• 제목/요약/키워드: landform development

검색결과 58건 처리시간 0.031초

울릉도 지형지 (A Geomorphology on the Ulleungdo)

  • 권동희
    • 한국지형학회지
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    • 제19권4호
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    • pp.39-57
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    • 2012
  • 울릉도 화산체는 해수면 아래의 순상화산체와 해수면 위의 종상화산체로 크게 구분된다. 해수면 위 화산체의 지질은 기본적으로 알칼리 화산암류이며 이들은 다시 집괴암 및 응회암, 조면암 및 포놀라이트, 조면암질 부석, 조면안산암, 퇴적층 등 5개 지층으로 구분된다. 울릉도 지형은 전체적으로 화산지형이 우세하며 이들 화산지형이 풍화, 침식되어 다양한 풍화지형, 하천지형, 해안지형, 구조지형 등이 만들어졌다. 주요 화산지형으로는 칼데라분지, 중앙화구구, 주상절리 등이 있으며, 풍화지형으로는 타포니, 나마, 토르, 풍화동굴, 애추 등이 있다. 주요 해안지형으로는 해식애, 파식대, 시스택, 시아치, 해식동, 자갈해빈, 해안단구 등이 있다. 하천지형은 폭포를 제외하고는 그 발달이 미약하다.

용산의 지형형상에 관한 연구 (A Study on Figure of Landform of Yong-San)

  • 강영조
    • 한국조경학회지
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    • 제24권3호
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    • pp.68-78
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    • 1996
  • In this study, it was carried out to characterize the figures of landform of Yong-San, called dragon mountain implied indentity and emblem of local landscape by analyzing palce name extracted from four county in Kyongsang Nam-Do. The figures of landform of Yong-San was characterized and divided into three types, called as Waryong lying dragon), Banryong(dragon lying in a coil), Yongdu(dragon's crown). And the spatial characterstics of three types of landform were analyzed. Furthermore, it was investigated the development of outlines of characteristic landform recognoxed as a Yong-San and figured out the structure of landform which was easily recognized. According to the results, the outlines and the spatial structure of landform recognized as a Yong-San including a symbolic meaning can be used as a standard of judgement if an area should be reserved for the efficient conduct of regional plan.

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The Landform Developments in Relation with the Geologic Structures

  • Kim, Joo-Hwan
    • 동굴
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    • 제69호
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    • pp.9-20
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    • 2005
  • Geologic Structures are reflected on the landform development. So lots of studies are emphasized on the individual processes and mechanism of the relationship between geologic structures and landforms. In this study, many cases are represented, such as : weathering, stream directions and structures expecially joints, gnamas, meander bending etc. New D-D Diagrams and photos are available to explain the relations of two factors. Landform developments are depend on geologic structures.

침식저항도 차이에 따른 지형발달 및 지형인자에 대한 연구 - 2차원 수치지형발달모형을 이용하여 - (A Theoretical Study on the Landscape Development by Different Erosion Resistance Using a 2d Numerical Landscape Evolution Model)

  • 김동은
    • 자원환경지질
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    • 제55권5호
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    • pp.541-550
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    • 2022
  • 구조지형은 기반암 단층과 암석의 경연차와 같은 약대를 따라 풍화, 침식의 프로세스의 영향을 받아 만들어진 지형이다. 지구 조지형은 현재 활동하고 있는 지진, 화산, 단층과 같은 지구조운동으로 인해 만들어진 지형이다. 우리나라와 같이 판의 내부에 위치하여 지구조운동의 영향이 상대적으로 적고 기후적 특성을 고려하면 실제 현장에서 이 둘을 명확하게 구분하는 것은 어렵다. 최근 활성단층 연구의 증가에 따라 지구조지형에 초점을 맞추어 연구가 진행되고 있으나 더 명확한 지구조지형을 분류하기 위해서는 기반암의 특성에 따른 구조지형의 발달 양상에 대한 이해가 필요하며 기반암의 특성만을 따로 비교분석하기에는 현재 지형은 지구조운동과 기후의 영향을 동시에 받았기 때문에 구조적 요인만을 대상으로 하기에는 한계가 있다. 본 연구는 2차원 수치지형발달모형을 이용하여 기후와 지구조운동에 의한 요인을 제한하고, 기반암의 차이에 따른 지형의 시공간적 발달특성에 대해 연구하였다. 기반암 차이에 따른 지형특성을 구분하기 위해 사면·하천과 관련된 지형분석을 하였다. 연구결과 침식가능성이 높은 지형은 평균고도, 기복량, 경사도, 하천차수, 하천경사도지수 모두 낮게 나왔다. 또한 기반암 하천분석 결과 기반암 경계부분에서 천이점이 나왔다. 실제 지형을 연구할 때 지금까지는 지구조운동으로 인한 것인지, 구조적 요인을 받은 것인지 구분할 때 천이점에 있는 기반암의 차이만 고려하였다. 본 연구는 지구조지형과 구조지형을 분류할 때 구조지형으로 분류하기 위해서는 기반암의 차이뿐만 아니라 다양한 지형인자들을 고려하여 종합적으로 판단하여야 할 것임을 시사한다.

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.

