• Title/Summary/Keyword: Landform Classification

검색결과 36건 처리시간 0.021초

LANDFORM 분류를 위한 수치기복모형의 적용 (The application of a digital relief model to landform classification)

  • 양인태;김동문;유영걸;천기선
    • 산업기술연구
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    • 제19권
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    • pp.155-162
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    • 1999
  • In the last few years the automatic classification of morpholgical landforms using GSIS and DEM was investigated. Particular emphasis has been put on the morphological point attribute approaches and the extraction of drainage basin variables from digital elevation models. The automated derivation of landforms has become a neccessity for quantitative analysis in geomorphology. Furthermore, the application of GSIS technologies has become an important tool for data management and numerical data analysis for purpose of geomorphological mapping. A process developed by Dikau et al, which automates Hanmond's manual process, was applied to the pyoung chang of the kangwon. Although it produced a classification that has good resemblance to the landforms in the area, it had some problems. For example, it produced a progressive zonation when landform changes from plains to mountains, it does not distinguish open valleys from a plains mountain interface, and it was affected by micro relief. Although automating existing quantitative manual processes is an important step in the evolution automation, definition may need to be calibrated since the attributes are oftem measured differently. A new process is presented that partly solves these problems.

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광릉숲 지역 지형분류와 관리방안 (Landform Classifications and Management Plan in Gwangneung Forest)

  • 김남신;조용찬
    • 한국지역지리학회지
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    • 제19권4호
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    • pp.737-746
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    • 2013
  • 본 연구는 광릉 숲지역 지형을 유형화하여 산지 지형변화 관리 방안을 제시하고자 하였다. 지형요소는 축척별 계층적 체계에 따라 분류하였다. 지형유형화를 위한 축척은 4가지로 등급을 결정하였다. 등급0 요소는 4가지, 등급1은 6가지, 등급2는 12가지, 등급3은 27가지로 지형요소를 분류할 수 있었다. 지도화에 제약이 따르는 곡저미지형은 상부곡, 중간곡, 인공하도곡으로 분류하였다. 지표침식에 대한 지형관리 방안으로 저목통로, 암석과 자갈을 이용한 사면이나 다리 주변의 지형관리, 풍화층보다 안정된 기반암 지역에 관리 도로 건설, 하도벽 안식각 유지와 석축 쌓기, 마지막으로 산림 간벌시 완충구역 유지 등을 제안하였다. 본 연구결과는 산간지역 지형유형별 산림 관리에 필요한 정보를 제공해 줄 수 있을 것으로 본다.

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무인항공기를 활용한 금강 하도내의 퇴적지형 변화 특성 연구: 공주보 개방 전·후를 중심으로 (A Study on the Characteristics of Depositional Landform Change in the Geum River Channel Using Unmanned Aerial Vehicle: Focusing on Before and After the Opening Gate of Gongju Weir)

  • 윤혜연;윤광성;장동호
    • 한국지형학회지
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    • 제28권4호
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    • pp.1-13
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    • 2021
  • In this study is aerial photos and UAV(Unmanned Aerial Vehicle) images were used to analyzed the characteristics of depositional landform changes in the Geum river channels before and after the opening gate of Gongju weir. Based on the depositional landform classification result, the main stream and the bare land occupied most of the area in all periods, and also found that the main stream, mid-channel island, and sand bar occupied a greater degree of area increase or decrease compared to other landforms in the classification items. As a result of analyzing the characteristics of depositional landform changes before and after the opening gate of Gongju weir, it is judged that the depositional landforms have changed due to the decreased water level of the Geum river after the opening of the weir, the summer rainy season and typhoons, river stabilization after the effluence of Daecheong dam, supply and deposition of river sediments and fixation of vegetation. The results derived from this study can be used as basic data for the study of river depositional landforms and the establishment of management and conservation plans for the landforms in river channels.

