• 제목/요약/키워드: Paleomagnetic analysis

검색결과 7건 처리시간 0.018초

Total Field Magnetic Analysis of Nine Seamounts Northwest of the Marshall Islands, Western Pacific

  • Lee, Tae-Gook;Lee, Sang-Mook;Moon, Jae-Woon;Lee, Kie-Hwa
    • Ocean and Polar Research
    • /
    • 제24권3호
    • /
    • pp.197-205
    • /
    • 2002
  • Total magnetic field and high-resolution bathymetric data were collected over nine seamounts to the northwest of the Marshall Islands in the western Pacific. Magnetic parameters including inclination and declination were calculated from the magnetic anomalies using inversion algorithm of Plouff (1976), and a corresponding paleomagnetic pole was determined with the magnetic parameters. The paleomagnetic poles determined in this study were compared with the previous apparent polar wander path (APWP) of Pacific plate. Most seamounts of the study area have normal polarity. The study reveals that all nine seamounts in the study area formed in the southern hemisphere during the Cretaceous based on their comparison with the APWP of Pacific plate. The ages estimated from paleomagnetic poles can be divided by age into three groups: the oldest (OSM1 and OSM3), middle age (OSM2, OSM4, and 6-2), and the youngest (OSM5-1, 5-2, 5-3, and 6-1). The fermer two groups and the latter seem to be coincident with two distinct pulses of Cretaceous volcanic activity (115-90 Ma and 83-65 Ma). As a whole the seamounts at southwest of the study area are older than at those northeast.

정림사지 창건시기 재고 (Reconsideration of the Construction Period of the Jeongnimsaji Temple Site)

  • 탁경백
    • 건축역사연구
    • /
    • 제25권4호
    • /
    • pp.57-64
    • /
    • 2016
  • It was believed that Jeongnimsa temple was built after the capital was moved from Gongju to Buyeo. It was confirmed that it was built A.D. $625{\pm}20$ by conducting a paleomagnetic analysis on the fireplace, which was recently found at the bottom of Jungmunji(middle gate). Consequently, it is assumed that the temple was built in the early 7th century unlike the previous point of view. Therefore, this study evaluated if the fireplace at the bottom of Jungmunji was found at the geological stratum representing the Jeongnimsa temple. Moreover, the study examined when the fireplace at the bottom of Jungmunji was constructed on the soil stratum. It is possible that the fireplace was built in the early 7th century as shown in the paleomagnetic analysis. However, when we compared the soil strata of the Jungmunji and the existing five-story stone pagoda, it showed that the ground was prepared differently and they were built over a fairly long period of time. Furthermore, I discovered that there was a wooden pagoda under the five-story stone pagoda by examining the soil strata map. Therefore, previous studies evaluated the arrangement of auxiliary buildings of Jeongnimsa temple and concluded that it was built in the early 7th century. It is hard to determine when the temple was built based on the arrangement of auxiliary buildings, because it takes a long time to build a temple and auxiliary buildings can be relocated during this long construction period. Rather, we have to admit that there are various arrangement patterns through minor changes in buildings from the one pagoda and one main building(Geumdang) arrangement.

A New Spinel in Martian Meteorite SaU 008: Implications for Martian Magnetism

  • Yu, Yong-Jae
    • 한국지구물리탐사학회:학술대회논문집
    • /
    • 한국지구물리탐사학회 2007년도 특별 심포지엄 논문집
    • /
    • pp.27-30
    • /
    • 2007
  • Martian meteorites are the only available Martian Materials on Earth. A suite of demagnetization experiments, temperature dependence of saturation magnetization, scanning electron microscopy, and electron microprobe analysis were carried out to characterize the remanent magnetization carriers of Martian meteorite SaU 008. A stable paleomagnetic record of SaU 008 originates from a newly found spinel ((Fe, Cr, Ti)-spinel) whose composition has never been documented (or identified as magnetic).

  • PDF

경북 고령지역에 분포하는 경상누층군의 관입암류에 의한 재자화작용에 관한 고지자기 연구 (Paleomagnetic study of Remagnetization by a Dike in the Gyeongsang Supergroup)

