• Title/Summary/Keyword: 지음향 특성

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Geoacoustic Model at the SSDP-105 Long-core Site of the Ulsan Coastal Area, the East Sea (동해 울산 연안해역 SSDP-105 심부코어 지점의 지음향 모델)

  • Ryang, Woo-Hun;Lee, Gwang-Soo;Hahn, Jooyoung
    • Journal of the Korean earth science society
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    • v.39 no.2
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    • pp.154-163
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    • 2018
  • Geoacoustic model comprises physical and acoustic properties of submarine bottom layers influencing sound transmission through sea water and underwater. This study suggested for the first time that we made a geoacoustic model of long-coring bottom layers at the SSDP-105 drilling site of the Ulsan coastal area, which is located in the southwestern inner shelf of the East Sea. The geoacoustic model of 52 m depth below seafloor with three-layer geoacoustic units was reconstructed in the coastal sedimentary strata at 79 m in water depth. The geoacoustic model was based on the data of a deep-drilled sediment core of SSDP-105 and sparker seismic profiles in the study area. For actual modeling, the geoacoustic property values of the models were compensated to in situ depth values below the sea floor using the Hamilton modeling method. We suggest that the geoacoustic model be used for geoacoustic and underwater acoustic experiments of mid- and low-frequency reflecting on the deep bottom layers in the Ulsan coastal area of the East Sea.

Geoacoustic Model at the YSDP-105 Long-core Site in the Mid-eastern Yellow Sea (황해 중동부 해역 YSDP-105 심부코어 지점의 지음향 모델)

  • Ryang, Woo-Hun;Jin, Jae-Hwa;Hahn, Jooyoung
    • Journal of the Korean earth science society
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    • v.40 no.1
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    • pp.24-36
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    • 2019
  • In the mid-eastern Yellow Sea, glacio-eustatic sea-level fluctuations and a regional tectonic subsidence have combined to represent an aggradational stacking pattern of sedimentary units during late Pleistocene-Holocene. The accumulated sediments are divisible into two-type units of Type-A and Type-B in high-resolution air-gun seismic profiles and the deep-drilled core of YSDP-105. Type-A unit largely comprises clast-rich coarse-grained sediments of non-marine to paralic origin, whereas Type-B unit consists mostly of tidal fine-grained sediments. Based on a bottom model of the sedimentary units, this study suggested a geoacoustic model of long-coring bottom layers at the YSDP-105 drilling site of the mid-eastern Yellow Sea. The geoacoustic model of 64-m depth below the seafloor with four-layer geoacoustic units was reconstructed in continental shelf strata at 45 m in water depth. For actual modeling, the geoacoustic property values of the models were compensated to in situ depth values below the seafloor using the Hamilton modeling method. We suggest that the geoacoustic model will be used for geoacoustic and underwater acoustic experiments of mid- and low-frequency reflecting on the deep bottom layers in the mid-eastern Yellow Sea.

Geoacoustic Model of Coastal Bottom Strata at Jeongdongjin in the Korean Continental Margin of the East Sea (동해 한국대륙주변부 정동진 연안 지층의 지음향 모델)

  • Ryang, Woo-Hun;Kim, Seong-Pil;Kim, Dae-Choul;Hahn, Jooyoung
    • Journal of the Korean earth science society
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    • v.37 no.4
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    • pp.200-210
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    • 2016
  • Geoacoustic modeling is used to predict sound transmission through submarine bottom layers of sedimentary strata and acoustic basement. This study reconstructed four geoacoustic models for sediments of 50 m thick at the Jeongdongjin area in the western continental margin of the East Sea. Bottom models were based on the data of the highresolution air-gun seismic and subbottom profiles (SBP) with sediment cores. P-wave speed was measured by the pulse transmission technique, and the resonance frequency of piezoelectric transducers was maintained at 1MHz. Measurements of 42 P-wave speeds and 41 attenuations were fulfilled in three core sediments. For actual modeling, the P-wave speeds of the models were compensated to in situ depth below the sea floor using the Hamilton method. These geoacoustic models of coastal bottom strata will be used for geoacoustic and underwater acoustic experiments reflecting vertical and lateral variability of geoacoustic properties in the Jeongdongjin area of the East Sea.

