• Title/Summary/Keyword: 천부가스

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A study of push core sediments and topographical controls around the shallow gas hydrate site in the Ulleung Basin, East Sea (울릉분지 천부 가스하이드레이트 부존지역에서의 해저지형변화에 따른 퇴적물 특성 연구)

  • Chun, Jong-Hwa;Lee, Joo-Yong;Kim, Hak-Joo;Kang, Nyeon-Keon;Nam, Sung-Il
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.200-202
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    • 2008
  • 동해 울릉분지에서는 시추선 RemEtive를 사용하여 UBGH-X-01 가스하이드레이트 탐사가 2007년에 실시되었다. 본 연구에서는 천부 가스하이드레이트가 확인된 UBGH1-10 정점에서 무인잠수정(Quantam WROV)을 사용하여 획득된 푸쉬코어와 해저지형 분석을 수행되었다.UBGH1-10 정점은 seismic chimneys의 탄성파 특성이 발달된 지역이다. 이곳에서는 해저표면으로부터 수 m 하부에서 가스하이드레이트가 발견되었다. 이 정점은 수 m 높이의 얕은 둔덕들이 무인잠수정에 부착된 비디오 카메라에 의해서 관찰되었다.이곳에서 채취된 길이 약40 cm의 푸쉬코어는 생물교란된 뻘질 퇴적물로 구성되어 있으며, 가스하이드레이트와 chemosynthetic community는 관찰되지 않았다. 푸쉬코어는 X-ray fluorescence scanner를 사용하여 퇴적물의 26가지 원소 조성을 분석하였다. UBGH1-10 정점의 산화환원환경은 Mo/Al과 Mn/Ti 원소비를 이용하여 천부 가스하이드레이트가 발견되지 않은 UBGH1-9와 UBGH1-1 정점과 대비하였다. 이 정점의 일차생산력은 Ba/Al 원소비를 이용하여 다른 정점과 대비하였다. 천부 가스하이드레이트가 발견된 UBGH1-10 정점은 활발한 가스방출과 관련된 생물집단 서식 또는 자생광물 형성의 흔적이 발견되지 않으며, 퇴적물에서도 산화환원환경과 일차생산력의 큰 차이가 관찰되지 않는다.

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Geochemistry of Shallow gases taken from the core sediments in the southeastern Ulleung Basin (울릉분지 남동부 시추 퇴적물 내에 함유되어 있는 천부가스의 특성)

  • Lee Young joo;Huh Shik;Kwak Young hoon;Kim Hag ju;Chun Jong Hwa;Jun Sang Joon;Yoo Hai Soo
    • The Korean Journal of Petroleum Geology
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    • v.7 no.1_2 s.8
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    • pp.35-40
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    • 1999
  • Chemical and isotopic compositions of hydrocarbon gases were analyBed to characterize the properties of the shallow gases distributed in the southeastern part of the Ulleung Basin, offshore Korea. Sediments from the core were also analyzed to determine the characteristics and relationship to shallow gases. Hydrocarbon gases in the sediments consisted of methane (697.9-6054.4 ppm), ethane, propane, butane and hexane. The total carbon content of the sediments ranges from 1.84fe to $5.11{\%}$ and the total organic carbon content ranges from $0.29{\%} \;to\; 2.65{\%}$. High C/N ratio (>10) indicates that input of terrestrial organic matter was prevalent at the time of deposition. The methane content and stable isotopic data indicate that hydrocarbon gases from the sediments are identified to be thermogenic gas and mixture of both biogenic and thermal gases. Based on the Rock-Eval and carbon isotopic data, the level of thermal maturity of organic matter in the sediments $(Tmax<425^{\circ}C)$ is lower than that of gas. It suggests that thermal gases in the sediments migrated from the deeper sediments than the penetrated depth.

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Shallow Gas Exploration in the Pohang Basin Transition Zone (포항분지 전이대에서 천부가스 탐사)

  • Lee, Donghoon;Kim, Byoung-Yeop;Kim, Ji-Soo;Jang, Seonghyung
    • Geophysics and Geophysical Exploration
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    • v.25 no.1
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    • pp.1-13
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    • 2022
  • For surveying shallow gas reservoirs in the Pohang basin, we proposed a seismic exploration method applicable to the transition zone in which land and marine areas are connected. We designed the seismic acquisition geometry considering both environments. We installed land nodal receivers on the ground and employed vibroseis and airgun sources in both land and marine areas. For seismic exploration in the transition zone, specific acquisition and processing techniques are required to ensure precise matching of reflectors at the boundary between the onshore and offshore regions. To enhance the continuity of reflection events on the seismic section, we performed amplitude and phase corrections with respect to the source types and applied a static correction. Following these processing steps, we obtained a seismic section showing connected reflectors around the boundary in the transition zone. We anticipate that our proposed seismic exploration method can also be used for fault detection in the transition zone.

