• Title/Summary/Keyword: 지형형성작용

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The Distribution Characteristics of Topographical Relieves at Each Geological Area in Gyeongsangbuk-do Province using GIS (GIS를 이용한 경상북도 지질 지역별 지형 기복의 분포 특성)

  • KIM, Dae-Sik;LEE, Gwang-Ryul
    • Journal of The Geomorphological Association of Korea
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    • v.17 no.3
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    • pp.49-57
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    • 2010
  • The topographical rolling distribution characteristics of 10 geological areas in Gyeongsangbuk-do are analyzed using GIS. PEs, PEgrgn, Pp2, Kav·Kiv, and Khgr regions occupy the more than 60% that are a steep slope-a high elevation and a steep slope-a middle elevation region, and form high moutains in Gyeongsangbuk-do. Meanwhile, Ke1-9 and Te1-2 regions take possession of the more than 70% that are a low elevation region. Ke1-9 region form landward flatlands and hills around Nakdong river and tributaries of Nakdong river in Gyeongsangbuk-do. Then, Te1-2 region form coastal lowlands adjacent the East sea in Gyeongsangbuk-do. Also, Jgr region take possession of the more than 70% that are a middle elevation region, and form low moutains or flatlands in Gyeongsangbuk-do. Finally, Ols1 region take possession of the more than 50% that are a steep slope region, and form landward moutains in Gyeongsangbuk-do.

A Process Study on Korean Peninsula Karst by Geologic Structures (지질구조(地質構造)에 의한 한반도(韓半島) Karst의 발달과정(發達過程) 연구(硏究))

  • Oh, Jong-Woo
    • Journal of the Speleological Society of Korea
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    • no.86
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    • pp.1-7
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    • 2008
  • 지질구조는 카르스트의 층위와 구조상의 배열에 있어서 다양한 카르스트의 지형을 결정한다. 카르스트의 발달은 조산 및 조륙운동, 석회암층의 두께, 구성물질의 유형, 단층 및 습곡의 다양성, 주향 및 절리면의 빈도, 기후변화 및 기상환경, 수문 및 유수의 유형, 토지이용 현황 외 환경오염 등에 따라서 차별성을 나타낸다. 특히 지질구조에 따른 카르스트의 발달은 석회암 등이 유수의 작용에 커다란 용해작용의 영향을 받으므로 지질구조의 요인인 단층과 습곡현황과 절리와 균열 등에 의한 카르스트의 발달에 가장 큰 기여를 한다. 지질구조에 의하여 카르스트 지표지형에는 karren과 hum, mogotes, doline와 uvala, towers, springs, 구조적 유역, Closed Systems 등이 형성되고, 지하지형에는 Phreatic 동굴, Vados 동굴, Chambers, Multileveling cavities, Vertical shafts 등이 형성되는 다양성을 가진다. 한반도에서는 습곡구조에 의한 동공의 발달이 탁월하며, 다단계 및 급사면형 동굴의 유형이 다양하게 분포되고 있다.

Geomorphological Processes of Yuga Alluvial Fan in Korea (유가 선상지의 지형 형성과정)

  • Lee, Gwang-Ryul;Cho, Young Dong
    • Journal of the Korean Geographical Society
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    • v.48 no.2
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    • pp.204-217
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    • 2013
  • This study shows the geomorphological processes of Yuga alluvial fan at Dalseong-gun, Daegu in Korea, based on characteristics of geomorphological surfaces, analysis of geomorphological deposits and OSL age dating. Alluvial fans of this area are classified into three surfaces(YG-F1, YG-F2, YG-F3) and were formed by the depositional processes resulting from the changes in hydraulic geometry of flowing water which was a stream flowing out of mountains debouched on to a plain, not by a sudden decrease in surface gradient of river bed. YG-F3 surface, about 110,000 yr B.P.(MIS 5.4), was formed as Yongri river deposited a lot of debris. This result was due to the process that the deposition took place actively with the upward of base level as the last interglacial period began. Later, the denudation of the river valley and geomorphological surface constantly occurred and the local and seasonal changes were found in precipitation and stream discharge with the beginning of the interstadial of the last glacial stages(MIS 3), leading to YG-F2 formed by debris flow, earth flow, mud flow and stream flow. Then, short-term climate changes and temporal climate events repeatedly caused aggradation and denudation over time and going through these processes, YG-F1 is believed to have been made by earth flow or mudflow during the last glacial maximum(MIS 2).

