• 제목/요약/키워드: northeast equatorial Pacific

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북동태평양 적도 Thermocline Ridge 해역에서 영양염(질소, 인, 규소)과 유기탄소(용존 및 입자)의 분포 특성 및 연간 변화 (Distribution and Inter-annual Variation of Nutrients (N, P, Si) and Organic Carbon (DOC, POC) in the Equatorial Thermocline Ridge, Northeast Pacific)

  • 손주원;김경홍;김미진;손승규;지상범
    • Ocean and Polar Research
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    • 제33권1호
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    • pp.55-68
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    • 2011
  • The distribution and inter-annual variation of nutrients (N, P, Si) and dissolved/particulate organic carbon were investigated in the equatorial thermocline ridge ($7^{\circ}{\sim}11.5^{\circ}N$, $131.5^{\circ}W$) of the northeast Pacific. From the Oceanic Nino Index and Multivariate ENSO Index provided by NOAA, normal condition was observed in July 2003 and August 2005 on the aspect of global climate/ocean change. However, La Ni$\~{n}$a and El Ni$\~{n}$o episodes occurred in July 2007 and August 2009, respectively. Thermocline ridge in the study area was located at $9^{\circ}N$ in July 2003, $8^{\circ}N$ in August 2005, $10^{\circ}N$ in July 2007, and $10.5^{\circ}N$ in August 2009 under the influence of global climate/ocean change and surface current system (North Equatorial Counter Current and North Equatorial Current) of the northeast Pacific. Maximum depth integrated values (DIV) of nutrients in the upper layer (0~100 m depth range) were shown in July 2007 (mean 21.12 gN/$m^2$, 4.27 gP/$m^2$, 33.72 gSi/$m^2$) and higher variability of DIV in the equatorial thermocline ridge was observed at $10^{\circ}N$ during the study periods. Also, maximum concentration of dissolved organic carbon (DOC) in the upper 50 m depth layer was observed in July 2007 (mean $107.48{\pm}14.58\;{\mu}M$), and particulate organic carbon (POC, mean $9.42{\pm}3.02\;{\mu}M$) was similar to that of DOC. Nutrient concentration in the surface layer increased with effect of upwelling phenomenon in the equatorial thermocline ridge and La Ni$\~{n}$a episode, which had formed in the central Pacific. This process also resulted in the increasing of organic carbon concentration (DOC and POC) in the surface layer. From these results, it is suggested that spatial and temporal variation of chemical and biological factors were generated by physical processes in the equatorial thermocline ridge.

지자기 방향변화 및 베릴륨 동위원소비를 이용한 북동 적도 태평양 주상시료의 층서확립 (Stratigraphy of a Sediment Core Collected from the NE Equatorial Pacific Using Reversal Patterns of Geomagnetic Field and Be Isotope Ratio)

  • 김원년;형기성;공기수
    • Ocean and Polar Research
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    • 제36권4호
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    • pp.395-405
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    • 2014
  • A 570 cm-long sediment core was retrieved at $9^{\circ}57^{\prime}N$ and $131^{\circ}42^{\prime}W$ in 5,080 m water depth from the northeast equatorial Pacific and its stratigraphy was established with $^{10}Be/^9Be$ and paleomagnetic measurements. Successive AF demagnetization reveals eight geomagnetic field reversals. In the reference geologic time scale, the eight reversal events correspond to an age of about 4.5 Ma. However, $^{10}Be/^9Be$-based age yields 9.5 Ma at a depth of 372 cm. Such a large discrepancy in determined ages is attributed to an extremely low sedimentation rate, 0.4 mm/kyr on average, of the study core and resultant loss or smoothing of geomagnetic fields. The composite age model reveals a wide range in the sedimentation rate - varying from 0.1 to 2.4 mm/kyr. However, the sedimentation rate shows systematic variation depending on sedimentary facies (Unit II and III), which suggests that each lithologic unit has a unique provenance and transport mechanism. At depths of 110-80 cm with a sedimentation rate of about 0.1 mm/kyr, ancient geomagnetic field reversal events of at least a 1.8 Myr time span have not been recorded, which indicates the probable existence of a hiatus in the interval. Such a sedimentary hiatus is observed widely in the deep-sea sediments of the NE equatorial Pacific.

