• 제목/요약/키워드: Underwater Audible Sound

검색결과 10건 처리시간 0.016초

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

  • 서두옥
    • 수산해양기술연구
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    • 제31권3호
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    • pp.220-227
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    • 1995
  • 제주도 연안에서 조업하는 오징어 채낚이 어업에서 수중 음향집어법을 개발하기 위하여 제작한 수중확성기의 주파수 특성실험을 행하고, 또한 이 확성기로 수중 가청음을 수중에서 방성하였을 때 오징어 어군이 유집 반응을 조사.분석한 결과를 요약하면 다음과 같다. 1. 제작한 수중 확성기의 측정 주파수는 500Hz 측정에서 높은 음압을 나타내었다. 2. 제작한 수중 확성기의 육상 수조 및 해중 실험에서 측정 주파수 250~600Hz의 입력 파형과 츨력 파형은 거의 일치하였다. 3. 야간에 집어등으로 유집된 오징어 어군의 수중 소음의 중심 주파수는 300~400Hz 정도이었다. 4. 제작한 수중 확성기로 주파수 300Hz와 400Hz의 수중 가청 단속음을 수심 10m에서 방성하였을 때 오징어 어군은 유집 반응을 보였다.

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수중 가청음에 의한 볼락의 청각 능력 -1. 청각 문턱치- (The Hearing Ability of Black Rockfish Sebastes inermis to Underwater Audible Sound -1. The Auditory Threshold-)

  • 이창헌;서두옥
    • 한국수산과학회지
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    • 제33권6호
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    • pp.581-584
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    • 2000
  • 제주 연안역에 서식하고 있는 볼락의 수중음에 대한 청각 특성을 파악하여 수중음에 대한 어군의 행동양상을 파악할 수 있는 기초자료를 제공할 목적으로 측정주파수 $80{\~}800 Hz$의 수중음과 8V의 직류 전압의 전기자극을 이용하여 음향 조건학습을 시킨 후 측정주파수와 음압을 임의로 변화시켜가면서 청각문턱치를 구한 결과 볼락은 측정주파수 $80{\~}800 Hz$의 음을 인식하고 있었고, 측정주파수에 대한 각각의 청각문턱치는 102 dB, 103 dB, 99 dB, 96 dB, l16 dB, 122 dB이었으며, 측정 주파수 300 Hz에서 음압 96 dB로 가장 낮고 측정 주파수 800Hz에서 음압 122 dB로 가장 높게 나타내고 있었다. 그러나 수중에 존재하는 소음의 주파수대역이 저주파에서 높게 나타나고 대역폭도 넓으므로 이들 자극이 어류 행동에 어떻게 미치고 있는지 규명할 필요가 있다고 판단된다.

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

  • 이창헌
    • 수산해양기술연구
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    • 제33권4호
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    • pp.285-289
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    • 1997
  • 제주도 연안에 분포되어 있는 정치망에 어획되는 어류의 음향 유집 효과에 대한 기초자료를 제공할 목적으로, 정치망의 주요 어획 대상 어종인 잿방어의 식이음, 유영음, 어선의 기관소음, 정현파 순음 등을 녹음시켜, 제작한 수중확성기로잿방어를 사육하는 가두리 양식장에 방성하였을 때, 각 음에 대한 어류을 행동 반응을 조사.분석한 결과는 다음과 같다. 1. 제작된 수중확성기의 수중 실험에서는 측정 주파수의 모든 주파수에서 입력파형과 출력파형이 잘 일치하여 주파수 200.600Hz의 수중음을 방성할 수 있었다. 2. 순음 주파수 300Hz및 400Hz를 방성하였을 때 보다 훨씬 민감한 반을을 보였다. 4. 잿방어 어군의 식이음, 유영음 스펙트럼은 주간과 야간에 관계없이 비슷한 음압분포를 나타내었고, 주파수 200~600Hz부근에서 낮은 음압 분포를 나타내었다.

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해양목장 대상 어류의 음향순치에 관한 기초적 연구 -1. 돌돔의 청각 특성- (A Basic Study on Acoustic Conditioning of Fish Suitable for a Marine Ranch -1. The Sound Sensitivity of Japanese Parrot Fish Oplegnathus fasciatus-)

  • 김성호;이창헌;서두옥;김용주
    • 한국수산과학회지
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    • 제35권6호
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    • pp.563-567
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    • 2002
  • Developing base data on luring fish schools into netting position by the use of underwater audible sound on japanese parrot fish Oplegnathus fasciatus found in the coastal waters of Jeju Island, S. Korea. Auditory threshold was determined by the heartbeat condition technique using pure tones coupled with a delayed electric shock. The audible range of japanese parrot fish extended from 80 Hz to 500 Hz with a peak sensitivity at 200 Hz. The mean auditory thresholds at the frequencies of 80 Hz, 100 Hz, 200 Hz,300 Hz and 500 Hz were 104 dB, 95 dB, 91 dB, 99 dB and 113 dB, respectively. As the frequency became higher than 200 Hz, the auditory threshold increased almost linearly with increasing frequency. Critical ratios of fishes measured in the presence of masking noise in the spectrum level range of 69$\~$78 dB (0 dB re 1$\mu$Pa/$\sqrt{Hz}$) ranged from 21 dB to 40 dB at test frequencies. The noise spectrum level at the start of masking was about 70 dB within the test frequency range. The sound pressure level of 100$\~$200 Hz recognized by japanese parrot fish under the ambient noise is above 91 dB and the critical ratio for them is above 21 dB.