  • 전영수;민경덕;이윤수;이영훈;이동영
    • 자원환경지질
    • /
    • 제31권4호
    • /
    • pp.311-324
    • /
    • 1998
  • Paleomagnetic study is carried out to investigate the possibility of remagnetization by dikes in the Cretaceous Gyeongsang Basin. We selected a site for a contact test as a preliminary study, and collected 41 core samples (7 from andesitic dike, 17 from sedimentary rock on the left side of dike and 17 from sedimentary rock on the right side). Magnetite was responsible for the remagnetization based on microscopic observation and demagnetization analysis. Although the increasement of magnetic susceptibility appears on both sides about 100 cm from the dike, the increment of NRM intensity was obtained from the specimens on the left side only. This is interpreted that the size of magnetite newly formed is dominated by superparamagnetic grains in the right side, but by larger than single-domain grains in the left. Reversed polarity component remagnetized by intrusion of dike was also found only for core samples from 116 cm left side of dike but abscent from right side indicating the remagnetization by the dike depends on the geometric shape and width of the dike, which is supported by field observations. The content of epidote is well correlated with remagnetization, and indicates the hydrothermal alteration/metameorphism was activated by the intrusion. We concluded that the above evidences in this study further support thermally-activated chemical origin of the remagnetization with meager contribution of contact metamorphism, and that any significant evidence of regional-scaled remagnetization was not found in the study area.

  • PDF

포항(浦項) 및 장기분지(盆地)에 대한 고지자기(古地磁氣), 층서(層序) 및 구조연구(構造硏究); 화산암류(火山岩類)의 K-Ar 연대(年代) (Paleomagnetism, Stratigraphy and Geologic Structure of the Tertiary Pohang and Changgi Basins; K-Ar Ages for the Volcanic Rocks)

  • 이현구;문희수;민경덕;김인수;윤혜수;이타야 테츠마루
    • 자원환경지질
    • /
    • 제25권3호
    • /
    • pp.337-349
    • /
    • 1992
  • The Tertiary basins in Korea have widely been studied by numerous researchers producing individual results in sedimentology, paleontology, stratigraphy, volcanic petrology and structural geology, but interdisciplinary studies, inter-basin analysis and basin-forming process have not been carried out yet. Major work of this study is to elucidate evidences obtained from different parts of a basin as well as different Tertiary basins (Pohang, Changgi, Eoil, Haseo and Ulsan basins) in order to build up the correlation between the basins, and an overall picture of the basin architecture and evolution in Korea. According to the paleontologic evidences the geologic age of the Pohang marine basin is dated to be late Lower Miocence to Middle Miocene, whereas other non-marine basins are older as being either Early Miocene or Oligocene(Lee, 1975, 1978: Bong, 1984: Chun, 1982: Choi et al., 1984: Yun et al., 1990: Yoon, 1982). However, detailed ages of the Tertiary sediments, and their correlations in a basin and between basins are still controversial, since the basins are separated from each other, sedimentary sequence is disturbed and intruded by voncanic rocks, and non-marine sediments are not fossiliferous to be correlated. Therefore, in this work radiometric, magnetostratigraphic, and biostratigraphic data was integrated for the refinement of chronostratigraphy and synopsis of stratigraphy of Tertiary basins of Korea. A total of 21 samples including 10 basaltic, 2 porphyritic, and 9 andesitic rocks from 4 basins were collected for the K-Ar dating of whole rock method. The obtained age can be grouped as follows: $14.8{\pm}0.4{\sim}15.2{\pm}0.4Ma$, $19.9{\pm}0.5{\sim}22.1{\pm}0.7Ma$, $18.0{\pm}1.1{\sim}20.4+0.5Ma$, and $14.6{\pm}0.7{\sim}21.1{\pm}0.5Ma$. Stratigraphically they mostly fall into the range of Lower Miocene to Mid Miocene. The oldest volcanic rock recorded is a basalt (911213-6) with the age of $22.05{\pm}0.67Ma$ near Sangjeong-ri in the Changgi (or Janggi) basin and presumed to be formed in the Early Miocene, when Changgi Conglomerate began to deposit. The