• 제목/요약/키워드: eustatic sea-level

검색결과 13건 처리시간 0.017초

한강하류지형면의 분류와 지형발달에 대한 연구 (양수리에서 능곡까지)

  • 박노식
    • 동굴
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    • 제68호
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    • pp.23-73
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    • 2005
  • Purpose of study; The purpose of this study is specifically classified as two parts. The one is to attempt the chronological annals of Quaternary topographic surface through the study over the formation process of alluvial surfaces in our country, setting forth the alluvial surfaces lower-parts of Han River area, as the basic deposit, and comparing it to the marginal landform surfaces. The other is to attempt the classification of micro morphology based on the and condition premising the land use as a link for the regional development in the lower-parts of Han river area. Reasons why selected the Lower-parts of Han river area as study objects: 1. The change of river course in this area is very serve both in vertical and horizontal sides. With a situation it is very easy to know about the old geography related to the formation process of topography. 2. The component materials of gravel, sand, silt and clay are deposited in this area. Making it the available data, it is possible to consider about not oかy the formation process of topography but alsoon the development history to some extent. 3. The earthen vessel, a fossil shell fish, bone, cnarcoal and sea-weed are included in the alluvial deposition in this area. These can be also valuable data related to the chronological annals. 4. The bottom set conglometate beds is also included in the alluvial deposits. This can be also valuable data related to the research of geomorphological development. 5. Around of this area the medium landform surface, lower landform surface, pediment and basin, are existed, and these enable the comparison between the erosion surfaces and the alluvial surfaces. Approach : 1. Referring to the change of river beds, I have calculated the vertical and horizontal differences comparing the topographic map published in 1916 with that published in 1966 and through the field work 2. In classifying the landform, I have applied the method of micro morphological classification in accordance with the synthetic index based upon the land conditions, and furthermore used the classification method comparing the topographic map published in 1916 and in that of 1966. 3. I have accorded this classification with the classification by mapping through appliying the method of classification in the development history for the field work making the component materials as the available data. 4. I have used the component materials, which were picked up form the outcrop of 10 places and bored at 5 places, as the available data. 5. I have referred to Hydrological survey data of the ministry of Construction (since 1916) on the overflow of Han-river, and used geologic map of Seoul metropolitan area. Survey Data, and general map published in 1916 by the Japanese Army Survbey Dept., and map published in 1966 by the Construction Research Laboratory and ROK Army Survey Dept., respectively. Conclusion: 1. Classification of Morphology: I have added the historical consideration for development, making the component materials and fossil as the data, to the typical consideration in accordance with the map of summit level, reliefe and slope distribution. In connection with the erosion surface, I have divided into three classification such as high, medium and low-,level landform surfaces which were classified as high and low level landform surfaces in past. furthermore I have divided the low level landform surface two parts, namely upper-parts(200-300m) and bellow-parts(${\pm}100m$). Accordingly, we can recognize the three-parts of erosion surface including the medium level landform surface (500-600m) in this area. (see table 22). In condition with the alluvial surfaces I have classified as two landform surfaces (old and new) which was regarded as one face in past. Meamwhile, under the premise of land use, the synthetic, micro morphological classification based upon the land condition is as per the draw No. 19-1. This is the quite new method of classification which was at first attempted in this country. 2. I have learned that the change of river was most severe at seeing the river meandering rate from Dangjung-ni to Nanjido. As you seee the table and the vertical and horizontal change of river beds is justly proportionable to the river meandering rate. 3. It can be learned at seeing the analysis of component materials of alluvial deposits that the component from each other by areas, however, in the deposits relationship upper stream, and between upper parts and below parts I couldn't always find out the regular ones. 4. Having earthern vessel, shell bone, fossil charcoal and and seaweeds includen in the component materials such as gravel, clay, sand and silt in Dukso and Songpa deposits area. I have become to attempt the compilation of chronicle as yon see in the table 22. 5. In according to hearing of basemen excavation, the bottom set conglomerate beds of Dukso beds of Dukso-beds is 7m and Songpa-beds is 10m. In according to information of dredger it is approx. 20m in the down stream. 6. Making these two beds as the standard beds, I have compared it to other beds. 7 The coarse sand beds which is covering the clay-beds of Dukso-beds and Nanjidobeds is shown the existence of so-called erosion period which formed the gap among the alluvial deposits of stratum. The former has been proved by the sorting, bedding and roundness which was supplied by the main stream and later by the branch stream, respectively. 8. If the clay-beds of Dukeo-bed and Songpa-bed is called as being transgressive overlap, by the Eustatic movement after glacial age, the bottom set conglomerate beds shall be called as being regressive overlap at the holocene. This has the closest relationship with the basin formation movement of Seoul besides the Eustatic movement. 9. The silt-beds which is the main component of deposits of flood plain, is regarded as being deposited at the Holocene in the comb ceramic and plain pottery ages. This has the closest relationship with the change of river course and river beds.