제주 연안에서 어획된 두툽상어의 청각 특성 (Auditory Characteristics of Tiger shark Scyliorhinus torazame caught in the Coast of jeju Island)

  • 안장영;최찬문;이창헌
    • 수산해양기술연구
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    • 제47권3호
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    • pp.234-240
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    • 2011
  • In order to obtain the fundamental data about the behavior of sharks by underwater audible sound, this experiment was carried out to investigate the auditory characteristics of tiger shark Scyliorhinus torazame which was caught in the coast of Jeju Island by heart rate conditioning method using pure tones coupled with a delayed electric shock. The audible range of tiger shark extended from 80Hz to 300Hz with a peak sensitivity at 80Hz including less sensitivity at 300Hz. The mean auditory thresholds of tiger shark at the frequencies of 80Hz, 100Hz, 200Hz and 300Hz were 90dB, 103dB, 94dB and 115dB, respectively. The positive response of tiger shark was not evident after the sound projection of over 300Hz. At the results, the sensitive frequency range of tiger shark is narrower than that of fish that has swim bladder. In addition, it is assumed that the most sensitive frequency in auditory thresholds of Chondrichthyes is lower than that of Osteichthyes. Critical ratios of tiger shark measured in the presence of masking noise in the spectrum level range of about 60-70dB (0dB re $1{\mu}Pa/\sqrt{Hz}$) increased from minimum 27dB to maximum 39dB at test frequencies of 80-200Hz. The noise spectrum level at the start of masking was distributed at the range of about 65dB within 80-200Hz.

제주 연안에서 어획된 붕장어의 청각 능력 (Hearing Ability of Conger eel Conger myriaster caught in the Coast of jeju Island)

  • 안장영;박용석;최찬문;김석종;이창헌
    • 수산해양기술연구
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    • 제48권4호
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    • pp.479-486
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    • 2012
  • In order to obtain the fundamental data about the behavior of conger by underwater audible sound, this experiment was carried out to investigate the hearing ability of Conger eel Conger myriaster which was in the coast of Jeju Island by heartbeat conditioning method using pure tones coupled with a delayed electric shock. The audible range of conger eel extended from 50Hz to 300Hz with a peak sensitivity at 80Hz including less sensitivity over 200Hz. The mean auditory thresholds of conger eel at the frequencies of 50Hz, 80Hz, 100Hz, 200Hz and 300Hz were 105dB, 92dB, 96dB, 128dB and 140dB, respectively. The positive response of conger eel was not evident after the sound projection of over 200Hz. At the results, the sensitive frequency range of conger eel is narrow in spite of swim bladder. Auditory masking was determined for Conger eel by using masking stimuli with the spectrum level range of about 60~70dB (0dB re $1{\mu}Pa/\sqrt{Hz}$). According to white noise level, the auditory thresholds increased as compared with thresholds in a quiet background noise including critical ratio at 68dB of white noise from minimum 26dB to maximum 30dB at test frequencies of 80Hz and 100Hz. The noise spectrum level at the start of masking was distributed at the range of about 68dB within 80~100Hz.

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

  • 이창헌;서두옥
    • 한국수산과학회지
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    • 제34권2호
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    • pp.151-155
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    • 2001
  • 해양 목장에서 음향 순치 대상 어종으로 사용할 수 있는 볼락의 청각 문턱치를 기본으로 하여 음향 어법의 기초 자료를 제공할 목적으로 볼락의 백색 잡음에 대한 청각 임계비와 학습 및 유집을 위한 방성 음압 강도를 조사한 결과는 다음과 같다. 음압 73, 78, 83dB의 3단계 백색 잡음을 방성하였을 때 볼락의 청각 문턱치는 백색 잡음이 없을 때보다 높게 나타나 마스킹 현상이 나타났고, 주파수 300Hz에서 보다 높게 나타났다. 볼락의 청각 임계비는 측정 주파수 80, 100, 200, 300, 500, 800Hz에서 음압이 대략 28, 34, 26, 30, 47, 52dB이고 마스킹 현상은 주파수 300Hz에서 음압 65dB의 잡음 레벨에서 나타나기 시작하였고 그 외의 주파수에서는 음압 68dB 이상에서 나타났으며, 볼락이 주파수 $200\~300$Hz에서 신호음을 인식하기 위해서는 음압 96dB 이상, 잡음 레벨보다 약 26dB 이상의 높은 음압이 요구되었다.