Landsat TM 영상(映像)을 이용한 충적평가(沖積平野) 미지형(微地形) 분류(分類) -금호강(琴湖江) 유역평야(流域平野)를 대상으로- (Classification of Micro-Landform on the Alluvial Plain Using Landsat TM Image: The Case of the Kum-ho River Basin Area)

  • 조명희;조화룡
    • 한국지역지리학회지
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    • 제2권2호
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    • pp.197-204
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    • 1996
  • 낙동강의 대지류중의 하나인 금호강 유역분지를 대상으로 하여 Landsat TM 영상의 false color composite를 육안분류하여 충적평야상의 자연제방, 후배습지, 합류선상지 등의 미지형 분류를 시도해 보고 검증하였다. 이를 위하여 1992년 11월 11일에 탐지된 Landsat TM 영상중의 band 2, 3, 4에 blue, green, red filter를 각각 씌워 조합한 false color 영상이 가장 효과적이었음이 규명되었는데, 시기(時期)적으로는 미지형 별로 녹색식물(綠色植物)의 밀도차가 가장 두드러지는 11월 중순(中旬)의 영상이 가장 효율적이었다. 즉 배후습지의 논은 벼가 막 수확된 때이므로 나지(裸地) 상태이었으나 자연제방 상에는 김장채소, 과수원의 하층(下層) 초본식물 등의 녹색식물이 상대적으로 많이 남아 있으며 합류선상지 부분은 논과 밭이 혼합되어 녹색식물의 밀도가 중간 정도로 분포하기 때문인 것으로 판단된다. 이와 같이 false color composite의 색조 차이를 이용한 미지형 분류결과에 대해 sample 지역에서 현지 지형 조사와 퇴적물 입도분석(粒度分析)을 실시하여 검증해 본 결과 충적평야 미지형 분류에 있어서 탐지시기와 band 조합의 대응이 효율적으로 이루어진다면 TM 영상이 매우 유용하다는 것이 밝혀졌다.

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산사태 발생지 예측을 위한 Topographic Position Index의 적용성 연구 (Study on Application of Topographic Position Index for Prediction of the Landslide Occurrence)

  • 우충식;이창우;정용호
    • 한국환경복원기술학회지
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    • 제11권2호
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    • pp.1-9
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    • 2008
  • The objective of the study is 10 know the relation of landslide occurrence with using TPI (Topographic Position Index) in the Pyungchang County. Total 659 landslide scars were detected from aerial photographs. To analyze TPI, 100m SN (Small-Neighborhood) TPI map, 500m LN (Large-Neighborhood) TPI map, and slope map were generated from the DEM (Digital Elevation Model) data which are made from 1 : 5,000 digital topographic map. 10 classes clustered by regular condition after overlapping each TPI maps and slope map. Through this process, we could make landform classification map. Because it is only to classify landform, 7 classes were finally regrouped by the slope angle information of landslide occurrence detected from aerial photography analysis. The accuracy of reclassified map is about 46%.

위성영상을 이용한 줄포만 간석지의 미지형 분류와 지형적특성 (Micro-Landform Classification and Topographic Property of Tidal Flat in Julpo-Bay Using Satellite Image)

  • 조명희;조화룡
    • 대한원격탐사학회지
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    • 제15권3호
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    • pp.217-225
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    • 1999
  • Landsat TM 위성영상을 이용하여 전라북도 줄포만 간석지의 미지형을 무감독분류의 ISODATA 기법으로서 분석한 결과 mudflat, mixed flat, sandflat 의 3지형으로 분류되었다. 각각의 미지형들은 퇴적물 입도와 지형에 있어서 상이한 특성을 나타내었으며, mudflat은 내만쪽에 위치하고 snadflat은 만의 입구 그리고 mixedflat은 그 사이에 각각 분포하였다. 각 지역의 지형특성으로는 2m 내외의 갯골이 평탄면 사이에 분포하는 mudflat과 평균기복이 10cm 이하로서 아주 평탄한 지형으로 물결무늬가 발달한 sandflat 그리고 이 양자의 중간형태를 취하는 mixedflat 으로 구분되었다. 아울러 Landsat TM의 7개의 밴드중에서 밴드 5와 7이 간석지의 미지형분류, 밴드4는 육지와 간석지의 분류 그리고 밴드 3은 해면과 간석지의 분류에 각각 효율적임이 밝혀졌다.