수치지형정보를 애용한 지형의 3차원 표현 software 개발 (Development of the Three Dimensional Landform Display Software Using the Digital Terrain Model)

  • 이규석
    • 한국조경학회지
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    • 제17권3호
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    • pp.1-8
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    • 1990
  • The digital terrain model (DTM) or digital elevation model (DEM) is commonly used in representing the continuous variation of relief over space. One of the most frequent applications is to display the three dimensional view of the landform concerned. In this paper, the altitude matrices-regular grid cell format of the elevation in Mt. Kyeryong National Park were used in developing the three dimensional view software for the first time in Korea. It required the removal of hidden lines or surfaces. To do this, it was necessary to identify those surfaces and line segments that are visible and those that are invisible. Then, only the visible portions of the landform were displayed. The assumption that line segments are used to approximate contour surfaces by polygons was used in developing the three dimensional orthographic view. In order to remove hidden lines, the visibility test and masking algorithms were used. The software was developed in the engineering workstation, SUN 3/280 at the Institute of Space Science and Astronomy using 'C' in UNIX operating system. The software developed in this paper can be used in various fields. Some of them are as follows : (1) Landscape design and planning for identifying viewshed area(line of sight maps) (2) For planning the route selection and the facility location (3) Flight simulation for pilot training (4) Other landscape planning or civil engineering purposes

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A study on detecting the change of environment in west Seohan bay, North Korea using satellite Image

  • Jo Myung-Hee;Jo Yun-Won;Kim Sung-Jae;Kim Hyoung-Sub;Lee Kwang-Jae;Yoo Hong-Ryoug
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2004년도 Proceedings of ISRS 2004
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    • pp.148-151
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    • 2004
  • In this study the micro landform of tide flat in west Seohan bay. North Korea was classified and the change of this environment was detected by using Landsat TM. FTM+, KOMPAST. For this. ISODATA method of the unsupervised methods was used to classify the micro landform while tasseled cap method was used to detect the change of environment in west Seohan bay, North Korea by passing years. This study shows the possibility that the topography analysis and change especially in unapproachable area could be detected and monitored by using satellite images.

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태백산맥 남부산지의 암설사면지형 (The Study on the Debris Slope Landform in the Southern Taebaek Mountains)

  • 전영귄
    • 대한지리학회지
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    • 제28권2호
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    • pp.77-98
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    • 1993
  • 본 연구는 암설사면지형이 잘 발달하고 다양하게 분포하는 태백산맥의 남부산지를 대상으로 항공 사진판독과 도상계측 및 현지조사를 통하여 노출암설사면의 분포, 형태 및 퇴적물의 특성을 분석하고 사면의 지형적 배열과 지형발달에 관해서 연구한 논문으로써 분포적 특성에 있어서는 애추의 경우 기반암이 경암이거나 절리가 잘 발달된 지질에서, 암괴류의 경우는 화강섬록암 지질에서 높은 분포밀도를 보였다. 형태적 특성은 애추, 암괴류 모두 설상이 각각 83${\%}$, 80${\%}로 가장 많았으며 지형면의 경사도에 있어서는 애추가, 길이에 있어서는 암괴류가 각각 우세했다. 퇴적물의 특성중 암설의 평균입경은 암괴류가 보다 크게 나타났다. 한 지형면에서 암설의 장축방향성의 경우 방향성 있는 경우와 없는 경우가 있는데, 후자는 지형면상의 함몰로 그 방향성이 상실된 것으로 보인다. 끝으로 지형발달의 경우, 애추는 암석낙하(rock fall)에 의한 형성기(최종빙기)와 2차적인 영역에 의한 조정기(후빙기)로 암괴류는 암괴의 생성기(제3가 또는 제 4기의 간빙기), 암괴류의 형성기(최종빙기), 조정기(후빙기)로 구분할 수 있었다. 그리고 산지 사면의 배열유형은 6가지 유형으로 분류되었다.

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양산단층 중남부 구간의 지형 발달과 단층 운동 (I): 제4기 지형의 발달 특성 및 분포 (Geomorphological Development and Fault Activity of the Central-Southern Yangsan Fault (I): Developmental Characteristics and Distribution of the Quaternary Landforms)

  • 홍영민;오정식;홍성찬;신재열
    • 한국지형학회지
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    • 제28권1호
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    • pp.67-81
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    • 2021
  • Geomorphological development and distribution at the macro scale provide a clue to the geotectonic characteristics that have affected the geomorphological system. This is because the developmental characteristics and distribution of the landform at the macro scale remain spatial characteristics due to tectonic processes, such as fault activity. From the perspective of tectonic geomorphology, this study identified the developmental characteristics and distribution of the Quaternary landforms in central-southern Yangsan fault and discussed its relevance to fault activity. In this paper, we presented examples and results of morphotectonic analysis of the Yangsan fault, and will present the results of age dating, stratigraphic relationship of the Quaternary landforms, and calculation of cumulative slip rate in the next paper.

Development of Earthquake Damage Estimation System and its Result Transmission by Engineering Test Satellite for Supporting Emergency

  • Jeong, Byeong-Pyo;Hosokawa, Masafumi;Takizawa, Osamu
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2011년도 정기 학술발표대회
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    • pp.12-19
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    • 2011
  • Drawing on its extensive experience with natural disasters, Japan has been dispatching Japan Disaster Relief (JDR) team to disaster-stricken countries to provide specialist assistance in rescue and medical operations. The JDR team has assisted in the wake of disasters including the 2004 Indian Ocean Earthquake and the 2008 Sichuan Earthquake in China. Information about the affected area is essential for a rapid disaster response. However, it can be difficult to gather information on damages in the immediate post-disaster period. To help overcome this problem, we have built on an Earthquake Damage Estimation System. This system makes it possible to produce distributions of the earthquake's seismic intensity and structural damage based on pre-calculated data such as landform and site amplification factors for Peak Ground Velocity, which are estimated from a Digital Elevation Model, as well as population distribution. The estimation result can be shared with the JDR team and with other international organizations through communications satellite or the Internet, enabling more effective rapid relief operations.

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