Study on the Characteristics of Gas Hydrate Layers Distributed in the Southern Ulleung Basin, the East Sea (동해 울릉분지 남부해역에 분포하는 가스 하이드레이트층의 특성 연구)

  • Huh Sik;Yoo Hai-Soo;Kim Han-Joon;Han Sang-Joon;Lee Yong-Kuk
    • The Korean Journal of Petroleum Geology
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    • v.10 no.1_2 s.11
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    • pp.18-22
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    • 2004
  • To identify and interpret the distribution and the characteristics of the gas hydrate layers in the Ulleung Basin, we have surveyed and gathered the multi-channel seismic data, Chirp sub-bottom profiler, SeaBeam and 12 m piston core samples since 1996. In previous works, high-resolution seismic profiles showed acoustic anomalies such as acoustic void, acoustic turbidity and pock mark which indicate the presence of gas-charged sediments. The patterns of horizontal degassing cracks originated from free methane expansion is the strong indicator of shallow gas-charged sediments in the core samples. The observation of submarine slides and slumps from destabilizing the sediments in the southern part of the Ulleung Basin may also point out that the gas had been released from gas hydrate dissociation during lowstand of sea level. The multi-channel seismic data show BSR, blanking and phase reversal. The gas hydrate layers above which large-scale shallow gases are distributed exist at the depth of about 200 m from the sea-floor with water depth of 2,100 m. From the interpretation of seismic sections in the southern Ulleung Basin, gas hydrate layers occur in the Pleistocene-Holocene sediments. These gas-charged sediments, acoustic anomalies and BSR may be all related to the existence of gas hydrate layers in the study area.

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Shallow gas origin in the sediment near coastal area of Busan (부산 주변 해역 해저 퇴적물 내 공기층 가스 기원)

  • Kim, Ji-Hoon;Han, Hyun-Chul;Cheong, Tae-Jin;Lee, Young-Joo
    • The Korean Journal of Petroleum Geology
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    • v.13 no.1
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    • pp.24-29
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    • 2007
  • The main purpose of this study is to identify the shallow gas origin in the KSSM zone. Based on the results of gas composition and isotope in the headsapace gas, the shallow gas is mainly composed of methane and carbon and deuterium isotopes (${\delta}^{13}CCH_4$ and ${\delta}DCH_4$) of methane has ranged from -93.4%o to -70.9%, and from -228%o to -199%o in each. These results imply that shallow gas has predominately biogenic source by $CO_2$ reduction rather than thermogenic. The carbon isotopic separation (${\varepsilon}_c$) between methane and carbon dioxide $(CO_2)$ has a range of 54.4 to 72.2, it also supports biogenic origin of shallow gas.

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Geochemical and Geophysical Characteristics of Shallow Gases in the Deep Sea Sediments, Southwestern Ulleung Basin (울릉분지 남서부 심해저 퇴적층에 분포하는 천부 가스의 지화학 및 지구물리 특성)

  • 김일수;이영주;유동근;류병재
    • Economic and Environmental Geology
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    • v.36 no.3
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    • pp.149-157
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    • 2003
  • Deep sea core samples were taken in the southwestern part of the Ulleung Basin in order to characterize the properties of shallow gases in the sediment. Amount of shallow gases in the sediments were calculated by head space techniques, and chemical and isotopic compositions of hydrocarbon gases were analyzed. Geochemical analyses were carried out on the gas bearing sediments to find out relationship between natural gas contents and organic characteristics of the sediments. Seismic characteristics of shallow gases in the sediments were also examined in this study. The amount of the hydrocarbon gases in the sediments range from 0.01% to 11.25%. Calculation of volume of gas per volume of wet sediment varies from 0.1 to 82.0 ml HC/L wet sediment. Methane consists 98% of the total hydrocarbon gases except for two samples. Based on the methane content and isotopic composition$(\delta^{13}c)$: -94.31$\textperthousand$~-55.5$\textperthousand$), the hydrocarbon gases from the sediments are generated from bacterial activities of methanogenic microbes. Contents of hydrocarbon gases are variable from site to site. Volume of shallow gases in the sediments shows no apparent trends vs. either characteristics of organic matter or particle sizes of the sediments. Gas concentration is high in the area of seismic anomalies such as blanking zone or chimney structures in the section. Physicochemically the pore water and the formation water systems are saturated with gases in these areas. Concentration of hydrocarbon gases in the sediments in these area shows favorable condition for generation of gas hydrate, as far as the other conditions are satisfied.