Marine Terraces of the Eastern Coast of Korean Peninsula

  • Park, Seong-Gil
    • 한국제4기학회지
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    • 제17권2호
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    • pp.15-15
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    • 2003
  • In South Korea, marine terraces have been well developed along the eastern coastal zone, and previous researches on the marine terraces have also been focused on to this coastal zone. The marine terraces of the eastern coast of South Korea had been classified into three terrace groups, that is, the higher, middle, and lower surface ones, according to the heights of marine terraces by previous studies(Oh, 1981 ;Chang, 1987 ;Yoon et. al, 1999, 2003 ; Hwang and Yoon, 1996 etc.). Recently, however, it tends to classify the marine terraces based on the concept of geomorphic surface units(Lee, 1987 ; Kim, 1990 ; Choi, S. 2003; Choi S. et. al 2003a,b, etc). For example, it was proposed that the marine terrace surfaces of Eupcheon coast of the southeastern coastal area of Korea could be classified into 16 geomorphic surfaces, i.e., Eupcheon 1terrace(former shoreline height of 160m), 2(153m), 3(140m), 4(130m), 5(124m), 6(115m), 7(100m), 8(92m), 9(82m), 10(71m), 11(62m), 12(53m), 13(43m), 14(35m), 15(18m) and 16(10m) surfaces, in descending order, according to the former shoreline heights(Choi, S, 2003 ; Choi, S. et. al, 2003a,b). Among these terraces, Eupcheon 1, 2, 4, 5 and 7 surfaces had not been reported in previous works. Among the above mentioned marine terraces, Eupcheon 15 terrace, the most widely and continuously distributed marine terrace have been identified as marine terrace of the Last Interglacial culmination period(oxygen isotope stage 5e) which was based on amino acid dates(124∼125ka BP) and geomorphological features such as red soil, pollen analysis, fossil cryogenic structures and crossing terrace concept. Eupoheon 15 terrace surfaces have also been proposed as the key surface for the identification and correlation of the so-called '5e' marine terrace in the eastern coast of South Korea. This terrace was reconfirmed as the Last Interglacial culmination period, which was based on the identification of Ata tephra, one of the wide-spread marker tephra which indicates the Last Interglacial culmination period in Japan by Sasaki et. al(2002). It was thought that marine terraces of the eastern coast of South Korea had been formed by the steady-state uplifting during the Quaternary glacio-eustatic sea level changes(Choi, 1997). The uprift rate of 10cm/1,000years had been proposed in the eastern coast of South Korea based on the former shoreline altitude(18m) of the above Eupcheon 15 terrace. Therefore, it can be estimated that Eupcheon 1 terrace had been formed in the early Pleistocene from the above uprift rate. The OSL dating for the samples of Eupcheon 7, 9, 13, 15 and 16 terraces and identification of marker tephra in the terrace deposits are in progress. It is expected that more elaborate chronology on themarine terraces of the eastern coast of South Korea could be established by these absolute dates and marker-tephra.