지형패턴(Geomorphons)을 이용한 새로운 지형분류방법 (Landform Classification using Geomorphons)

  • 김동은;성영배;손학기;최광희
    • 한국지형학회지
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    • 제19권4호
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    • pp.139-155
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    • 2012
  • 기존에 사용되고 있는 대부분의 DEM을 이용한 지형분류는 중심 셀과 주변 셀과의 수치를 비교하기 때문에 그 결과 값이 분석반경에 민감하다. 이러한 문제점들을 극복하기 위해 지형패턴(Geomorphons)을 이용한 새로운 방식의 지형분류 방법이 등장하였는데 이는 중심 셀과 주변 셀의 높이를 비교하여 그 패턴을 저장하고 이를 바탕으로 지형을 분류하는 방법이다. 본 연구에서는 지형패턴 분류법을 이용하여 평창강 유역을 대상으로 지형을 분류하였다. 분석 결과를 검증하기 위해 최근에 많이 사용하고 있는 지형분류방법 중의 하나인 Topographic Position Index(TPI)와 분석결과를 비교하였다. 또한 이미 기 구축된 하계망도, 유역도와 비교해본 결과 다음과 같은 특징을 발견하였다. 첫 번째로 지형패턴 분류법은 구축시간과 구축비용을 줄일 수 있기 때문에 사용자 중심의 지형분류 방법이라고 할 수 있다. 두 번째로 개방성을 이용한 패턴을 기반으로 지형을 분류하였기 때문에 스케일종속성(scaledependency) 문제를 상당부분 극복하였다. 이는 지형패턴에 기반한 지형분류방법이 기존의 지형분류방법들이 가지고 있는 특징을 계승하면서 기존의 방법들과는 다른 독특한 강점이라고 볼 수 있다. 마지막으로 지형패턴을 이용한 지형분류방법이 보다 다양한 분야에 걸쳐 광범위하게 이용되기 위해서는 현장답사를 통해 실제 지형과 분류된 지형이 일치하는지에 대한 체계적인 검증이 필요하다.

위성원격탐사를 이용한 곰소만 간석지의 미지형과 퇴적물 입도특성 분석 (An Analysis of Micro-landform and Its Grain Size of Tidal Flat in Gomso-Bay using Satellite Remote Sensing)

  • 조화룡;조명희
    • 한국지리정보학회지
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    • 제3권1호
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    • pp.44-56
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    • 2000
  • Landsat TM 영상을 이용하여 곰소만 간석지의 미지형을 분류하고, 현지조사를 통하여 분류된 각 미지형의 퇴적물 입도 특성과 지형특성을 밝혔다. 내만 쪽의 mud flat는 갯골과 갯골 사이의 평탄지로 이루어져 있으며, 평균입경이 $4{\phi}$ 이하의 세립질이고 분급은 1 S.D. 이상이며, positive skewness를 보인다. 만구쪽에 분포하는 sand flat는 갯골이 없이 평탄한 지형을 이루며 ripple mark가 발달해 있다. 분급이 좋은 모래로 대부분 구성되어 있고 negative skewness를 보인다. mixed flat는 mud flat 와 sand flat와의 중간적 특징을 보인다.

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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.

점봉산 시험림 지역의 지오톱 분류와 지형다양성 연구 (A Study on Geotop Classification and Geodiversity in Mt. Jeombong Experimental Forest)

  • 김남신;한동욱;차진열;권혜진;조용찬;오승환;유승화;유동수;박용수
    • 한국환경복원기술학회지
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    • 제18권6호
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    • pp.179-190
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    • 2015
  • This study was carried out to suggest fundamental concepts and data ideas for biodiversity and confrontation strategy on global environmental changes by analyzing geomorphic milieu and geotop in Mt. Jeombong experimental forest. Elements of landform were classified as landform sets by scale. Scale for classification could be decide on four categories. We could classify landforms which scale zero is seven elements, scale one is twelve elements, scale two is fifteen elements, scale three is twenty nine elements. Especially mountain wetlands were classed as valley and channel types in Mt. Jeombong. Geotop by clustering methods could be four spatial units as 2, 3, 5, and 7 classes, and analyzed geodiversity as landform sets for explanation of vegetation distribution. Rate of rise of temperature was $0.031^{\circ}C$ per year, change ratio was increased $1.25^{\circ}C$, and also precipitation was increased 320mm during forty year(from year 1973 to year 2012). The result of this research can be affordable to provide information for forest management of mountainous areas.