.51-52
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    • 2002
  • 어류의 가청주파수는 16 ∼ 5,000 Hz 범위이며 주파수 100 ∼ 1000Hz 범위에서 가장 예민한 반응을 보인다. 수중 가청음은 어군의 행동을 제어하는 방법과 바다목장에서 음향순치 기술로 많이 응용되고 있다. 수중가청음에 의한 어류의 반응을 해석하기 위해서는 물고기의 청각능력을 정확히 파악해야 한다. 어류의 청각 능력을 측정하는 방법에는 청각 문턱치, 청각 임계비, 청각 능력지수, 주파수 변별능력, 음압 강도 변별 능력, 음원 정위 능력 등이 있다(이, 2000). (중략)

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The Hearing Ability of Black Rockfish Sebastes inermis to Underwater Audible Sound 2. The Auditory Critical Ratio (수중 가청음에 의한 볼락의 청각 능력 2. 청각 임계비)

  • LEE Chang-Heon;SEO Du-Ok
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.34 no.2
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    • pp.151-155
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    • 2001
  • In order to obtain the fundamental data on the auditory thresholds of fishes for marine ranching, the auditory thresholds of black rockfish Sebastes inermis were measured in the presence of masking noise in the spectrum level range of $73\~83$ dB (0 dB re $1{\mu}Pa/\sqrt{Hz}$) with a classical cardiac conditioning technique. Critical ratios were about $28\~34$ dB at $80\~300$ Hz and $47\~52$ dB at $500\~800$ Hz. The ratio increased almost linearly with increasing frequency to 500 Hz. The noise spectrum level at the start of masking was about 70 dB within the frequency range of $80\~800$ Hz excepting 65 dB at 300 Hz. It means that hearing of the black rockfish is masked in the natural environment with the noise spectrum level above 65 dB. The sound pressure level of $200\~300$ Hz recognized by black rockfish was above 96 dB under the ambient noise and the critical ratio of them was above 26 dB.

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Variation of the Incident Sound Level at the Underwater Target`s Position due to Roll Motion of the Ship (선체의 횡요로 인한 수중물표입사음압의 변동에 관하여)

  • Park, Jung-Hui;Lee, Dae-Jae
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.19 no.2
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    • pp.106-110
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    • 1983
  • As the first step to investigate the effect of ship's motion when detecting target with an echo sounder, variations in the incident sound level at the optional position within the sound beam due to roll motion of the transmitter have been measured and calculated. In this experiment, the transmitter (75 KHz) was mounted to the bottom of a FRP model of the 2,275 G. T. stern trawler and the receiver (75 KHz) was installed at each measuring point within the transmitter's beam. Then, the incident sound level was measured for the roll angles from the free roll test on the model ship. For a range of roll angle of $\pm$20$^{\circ}$from the vertical, the measuring values of the incident sound level at each measuring point were rapidly fluctuated from 12.9% to 78.1 depending on the roll angle, and agreed well with the caculated ones. Consquently, we concluded that the effect of ship's motion when detecting target with an echo sounder should be sufficiently considered.

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