Investigating the Properties of the Light Bulb Source in Shallow-Water Environments (천해 환경에서의 전구 음원의 음향학적 특성 연구)

  • Oh Taekhwan;Na Jungyul;Lee Seongwook;Kim Seongil;Park Joung-Soo
    • The Journal of the Acoustical Society of Korea
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    • v.24 no.6
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    • pp.303-308
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    • 2005
  • In this paper, the acoustic properties of the light bulb are presented based on a new light bulb source system of continuously transmitting implosive signal . We describe the results of analysis of bulb signals and comparison with Previous works. The results show that Peak-source-level and Primary resonant frequency are increasing with increasing source depth. This bulb source can be used for the purpose of geoacoustic parameter inversion and source tracking in sha]low water via matched field processing.

Geoacoustic Velocity of Basement and Tertiary Successions of the Okgye and Bukpyeong Coast, East Sea (동해 옥계, 북평 연안 기반암의 지음향 속도와 제3기 퇴적층)

  • Ryang, Woo-Hun;Kwon, Yi-Kyun;Jin, Jae-Hwa;Kim, Hyun-Tae;Lee, Chi-Won
    • Journal of the Korean earth science society
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    • v.28 no.3
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    • pp.367-373
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    • 2007
  • A geoacoustic modeling has been developed to predict sound transmission through the submarine layers of sediment and rock. It demands a geoacoustic model with the measured, extrapolated, and predicted values of geoacoustic parameters controlling acoustic propagation. In the coastal areas of Okgye and Bukpyeong, the East Sea, the marine succession consists of Quaternary/Tertiary deposits and acoustic basement. The basement of Okgye coastal area is indicative of siliciclastics of the Pyeongan Group in Paleozoic, and the average velocities of P-wave and S-wave are 4276 m/s and 2400 m/s, respectively. The basement of Bukpyeong coastal area is indicative of limestone of the Joseon Supergroup in early Paleozoic, and the average velocities of P-wave and S-wave are 5542 m/s and 2742 m/s, respectively.

Geoacoustic Properties of Marine Sediment Adjacent the Southwestern Taean Peninsula, the Yellow Sea (황해 태안반도 남서부 해양퇴적물의 지음향 특성)

  • Kim, HwaRang;Kim, Dae-Choul;Seo, YoungKyo;Lee, Gwang-Soo;Kim, KyongO
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.19 no.4
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    • pp.247-258
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    • 2016
  • Physical and acoustic properties of sediment on the southwestern Taean Penisula, the Yellow Sea, were studied using eight piston cores. The sediments in the study area are largely composed of sand which has been deposited with sea-level change after LGM(Last Glacial Maximum). After the sea-level rise, fine-grained sediments discharged from Keum River and neighboring coast area were deposited as muddy sand or sandy mud. Results of these sedimentary environment in this area, the texture of sediments are different from place to place with variable horizontal and vertical distribution of physical and acoustic properties. Correlations among the physical, geoacoustic properties, and mean grain size show slight deviations from those of the South Sea in spite of similar pattern. This is probably due to the differences in sedimentary environment, mineral composition, and measurement system.

Acoustic Property of Sandy Sediment in the Korea Strait Using Sediment Sound Velocimeter (퇴적물속도측정기를 이용한 대한해협 사질퇴적물의 음향특성)

  • 서영교;김대철
    • The Journal of the Acoustical Society of Korea
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    • v.19 no.3
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    • pp.77-85
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    • 2000
  • Laboratory determinations of acoustic and physical properties in Korea Strait sediment were carried out. Sediment sound velocimeter(SSV) was employed to measure the sound velocity of sandy sediment. Distribution patterns of the acoustic and physical properties are controlled by sediment texture. The study area is divided into three provinces(mid-shelf, shelf margin and enough) based on the acoustic and physical properties. This classification matches well with the previous result[14] based on the systems tracks and depositional systems. We suggest a geoacoustic model of the Korea Strait that replacing the old model of Briggs and Fisher[5].