Redescription of Two Species of Triconia (Copepoda, Cyclopoida, Oncaeidae) Based on Their First Records in the Tropical Pacific

  • Cho, Kyuhee;Kim, Woong-Seo;Lee, Wonchoel
    • 환경생물
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    • 제35권1호
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    • pp.64-82
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    • 2017
  • Two species of the minuta-subgroup within the oncaeid copepod genus Triconia $B{\ddot{o}}ttger$-Schnack, 1999 collected in the equatorial Pacific Ocean are newly recorded. A female T. minuta (Giesbrecht, 1893 ["1892"]) and both male and female T. umerus ($B{\ddot{o}}ttger$-Schnack and Boxshall, 1990) from the northeast equatorial Pacific are redescribed with the comparison of its morphological details, which differs from previous studies, in terms of the larger body size, the length to width ratio of the genital double-somite, the relative length of the outer basal seta on P5, and the ornamentation of the appendages. The characters, which are used for identification, such as the length ratio of the outer subdistal and outer spine versus the distal spine on P3-P4, and the outer spine length of the middle exopodal segment on P3 and P4 are reported for the first time. Information on the variations in the endopodal spine lengths of swimming legs 2-4 is also provided for T. minuta and T. umerus, with the summary of the wide zoogeographical distribution of these two species.

북동태평양 한국 심해저 연구지역 망간단괴의 지역적 분포와 퇴적환경 (Regional Occurrence and Sedimentary Environment of Manganese Nodule in KODOS area, C-C zone of NE Pacific)

  • 지상범;강정극;오재경;손승규;박정기
    • Ocean and Polar Research
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    • 제25권3호
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    • pp.257-267
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    • 2003
  • Deep-sea bottom photographs acquired in the Clarion-Clipperton fracture zone of the northeast equatorial Pacific were analyzed to reveal the controlling processes for the spatial variation of manganese nodule. The results show that regional-scale occurrence variations of manganese nodule are mainly controlled by primary productivity of surface water, sedimentation rate, and water depth (or carbonate compensation depth). As a result, the diagenetic accretion on nodules increases toward southwest while hydrogenetic accretion increases toward northeast. Considering the northwestward movement of Pacific Plate, this regional-scale variation of manganese nodule occurrence seems to be affected by oceanic environment during the active growth period (Oligocene-Miocene) of Pacific Plate.

북동태평양 대한민국 광구 KR5 지역 표층퇴적물의 물리적 특성 (Physical Properties of Surface Sediments from the KR(Korea Reserved) 5 Area, Northeastern Equatorial Pacific)

  • 이현복;지상범;형기성;박정기;김기현;오재경
    • Ocean and Polar Research
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    • 제28권4호
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    • pp.475-484
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    • 2006
  • In order to reveal the vertical variation of physical properties in deep-sea sediments, deep-sea sediment cores were collected at 78 stations using a multiple corer in the KR5 area, one of the Korea contract areas for manganese nodule exploration, located in the northeast equatorial Pacific. Based on the color of sediments, sampled sediment cores were characterized into three lithologic units (unit 1,2, and 3). In all sediment cores, three units appear systematically; unit 1 lies at the top of cores and unit 2 and/or unit 3 appear to underlie unit 1 or alternate with unit 3. Unit 1 layer from the top of cores shows dark grayish brown to dark brown with mean thickness of 10.2cm. Unit 2 and 3 layers show very dark brown to black color and yellowish brown to brown color, respectively. According to the physical properties of the deep-sea sediment cores, sediment column can be divided into three sections. Section A $(0{\sim}15cm)$ in subbottom depth consists mostly of unit 1. Mean values of physical properties of section B $(15{\sim}30cm)$ in subbottom depth are similar to those of section C (>30 cm) in subbottom depth. However, the physical properties of section B were more variable than those of section C because of the high activity of bioturbation in section B. These results will provide valuable information for selecting suitable sites for mining manganese nodules in the Korea contract areas.