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Geomorphic Processes of Masung Basin (마성분지(麻城盆地)의 지형생성작용(地形生成作用))

  • Son, Myoung-Won
    • Journal of the Korean association of regional geographers
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    • v.2 no.1
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    • pp.39-49
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    • 1996
  • There is a limestone basin surrounded by the mountains consisted of Paleozoic sedimentary and metamorphic rocks in the Masung, Munkyung city, Kyungsangpook do. The purpose of this paper is to elucidate the geomorphic processes of the gentle hillslopes in the marginal piedmont of Masung basin. To do so, I analyzed deposits over hillslopes and the relation ship between the distance from the divide and the height(above sea level) at the longitudinal profile of the hillslope, and considered interrelation between the distributions of the gentle hillslopes(less than 230m) and lithology. Geomorphic processes of Masung basin are as follow: (1) The depth of deposits over hillslope increases toward downstream of the hillslope. Most gravels within deposits, whose lithology is limestone, are those eroded at the boundary(overthrust fault zone) between the back-mountain and the hillslope. Deposits at the outward margin of hillslope is well sorted. and moderately imbricated. (2) Hillslope at the margin of the basin(160-230m asl) is formed by the action of 'the flow with channel'. At the boundary between the soft rock(limestone; basin floor) and hard rock(sedimentary and metamorphic rock; back-mountain), the relatively weak limestone is eroded to fresh bedrock by the subsequent action of the overland flow, and therefore discontinuity in slope appeared. (3) After hills lopes were formed, sediments(boulders and fine material) produced during dissection in back-mountain buried deposits over hillslope. In conclusion, geomorphic processes of Masung basin is 'differential erosion due to differentiation of lithological hardness' having suggested as geomorphic processes of granitic basin. However it is not 'removal of weathering material due to sheetflow' but 'erosion due to the overland flow with channel'.

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곰소만 조간대 바지락형성 장소의 지형학적 특성과 하르팍티쿠스 요각류의 분포

  • 이인태;전승수;서해립;서호영;손창수;선서경
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2001.10a
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    • pp.251-252
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    • 2001
  • 현재 곰소만에는 크고 작은 111개의 바지락 양식장 (98년 기준)이 허가되어 있는 곳으로 우리나라 바지락 총생산의 약 30%를 차지하는 대표적인 바지락 생산지이다. 그런데 곰소만의 경우, 바지락 양식장의 모든 위치는 만의 중앙부를 기준으로 모두 동쪽에 분포하고 있다. 이러한 사실은 바지락 양식장이 어떤 지형적 특징에 의존하고 있음을 시사한다 (이 등, 2001). 본 연구에서는 곰소만의 지형 특징을 토대로 그곳에서의 퇴적작용을 이해한 후, 지형적으로 구분되는 대표적인 곳에서 중형저서생물인 하르팍티쿠스 요각류의 분포를 조사하여 바지락형성 장소의 지형학적ㆍ생물학적 특성을 고찰하였다. (중략)

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한국의 지질과 자연동굴

  • 홍시환;유재신
    • Journal of the Speleological Society of Korea
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    • v.16 no.17
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    • pp.23-26
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    • 1988
  • 석회동굴은 Karst지형 지역에서 지하 형성물로 나타나는 공동지역으로, 이 공동화된 공간에 2차적으로 석순, 석주, 종유석등이 침전되어 생긴 동굴이다. 이런 Karst 지형은 석회암지층에서 용식작용으로 생겨나는데, 우리나라에서는 황해도의 서흥, 신막, 수안, 곡산 물질지역과 평안남도의 덕천, 성천, 강동지방, 그리고 강원도의 삼척, 영월, 평창, 정선, 명주지방, 충청북도의 단양, 제천, 괴산지역 그밖에 경상북도의 울진 지역에도 분포한다.(중략)

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Geomorphic Development of Tucson and Chiricahua in Arizona, U.S.A (미국 아리조나 투산과 치리카와 지역의 지형발달)