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Geoacoustic Model of Surface Sediments in the East of Geoje Island, the South Sea of Korea (거제도 동쪽 해역 표층 퇴적물의 지음향모델)

  • KIM, GIL YOUNG;KIM, DAE CHOUL;SHIN, BO KYOUNG;SEO, YOYUNG KYO;LEE, GWANG HOON
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.10 no.2
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    • pp.129-138
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    • 2005
  • Sediment texture, physical (porosity, water content, bulk density, grain density, and shear strength), and geoacoustic properties (compressional wave velocity and attenuation) were measured on eighteen core samples collected from the shelf off eastern Geoje Island, the South Sea of Korea. Based on these properties, the study area is divided into three different sub-areas: (1) Area I affected directly by the Nakdong River discharge; (2) Area II covered by the southern branch of the Nakdong River discharge; and (3) Area III dominated by relict sediment. Mean grain size, velocity, and bulk density decrease from Area $I(7.4\Phi,\;1528m/s,\;1.6g/cm^3,\;respectively)$ to Area $II(8.1\Phi,\;1485m/s,\;and\;1.5g/cm^3)$, and then increase rather rapidly in Area $III(1.4\Phi,\;1664m/s,\;and\;2.2g/cm^3)$. Porosity, on the other hand, exhibits an opposite trend, increasing from Area $I(64.5\%)$ to Area$II(73.9\%)$ and then decreasing significantly in Area $III(32.9\%)$ From the results measured and calculated, we suggest a specified geoacoustic model in the study area.

Investigating the acoustic properties of the light bulb source and inversion for geo-acoustic parameters (전구 음원 특성 분석과 지음향 파라미터 역산)

  • Oh Taekhwan;Kim Youngshin;Na Jungyul;Oh Suntaek;Jun Hokyung;Lee Changwon;Kim Seongil;Park Joung-Soo
    • Proceedings of the Acoustical Society of Korea Conference
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    • autumn
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    • pp.381-384
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    • 2004
  • 본 논문은 천해에서의 전구 음원 특성 연구를 수행하였다. 일반적으로 전구 음원의 특성은 수심에 따라 달라지며, 크기와 같은 물리적인 요인에 의해서도 달라지는 것으로 알려져 있다. 최근 전구 음원의 저주파 광대역 음원로써의 사용 가능성에 관한 연구가 수행되고 있다. 본 연구에서는 해상 실험 자료 분석을 통해 전구 음원 특성을 분석하였으며, 연구 결과 전구 음원이 천해에서 저주파 광대역 음원으로써 사용 가능함을 확인하였다.

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Characteristics of Bottom Scatter ing from Inhomogeneous Bottom Layer (해저퇴적층의 비균질성에 따른 음파 산란 특성)

  • KIM HYUNGWOO;CHOI JEE WOONG;NA JUNGYUL;SUK DONGWOO;PARK KYUNGJU;PARK KILSUNG;YOON KWANGSEOB;NA YOUNG NAM
    • Proceedings of the Acoustical Society of Korea Conference
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    • autumn
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    • pp.89-92
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    • 2000
  • 고주파 대역의 소오나를 이용하여 해저면 상태, 즉 해저면 거칠기 및 비균질성의 변화에 따른 음파 산란 영향을 파악하기 위한 실험을 실시하였다. 지음향 요소 중, 평균 입도 크기(mean grain size)는 입도 분석을 통하여 결정하였으며, 이를 기초로 하여 나머지 요소들(Density, Velocity Ratio 등)을 결정하였다. 또한 공극률을 측정하여 평균 입도 크기와 비교함으로써, 공극률과 입자 크기 사이의 관계를 나타내보고자 하였다. 이렇게 파악된 해저면 특성들과 해저면에 의해 산란되어 들어오는 신호의 분석을 통하여 해저면의 상태에 따른 신호의 변화를 비교하였다. 획득된 자료들은 해저면의 상태, 즉 해저면 연흔(ripple)의 유무와 해저면내의 비균질성에 따라 수신되는 신호에 차이를 나타내었으며, 또한 입사각, 산란 각 및 방위각의 변화에 따라 신호에 차이를 보였다. 수신된 신호들간의 비교를 통하여 해저면내의 비균질성의 차이에 따른 산란 음파의 변화 양상을 파악하고자 하였다.

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