북동태평양지역의 방산충 생층서 및 고해양환경 연구 (Radiolarian Biostratigraphy and Paleoceanographic Study from the Northeast Equatorial Pacific)

  • 김기현;박정희
    • Ocean and Polar Research
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    • 제21권2호
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    • pp.127-136
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    • 1999
  • Radiolarian assemblages from KODOS area were analyzed in order to understand the biostratigraphy and paleoceanography of deep-sea sediment from the Northeast Equatorial Pacific. The sediment core was divided into two or three units on the basis of the chemical and physical properties. In the upper sediment, mixtures of Quaternary and Tertiary radiolarians are found indicating active reworking processes. Dissolution of radiolarians seem to increase with depth. Radiolarians are seldom in Unit III presumably due to dissolution and corrosion. The middle part of unit I appears to correspond to Collosphaera invaginata Zone (0.21 Ma). Unit II belongs to Collosphaera tuberosa Zone. Based on the absence of Stylatractus universus, we estimate its age to be younger than 0.42 Ma. Based on our analyses of radiolarians in Unit I and II, we estimated the age of unit III as Tertiary, particularly from Oligocene to Miocene. There may to be hiatuses of more than 3 My from late Miocene to Pliocene, which probably resulted from erosion and dissolution by the Antarctic Bottom Water Sedimentation rates during Quaternary range from 0.15 to 0.50 mm/ky with significant variabilities among stations. Radiolarians in the study area were mostly warm-water species.

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북동태평양 클라리온-클리퍼톤 균열대 심해저 퇴적물의 전단강도 특성 (A Shear Strength Characteristics in Deep-sea Sediment from the Clarion-Clipperton Fracture Zone, Northeast Equatorial Pacific)

  • 지상범;강정극;김기현;박정기;손승규;고영탁
    • 자원환경지질
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    • 제37권2호
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    • pp.255-267
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    • 2004
  • 북동태평양 클라리온-클리퍼톤 균열대(Clarion-Clipperton Fracture Zone) 사이에 위치한 연구지역 퇴적물의 전단강도 특성과 퇴적학적 변화요인을 파악하기위하여 연구지역 각 지점에서 다중주상시료채취기로 채취된 69개 표층퇴적물을 분석하였다. 북부지역 원양성 적점토의 평균 전단강도는 4.4kPa로 낮은 반면, 중부지역 규질 퇴적물의 평균전단강도는 6.3kPa로 가장 높다. 남부지역 탄산질 퇴적물은 3.4kPa로 가장 낮으며, 남부지역과 중부지역사이의 전이퇴적물은 3.8kPa로 탄산질 퇴적물과 규질퇴적물의 중간 값을 보인다. 원양성 적점토가 완만한 전단강도 증가를 보이는 이유는 일반적인 고화 과정에 의한 함수율 감소에 의한 결과이다. 반면에 규질퇴적물에서 나타나는 퇴적깊이에 따른 전단강도의 급격한 증가는 퇴적결층과 연관되어 있다. 탄산질 퇴적물이 가장 낮은 전단강도를 보이는 이유는 남부지역이 타 지역에 비해 퇴적율이 월등히 높기 때문이다.

북동태평양(KODOS 해역)의 영양염 및 형광 유기물에 관한 환경특성 연구 (Environmental Characteristics of Nutrients and Fluorescent Organic Hatters in the Northeast Pacific Ocean(KODOS))