youngest one (911214-9) is a basalt of $14.64{\pm}0.66Ma$ in the Haseo basin. This means the intrusive and extrusive rocks are not a product of sudden voncanic activity of short duration as previously accepted but of successive processes lasting relatively long period of 8 or 9 Ma. The radiometric age of the volcanic rocks is not randomly distributed but varies systematically with basins and localities. It becomes generlly younger to the south, namely from the Changgi basin to the Haseo basin. The rocks in the Changgi basin are dated to be from $19.92{\pm}0.47$ to $22.05{\pm}0.67Ma$. With exception of only one locality in the Geumgwangdong they all formed before 20 Ma B.P. The Eoil basalt by Tateiwa in the Eoil basin are dated to be from $20.44{\pm}0.47$ to $18.35{\pm}0.62Ma$ and they are younger than those in the Changgi basin by 2~4 Ma. Specifically, basaltic rocks in the sedimentary and voncanic sequences of the Eoil basin can be well compared to the sequence of associated sedimentary rocks. Generally they become younger to the stratigraphically upper part. Among the basin, the Haseo basin is characterized by the youngest volcanic rocks. The basalt (911214-7) which crops out in Jeongja-ri, Gangdong-myon, Ulsan-gun is $16.22{\pm}0.75Ma$ and the other one (911214-9) in coastal area, Jujon-dong, Ulsan is $14.64{\pm}0.66Ma$ old. The radiometric data are positively collaborated with the results of paleomagnetic study, pull-apart basin model and East Sea spreading theory. Especially, the successively changing age of Eoil basalts are in accordance with successively changing degree of rotation. In detail, following results are discussed. Firstly, the porphyritic rocks previously known as Cretaceous basement (911213-2, 911214-1) show the age of $43.73{\pm}1.05$$49.58{\pm}1.13Ma$(Eocene) confirms the results of Jin et al. (1988). This means sequential volcanic activity from Cretaceous up to Lower Tertiary. Secondly, intrusive andesitic rocks in the Pohang basin, which are dated to be $21.8{\pm}2.8Ma$ (Jin et al., 1988) are found out to be 15 Ma old in coincindence with the age of host strata of 16.5 Ma. Thirdly, The Quaternary basalt (911213-5 and 911213-6) of Tateiwa(1924) is not homogeneous regarding formation age and petrological characteristics. The basalt in the Changgi basin show the age of $19.92{\pm}0.47$ and $22.05{\pm}0.67$ (Miocene). The basalt (911213-8) in Sangjond-ri, which intruded Nultaeri Trachytic Tuff is dated to be $20.55{\pm}0.50Ma$, which means Changgi Group is older than this age. The Yeonil Basalt, which Tateiwa described as Quaternary one shows different age ranging from Lower Miocene to Upper Miocene(cf. Jin et al., 1988: sample no. 93-33: $10.20{\pm}0.30Ma$). Therefore, the Yeonil Quarterary basalt should be revised and divided into different geologic epochs. Fourthly, Yeonil basalt of Tateiwa (1926) in the Eoil basin is correlated to the Yeonil basalt in the Changgi basin. Yoon (1989) intergrated both basalts as Eoil basaltic andesitic volcanic rocks or Eoil basalt (Yoon et al., 1991), and placed uppermost unit of the Changgi Group. As mentioned above the so-called Quarternary basalt in the Eoil basin are not extruded or intruaed simultaneously, but differentiatedly (14 Ma~25 Ma) so that they can not be classified as one unit. Fifthly, the Yongdong-ri formation of the Pomgogri Group is intruded by the Eoil basalt (911214-3) of 18.35~0.62 Ma age. Therefore, the deposition of the Pomgogri Group is completed before this age. Referring petrological characteristics, occurences, paleomagnetic data, and relationship to other Eoil basalts, it is most provable that this basalt is younger than two others. That means the Pomgogri Group is underlain by the Changgi Group. Sixthly, mineral composition of the basalts and andesitic rocks from the 4 basins show different ground mass and phenocryst. In volcanic rocks in the Pohang basin, phenocrysts are pyroxene and a small amount of biotite. Those of the Changgi basin is predominant by Labradorite, in the Eoil by bytownite-anorthite and a small amount pyroxene.