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황해 중동부 제4기 퇴적층의 지음향 특성 (Geoacoustic characteristics of Quaternary stratigraphic sequences in the mid-eastern Yellow Sea)

  • 진재화;장성형;김성필;김현태;이치원;장정해;최진혁;양우헌
    • 한국해양학회지:바다
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    • 제6권2호
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    • pp.81-92
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    • 2001
  • 황해 중동부 해역 ($36^{\circ}00'N{\sim}36^{\circ}45'N$,$\;125^{\circ}00'E{\sim}125^{\circ}45'E$)에 분포하는 퇴적층을 대상으로 획득한 고해상 탄성파탐사자료(에어건, 스파커, SBP)와 심부 시추시료(YSDP 105, ${\sim}$64m 깊이)의 종합분석에 따라, 연구 해역의 층서모델을 설정하고 탄성 -음향 모델링을 수행하였다. 층서모델은 탄성파${\cdot}$${\cdot}$시 층서 단위들을 비교 분석하여 각 지층단위의 음향학적 특성, 퇴적과정, 생성시기를 규명하였다 또한 단위층 형성과정을 해수면 변동과 관련지어 순차층서를 복원하였다. 각 순차층은 육성 또는 천해성 기원이며 조립질의 저해수면 퇴적계와 조석 기원 세립질의 해침-고해수면 퇴적계로 구성되어 있다. 탄성-음향 모델링의 매개변수 산출을 위해, 0.S~90 cm 심도 간격으로 측정된 시추코아의 121 개 평균입도 자료를, Hamilton의 회귀식과 퇴적심도에 따른 변화구배를 이용하여, 전밀도(bulk density)값과 종파속도값으로 변환${\cdot}$계산하였다. 외삽${\cdot}$보정된 121 쌍의 전밀도${\cdot}$종파속도 물성값은 설정된 층서모델에서 제시된 단위층 별로 평균하여 각 단위층의 대표값으로 산출하였다. 퇴적층 내의 탄성-음향 전파 모델링을 위해, 층서모델의 각 단위층에 전밀도와 종파속도의 대표값을 입력 매개변수값으로 부여한 후, 층서 구성 단위층들을 유한요소격자로 분해하였다. 파선추적법의 컴퓨터 모델링 결과, 탄성-음향의 전파는 층서모델을 구성하는 단위층 경계면의 불규칙성과 저속도층의 다수 존재에 의하여 매우 복잡한 음경로를 보이며, 음원의 위치에 따라 탄성-음파의 암영대가 달리 존재함을 확인하였다. 것으로 보아 층 2는 고에너지환경에서 형성되었음을 시사한다. 또한 층 2에서 Al의 증가는 쇄설기원 물질의 유입에 의한 것으로 추정된다. 플라이오세 이후에 형성된 층 1은 치밀한 조직을 보이며, 형성 이후 속성작용을 받지 않았다.선택적으로 분해되는 것으로 여겨진다.두냔 tsuchigae, S. nigripinni morii, M. jeoni, C. splendidus, P. koreanus, C. lutheri, I. koreensis, C. herzi, R. brunneus 등으로 본 종들의 서식 상태는 하천의 오염 정도 및 하천개수와 직접적인 관계가 있으므로 어류서식 환경을 유지시키기 위해서 보다 적극적인 하천 수질관리의 대책과 방안이 수립되어야 될 것으로 사료된다.와 운동, H-R도상에서의 별의 특성과 진화 등이다. 탐구 과정에 대한 학생의 성취도는 비교적 높으므로 이해도가 상대적으로 낮은 영역에 대해 학생의 오답 유형을 참고하여 기본 개념 지도에 보다 관심을 기울일 필요가 있다.Cr은 FW에서 전반적으로 감소하는 경향을 보였지만 SW에서는 실험 초기에 감소하다 24시간 이후에는 증가 후 일정한 양상을 보였다. Pb은 FW에서 전반적으로 감소했지만 SW에서는 초기에 급격히 증가 후 다시 급격히 감소하는 양상을 보였다 Pb 또한 Cu, Cd, As와 마찬가지로 SW1&2에서 제거속도가 가장 빠르게 나타났다. FW 상층수 중 Hg는 시간에 따라 급격히 감소했고, 제거속도는 Fw5&6에서 가장 느렸다. 이러한 결과에 근거할 때 벼가 자라고 있고 이분해성 유기물이 풍부한 FW1&2, FW3&4 토양과 상층수에서는 유기물의 분해 활동이 활발하였지만, 벼가 경작되지 않는 FW5&6과 SW 에서는 유기물이 상대적으로 결핍되어 유기물의 분해활동이 적었을 것으로 판단된다. 한편, 수조에 인위적으로 유기물을 첨가한 경우 박테리아 세포수는 SW1에서 164시간 동안 4배 증가하였으나 SW3과 SW5에서는 각각 2.7배, 1.

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