  • PARK, Heui Doo
    • Journal of The Geomorphological Association of Korea
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    • v.15 no.2
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    • pp.1-9
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    • 2008
  • This studied area is divided into the mountains and the valleys. The former is nearly consisted of the badland, the latter is consisted of alluvial plains in the valley, fluvial terrace at the side of the river, alluvial fans between mountains and river terrace. There are many tors, mushroom rocks, sugarloaves, weathering pits, castle coppies, columnar rocks, pinnacles, balanced rocks carved on tuff by means of erosion in the Chiricahua Nat'l Monument. Willcox Playa is alkalic crust where was lake in pleistocene epoch at the time wetter than present. Alkalic crust was made of Ca, Na, K etc. There are sand dunes around here where was lake side in the past. We found many kinds of fossils at the 2,000ft thick horizons of valley alluvium. Pediment and alluvium bordered at the base of Mt. Dragoon wavily. Exfoliation and spalling and sheeting resulted in boulders around here. Tucson is alluvial plain filled in thick 7,0000ft valley. Volcano, fault, erosion, alluvium were and are processing in this area.

Granite Landforms in the Vicinity of Seungil-gyo Bridge at Cheorwon, Central Korea (철원군 승일교 인근의 화강암 지형 경관)

  • LEE, Min-Boo;HAN, Joo-Yup;KIM, Chang-Hwan
    • Journal of The Geomorphological Association of Korea
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    • v.19 no.4
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    • pp.27-37
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    • 2012
  • This study investigated granite landforms formed by Hantan-gang fluvial erosion and deposition, or by weathering in the area neighboring the Seungil-gyo bridge in Cheorwon-gun Gangwon-do Korea, in which the contact zone of Myeongseongsan granite and Cheorwon lava plateau creates a unique landform. Major granite landforms are deeply weathered hill, sheet erosional landform, paleo-landform surface and paleosoil, micro-fluvial landforms such as pothole and groove, granite rampart, sand bar and boulder bar, former riverbed. And river cliffs on a weakly weathered dome act as a barrier to lateral shifting of the river.

Some Remarkable Earth Surface Processes under the Morpho-climatic regime of Mongolian Steppe Zone (기후지형학 관점에서 본 몽골 스텝지역의 지형형성작용 특색)

  • OH, Kyong-Seob;YANG, Jae-Hyuk;CHO, Heon
    • Journal of The Geomorphological Association of Korea
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    • v.18 no.3
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    • pp.121-129
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    • 2011
  • This work is to elucidate in typological aspect main geomorphological processes in the morphogenetic system of Mongolian steppe zone. Its morphogenesis manifest interaction of intense gelifraction and active erosion either by slope run-off or by wind. Intense gelifraction owes both to cold temperature regime with great amplitude, and to moisture associated with snow fall. Erosion of material produced by gelifraction is assured by surface run-off of summer rainfall and spring eolian activities. The geomorphological landscape sculptured by such morphogenetic processes manifest low-relief smooth slopes. This feature reveals that intense gelifraction keeps abreast with removal of weathering product by surface run-off and wind.

The Morphological Change by Slope Erosional Processes in the Dokdo Seamount (독도해산의 사면침식으로 인한 지형변화)

  • Kang, Ji-Hyun;Sung, Hyo-Hyun;Park, Chan-Hong;Kim, Chang-Hwan;Jeong, Eui-Young
    • Journal of the Korean Geographical Society
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    • v.43 no.6
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    • pp.791-807
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    • 2008
  • The purpose of this study is to analyze landform characteristics and geomorphic processes in Dokdo seamount. For geomorphic analysis, bathymetry data were collected by multi-beam echosounder and the seismic survey was also conducted. Through the detailed analysis of depth, slope, aspect and erosional landform, Dokdo Seamount is characterized by a flat or gently sloping top of $2^{\circ}$ or less and seamount slope with $14{\sim}40^{\circ}$ gradient. There are protrusion of landform around the Dokdo on top of the Dokdo seamount. It is inferred that the features are formed by collapsed debris deposits or remained bedrocks by differential erosion in the past. The massmovement topography including slump and slide is shown on seamount slope with $14{\sim}40^{\circ}$ gradient. In addition, gullies with various length are developed on the Dokdo seamount slope. Slope erosional processes occur more actively along the submarine gullies on the Dokdo seamount. It is inferred that the massmovement processes on the slope of Dokdo seamount are related to earthquake activities and evolution of submarine volcano. Consequently, slope of the Dokdo seamount has retreated by erosional processes of mass-movement and submarine gullies.