  • 손승규;박용철
    • 한국환경과학회지
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    • 제6권6호
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    • pp.595-604
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    • 1997
  • To investigate characteristics of biogeochemical environment of the Korea Deep Ocean Study(KODOSI area in the northeast Pacific Ocean, we preferentially measured Inorganic nutrients and fluorescent organic matters. Typically. the permanent thermocline was well developed at the depth of 200~1000m In the study area. Nitrate. phosphate and silicate were low In the surface mixed layer and Increased with depth. N/P and N/Si showed 15 and 0.2 respectively In the deeper layer. Two fluorophores, biomacromolecule(protein-like) and geomacromolecule (humid-like) , were observed by three dimensional fluorescence excltatlon/ emission spectra matrix. Biomacromolecule(maximum fluorescence at $Ex_{280m}/Em_{330nm}$) ranged from 41.9 to 147.0 TU with its maximum In the surface mixed layer and minimum in deeper water, This is a same trend that has been reported for DOC in the equatorial Pacific. This suggests that biomacromolecule might be labile and converted to refractory humic substance after bacterial degradation In the deeper layer. On the contrary, geomacromolecule(maximum fluorescence at $Ex_{330m}/Em_{430m}$), ranged from 7.6 to 46.5 QSU, showed minimum in the surface nixed layer(euphotic zone) Implying photodegradation and then increased with depth at all stations. In the characteristics of vertical profiles, the relationship between biomacromolecule and geomacromolecule showed negative correlation. Such trend can be attributed to biochemical regeneration or formation of fluorescent materials accompanying oxidation and rennnerallzation of settling organic matter.

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ANALYSIS AND INTERCOMPARISON OF VARIOUS GLOBAL EVAPORATION PRODUCTS

  • School of Marine Science and Technology, Tokai University, Tsuyoshi Watabe;School of Marine Science and Technology, Tokai University, Masahisa Kubota
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2008년도 International Symposium on Remote Sensing
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    • pp.285-288
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    • 2008
  • We analyzed evaporation data in the Japanese Ocean Flux Data Sets with Use of Remote Sensing Observations (J-OFURO) Ver.2. There exists huge evaporation in Gulf Stream, Kuroshio Extension, the ocean dessert and the southern part of the Indian Ocean. The temporal variation of evaporation is overwhelmingly large, of which the standard deviation is more than 120(mm), in the Kuroshio Extension region. Also, the result of harmonic analysis gives that this large variation is closely related to annual variation. In addition, the first EOF mode shows long-term variation showing the maximum amplitude between 1992 and 1994 and remarkable decrease after 1994, and large amplitude in the equatorial region and northeast of Australia. The second and third modes were strongly influenced by El Nino. Moreover, we compared J-OFURO2 evaporation product with other products. We used six kinds of data sets (HOAPS3 and GSSTF2 of satellite data, NRA1, NRA2, ERA40 and JRA25 of reanalysis data) for comparison. Most products show underestimation in the most regions, in particular, in the northern North Pacific, mid-latitudes of the eastern South Pacific, and high-latitudes of the South Pacific compared with J-OFUR02. On the other hand, JRA25 and NRA2 show large overestimation in the equatorial regions. RMS difference between NRA2 and J-OFURO2 in the Kuroshio Extension was significantly large, more than 120(mm).

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북동태평양 원양성 적점토의 지질공학적 특성에 관한 연구 (Geotechnical Properties of Pelagic Red Clay in Northeast Equatorial Pacific)

  • 지상범;이현복;형기성;주세종;이근창;함동진
    • 한국해양학회지:바다
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    • 제13권3호
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    • pp.286-294
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    • 2008
  • 북동태평양 클라리온-클리퍼톤 균열대(Clarion-Clipperton Fracture Zone, C-C지역) 사이의 북쪽지역에 위치한 연구지역 원양성 적점토 표층퇴적물의 특성파악을 위해 기계적 교란이 적은 다중주상시료채취기로 24개 정점에서 시료를 채취하였다. 채집된 퇴적물 시료의 입도, 함수율, 밀도, 공극률 등 지표 특성과 전단강도, 컨시스턴시 한계 등의 지질공학적 특성 그리고 생물기원 오팔함량 및 광물조성을 분석하였다. 원양성 적점토가 분포하는 광범위한 연구지역($15^{\circ}45'{\sim}16^{\circ}55'N,\;125^{\circ}20'{\sim}134^{\circ}10'W$) 퇴적물의 지표 특성 및 광물학적 특성은 동일 경도 상에서 동측지역과 서측지역 사이의 큰 거리차이에도 불구하고 매우 균일한 특성을 보인다. 단지 표층퇴적물의 전단강도는 KR1 지역에 비해 KR2지역이 고화된 특성을 보이는데, 이것은 KR2 지역에서 나타나는 하부 Unit 3의 영향에 의한 것으로 판단된다.