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제주 연안에서 어획된 황놀래기의 청각 능력 (Hearing Ability of Bambooleaf wrasse Pseudolabrus japonicus caught in the coast of Jeju)

  • 최찬문;박용석;이창헌
    • 수산해양교육연구
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    • 제25권6호
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    • pp.1381-1388
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    • 2013
  • In order to improve the availability of underwater sound by the fundamental data on the hearing ability, the auditory thresholds for the bambooleaf wrasse pseudolabrus japonicus were determined at 80Hz, 100Hz, 200Hz, 300Hz, 500Hz and 800Hz by heartbeat conditioning method using pure tones coupled with a delayed electric shock. The audible range of the bambooleaf wrasse extended from 80Hz to 800Hz with the best sensitivity around 100Hz and 200Hz. In addition, the auditory thresholds over 300Hz increased rapidly. The mean auditory thresholds of the bambooleaf wrasse at the test frequencies, 80Hz, 100Hz, 200Hz, 300Hz, 500Hz and 800Hz were 100dB, 95.1dB, 94.8dB, 109dB, 121dB and 125dB, respectively. Auditory critical ratios for the bambooleaf wrasse were measured using masking stimuli with the spectrum level range of about 70, 74, 78dB (0dB re $1{\mu}Pa/\sqrt{Hz}$). According to white noise level, the auditory thresholds increased as compared with thresholds in a quiet background noise. The Auditory masking by the white noise spectrum level was stared over about 60dB within 80~300Hz. Critical ratios to be measured at frequencies from 80Hz to 300Hz were minimum 33dB and maximum 39dB.

제주 연안에서 양식된 참조기의 청각 능력 (Hearing Ability of Redlip croaker Pseudosciaena polyactis cultured in the Coastal Sea of Jeju)

  • 안장영;김석종;최찬문;박용석;이창헌
    • 수산해양교육연구
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    • 제28권2호
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    • pp.384-390
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    • 2016
  • The purpose of this paper is to improve the availability of underwater sound by the fundamental data on the hearing ability of Redlip croaker Pseudosciaena polyactis, which is cultured according to the cultivation technology, recently. The auditory thresholds of Redlip croaker were determined at 6 frequencies from 80Hz to 800Hz by heartbeat conditioning method using pure tones coupled with a delayed electric shock. The audible range of the Redlip croaker extended from 80Hz to 800Hz with the best sensitive frequency range including little difference in hearing ability from 80Hz to 500Hz. In addition, the auditory thresholds over 800Hz increased rapidly. The mean auditory thresholds of the Redlip croaker at the test frequencies from 80Hz to 800Hz were 90.7dB, 93.4dB, 92.9dB, 94.4dB, 95.5dB and 108dB, respectively. Auditory masking for the redlip croaker was measured using masking stimuli with the spectrum level range of about 66, 71, 75dB (0dB re $1{\mu}Pa/{\sqrt{Hz}}$). According to white noise level, the auditory thresholds increased as compared with thresholds in a quiet background noise. The Auditory masking by the white noise spectrum level was stared over about 70dB within 80~500Hz. Critical ratio ranged from minimum 20.7dB to maximum 25.5dB at test frequencies of 80Hz~500Hz.

남해 연안에서 어획된 갯장어의 청각 능력 (Hearing Ability of Sharp Toothed Eel Muraenesox cinereus caught in the Southern Korean Waters)

  • 안장영;이창헌
    • 수산해양교육연구
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    • 제25권2호
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    • pp.341-348
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    • 2013
  • The auditory thresholds for 7 specimens of the sharp toothed eel Muraensox cinerus were measured at 5 frequencies by heartbeat conditioning method using pure tones coupled with a delayed electric shock. The audible range of the sharp toothed eel extended from 80Hz to 300Hz with the best sensitivity around 80Hz and 100Hz. In addition, the auditory thresholds over 200Hz increased rapidly. The mean auditory thresholds of the sharp toothed eel at the test frequencies of 80Hz, 100Hz, 200Hz and 300Hz were 87dB, 86dB, 105dB and 126dB, respectively. Auditory masking was determined for the sharp toothed eel by using masking stimuli with the spectrum level range of about 70~80dB (0dB re $1{\mu}Pa/\sqrt{Hz}$). According to white noise level, the auditory thresholds increased as compared with thresholds in a quiet background noise. The noise spectrum level at the start of masking was distributed at the range of about 64dB within 80~100Hz. Critical ratio ranged from minimum 24dB to maximum 40dB at test frequencies of 80Hz~200Hz.