광양만의 지형변화 및 퇴적환경 발달

  • 최동림;이태희;현상민;최진성
    • Proceedings of the Korea Society of Environmental Biology Conference
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    • 2002.11a
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    • pp.41-45
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    • 2002
  • 광양만의 지형변화 및 퇴적환경발달양상에 대해 표층퇴적물과 지층탐사자료를 이용하여 연구하였다. 광양만 해역은 1970년대이후 광양만 개발에 따라 해안선 및 해저지형이 급격한 변화를 겪어왔다. 광양만의 면적은 개발이전보다 25%정도 감소하였다. 해안선 변형은 공단건설을 위한 해안매립공사로 인해 그리고 해저지형변화는 대형선박들의 안전항로개발을 위한 해저퇴적물의 준설 등에 의해 발생하고 있다. 표층퇴적물는 점토질 퇴적물 묘도서측 및 여수해만의 외해지역에 주로 분포하고, 사질 퇴적물은 섬진강하구와 수로에 분포하고 있다. 표층퇴적물의 유기물 함량은 퇴적물의 특성을 반영하며, 특히 점토질퇴적물에 다량으로 포함하고 있다. 탄성파 단면도상에서 기반암위에 Unit II와 Unit I가 분포하며, 하부 Unit II는 홀로세 이전의 하천환경 퇴적층으로 판단되며, 홀로세 Unit I 퇴적층은 섬진강하구에서 외해를 향해 전진퇴적양상의 쐐기형태를 보인다. 이 층은 섬진강에서 유출된 퇴적물이 델타환경을 이루면서 형성된 퇴적층서로 해석된다. Unit I 퇴적층내에 천부가스층이 광범위하게 분포한다. 천부가스는 광양만의 생태환경에 영향을 미칠 것으로 판단된다. 광양만 주변의 재발에 따른 해안 및 해저지형의 급격한 변형은 퇴적환경 및 해양환경에 변화를 야기할 것으로 예상된다. 특히 섬진강 하구지역의 광양제철소 건설은 섬진강에서 장양만으로 유입되는 퇴적물의 퇴적작용의 커다란 영향을 미칠 것으로 판단된다.

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Gas hydrate-bearing venting strucutres in the Sea of Okhotsk (오호츠크해의 가스하이드레이트 함유 가스분출구조)

  • Jin, Young-Keun;Chung, Kyoung-Ho;Party, Chaos Scientific
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.501-503
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    • 2007
  • 오호츠크해 사할린 북동 해저사면지역은 세계적인 가스수화물 산출지역으로 알려져있다. 이미 2005년 탐사에서 50 cm 두께의 순수 가스수화물 시료를 해저면에서 채취한 지역이다. 2006년 탐사에서는 다양한 주파수대역의 고해상도 지구불리장비를 사용하여 탐사를 실시하였다. Side-scan Sonal와 3.5 kHz SBP 탐사, 수중음향 탐사를 통해 대규모 하도구조가 가스수화물지역의 북쪽 경계를 형성하고 있음을 밝혔다. 가스수화물의 BSR은 수심에 얕아짐에 따라 계속해서 심도가 감소하여 수심 약 300 m에서 해저면에 다다름. 이는 연구지역에서의 가스수화물 안정대의 상부경계가 약 300 m임을 시사한다 가스수화물 분출구조들은 약 1000m 수심을 경계로 천부에 분포하고, 해저면에는 원형의 가스분출구조들이 특징적으로 나타난다. 반면에 1000 m 수심보다 깊은 지역에서는 mud-dirpir의 상승구조로 판단되는 상승구조들이 해저면에 굴곡지형을 형성하고 있다. 해수중으로 분출하는 가스기둥들은 수심 111.2 m에서 1226.4 m 지점까지 다양한 수심에서 분포하며, 상승높이는 최대 750 m에 이르며, 약 150 m 수심까지 도달한다. 이는 해저에서 분출되는 메탄가스가 해수에 흡수되지 않고 해수면까지 이동하여 대기중으로 발출될 수 있음을 시사한다.

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Identification of Quaternary Faults and shallow gas pockets through high-resolution reprocessing in the East Sea, Korea (탄성파 자료 고해상도 재처리를 통한 동해해역의 제4기 단층 및 천부 가스 인지)

  • Jeong, Mi Suk;Kim, Gi Yeong;Heo, Sik;Kim, Han Jun
    • Journal of the Korean Geophysical Society
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    • v.2 no.1
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    • pp.39-44
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    • 1999
  • High-resolution images are drawn from existing seismic data which were originally obtained by Korea Ocean Research & Development Institute (KORDI) during 1994-1997 for deep seismic studies on the East Sea of Korea. These images are analyzed for mapping Quaternary faults and near-bottom gas pockets. First 12 channels are selected from shot gathers for reprocessing. The processing sequence adopted for high-resolution seismic images comprises data copy, trace editing, true amplitude recovery, common-midpoint sorting, initial muting, prestack deconvolution, bandpass filtering, stacking, highpass filtering, poststack deconvolution, f-x migration, and automatic gain control (AGC). Among these processing steps, predictive deconvolution, highpass filtering, and short window AGC are the most significant in enhancement of resolution. More than 200 Quaternanry faults are interpreted on the migrated sections in the shallow depths beneath the seafloor. Although numerous faults are found mostly at the western continental slope and boundaries of the Ulleung Basin, significant amount of the faults are also indicated within the basin. Many of these faults are believed to be formed with reactivation of basement, from geotectonic activities including volcanism, and often originated in Tertiary, indicating that the tectonic regime of the East Sea might be unstable. Existence of shallow gas pockets casts real hazardous warnings to deep-sea drillings and/or to underwater constructions such as inter-island cables and gas pipelines. On the other hand, discovery of these gas pockets heightens the interests in developing natural resources in the East Sea. Reprocessed seismic sections, however, show no typical seismic characteristics for gas hydrates such as bottom-simulating reflectors in the western continental slope and ocean floor.

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