  • PDF

한국 서남근해에 대한 항공자력탐사 해석 (Aeromagnetic Interpretation of the Southern and Western Offshore Korea)

  • 박창고;박창업
    • 한국석유지질학회지
    • /
    • 제2권2호
    • /
    • pp.51-57
    • /
    • 1994
  • 1969년 미해군이 황해지역에서 실시한 항공자력측정자료를 분석 연구한 결과, 한국 서남근해 제2광구 내에 있는 기존 군산분지(群山盆地) 남쪽에 흑산분지(黑山盆地)라고 명명하는 신퇴적분지가 존재함을 알게 되었다. 이 흑산분지는 서서 북-남남동으로 뻗은 3개의 소분지로 구성되었다. 이번 연구결과로 인하여 군산분지에 대해 독립적인 새로운 분석을 하게 했고 또한 그 두 분지뿐만 아니라 서근해 전역에 걸쳐 지질구조적 성인 및 그 생성역학(生成力學)에 대한 중요한 자료를 얻게 되었다. 분지생성 및 구조형태는 ‘두번-건너뛴-좌수향-렌치단층(斷層)’(Double overstepped left-lateral wrench faults)에 의한 롬보캐즘(rhombochasm)으로 해석된다. 한반도 내에 발달하고 있는 대단층들을 본 항공자력이상으로부터 얻은 중거에 의해서 본 연구지역 즉 근해까지 연장시켰다. 또한 이들 단층들의 성질을 좌수향렌치로 해석했다. 이와 같은 전 지역적인 단층 구조형태는 이동우의 영동분지에 대한 연구결과와 같다. 단층들의 운동방향은 필리핀이 에오세(Eocene) 이후 시계방향으로 약$80^{\circ}$회전했다는 최근 발표된 고지자기연구(古地磁氣硏究)에서 얻은 증거에 의하여 뒷받침되고 있다. 2$\frac{1}{2}$-차원의 모형 연구결과에 의하면 군산분지는 대략 $7,500{\cal}m$의 두터운 퇴적층을 갖는 것 같다. 흑산분지는 그 상부에 탄성파 속도가 빠른 층이 덮고 있어서 지금까지 발견되지 않고 있었다고 믿어진다. 흑산분지의 개략적인 형태가 석유부존에 적합한 듯 하기 때문에 두터운 퇴적층을 보유하고 있는 듯한 자력적 표현을 규명하기 위한 정밀항공 자력탐사를 실시할 것을 추천한다. 만약 고속도의 층이 확인된다면 자력탐사법에 대한 보충이 될 뿐 아니라 퇴적층에 대한 구조적인 묘사를 하는데 도움이 되는 중력탐사를 추가할 것을 추천한다. 정밀자력탐사 또는 중력탐사를 할 수 없다면 높은 에너지원의 탄성파 탐사를 실시하는 것이 더 효과적일 수도 있다.

  • PDF

포천 - 기산리 일대에 분포하는 쥬라기 대보화강암류의 암석 및 암석화학 (Petrology and petrochemistry of the Jurassic Daebo granites in the Pocheon-Gisanri area)

  • 윤현수;홍세선;이윤수
    • 암석학회지
    • /
    • 제11권1호
    • /
    • pp.1-16
    • /
    • 2002
  • 1/5만 포천-기산리도폭에 넓게 분포하는 쥬라기의 대보화강암류는 선캠브리아기의 편마암 복합체를 관입한다. 이들은 모우드 분석결과 거의가 몬조화강암에 해당하며, 구성광물특성상 흑운모화강암(Gb), 석류석흑운모화강암(Ggb) 그리고 복운모화강암(Gtm)으로 구분된다. 주변지역의 야외조사와 K-Ar 운모류 연령해석에 의하면 Ggb가 Gb를 관입하였으며 Gtm은 가장 후기로 해석된다. 연구대상인 Gb와 Ggb는 서브알카린과 캘크알칼린 계열의 산성암류이다. $SiO_2$ 증가에 따라 주 원소의 대부분이 완만한 부의 경향을 뚜렷히 가지나, $TiO_2$, MgO 및 CaO등은 두 개의 다소 다른 선상분포를 이룬다. 이와 더불어 선상의 분포경향을 이룬 AMF, Sr대 Ba 그리고 Rb-Ba-Sr 관계 등으로 미루어, 이들은 동일마그마에서 기원되었으며 Ggb가 Gb보다 분화후기의 산물로 해석된다. Sr 대 CaO와 Sr 대 $K_2O$는 모두 정의 관계를 이루나, Sr이 알칼리장석보다 사장석의 분별결정작용에 보다 더 관여한 경향을 이룬다. 콘드라이트 값으로 표준화한 변화도에서 이들은 LREE에서 HREE로 갈수록 점진적으로 뚜렷이 결핍된다. 그러나 Ggb의 한 개 시료는 HREE가 점이적 증가경향을 이루며, 이는 석류석의 수반에 의한 것으로 해석된다. Eu 부의 이상으로 미루어 Gb에 비해 Ggb에서 사장석의 분별결정작용이 매우 강하게 일어난 것으로 보인다. (Qz+Af) 대 Op의 모우드 상관도에서 Gb는 거의가 자철석 계열에, Ggb는 모두 티탄철석 계열에 속한다. 모우드 분석과 대자율 역산에서 Gb와 Ggb의 대자율은 각각 339.3 ${\mu}SI$와 2.3 ${\mu}SI$로써 뚜렷이 구분되며, 이는 각각 자철석과 흑운모가 주도하는 것으로 분석된다 Gb와 Ggb의 $SiO_2$는 각각 높은 함량과 좁은 범위값을, $K_2O/Na_2O$는 각각 1.29와 1.27을, 그리고 A/CNK 몰비는 거의가 1.05 이상의 값을 가진다. 그 밖에 ACF도와 대자율값에서도 모두 S-형에 속하는 암석성인적 특성을 보인다.