• 제목/요약/키워드: mid-mountain area

검색결과 47건 처리시간 0.026초

기반암별 산지와 곡지의 지형 기복 특성과 유형 (Characteristics and classification of landform relieves on mountains and valleys with bedrock types)

  • 이광률
    • 한국지형학회지
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    • 제21권4호
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    • pp.1-17
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    • 2014
  • 본 연구는 우리나라의 12개 기반암 지역과 24개 산지와 곡지를 대상으로 지형 기복 특성을 분석하고, 이를 토대로 기반암과 지형 기복 간의 특성 및 관계를 다음의 4가지로 유형화하였다. 1) 편마암-고 산지와 화강암-고의 전체, 산지, 곡지는 지반 융기로 인하여 하천의 하각 작용은 활발하지만, 삭박의 영향이 사면 전체에 전달되지 못하여, 매우 높은 해발고도에 비해 기복과 경사는 상대적으로 크지 않다. 2) 편마암-고 전체, 곡지, 편마암-중 산지, 편암-산지, 화강암-중 산지, 화산암 전체, 산지, 퇴적암-고(역암) 전체, 산지, 곡지, 퇴적암-중(사암, 셰일) 산지, 석회암 전체, 산지 지역은 하천 침식과 사면 운반 작용이 활발하지만, 풍화 침식에 대한 저항력이 강한 기반암이나 지질 구조를 가져서 지형 기복이 큰 편이다. 3) 편마암-중 전체, 곡지, 편암-전체, 곡지, 화강암-중 전체, 곡지, 화산암 곡지, 퇴적암-중 전체, 곡지, 퇴적암-저(셰일) 산지, 석회암 곡지 지역은 풍화 침식에 대한 저항력이 약하며, 사면과 하곡에서 풍화, 사면 운반, 하천의 침식, 운반, 퇴적 작용이 진행되어, 지형 기복이 작은 편이다. 4) 편마암-저 전체, 산지, 곡지, 화강암-저 전체, 산지, 곡지, 퇴적암-저 전체, 곡지 지역은 고도가 낮은 해안에 위치하여, 하천의 침식 작용과 활발한 사면 운반작용은 거의 발생하지 않아, 지형 기복이 매우 작다.

대기경계층과 연안순환에 의한 부유입자의 재순환 (Recycling of Suspended Particulates by Atmospheric Boundary Depth and Coastal Circulation)

  • 최효
    • 한국환경과학회지
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    • 제13권8호
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    • pp.721-731
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    • 2004
  • The dispersion of suspended particulates in the coastal complex terrain of mountain-inland basin (city)-sea, considering their recycling was investigated using three-dimensional non-hydrostatic numerical model and lagrangian particle model (or random walk model). Convective boundary layer under synoptic scale westerly wind is developed with a thickness of about I km over the ground in the west of the mountain, while a thickness of thermal internal boundary layer (TIBL) is only confined to less than 200m along the eastern slope of the mountain, below an easterly sea breeze circulation. At the mid of the eastern slop of the mountain, westerly wind confronts easterly sea breeze, which goes to the height of 1700 m above sea level and is finally eastward return flow toward the sea. At this time, particulates floated from the ground surface of the city to the top of TIBL go along the eastern slope of the mountain in the passage of sea breeze, being away the TIBL and reach near the top of the mountain. Then those particulates disperse eastward below the height of sea-breeze circulation and widely spread out over the coastal sea. Total suspended particulate concentration near the ground surface of the city is very low. On the other hand, nighttime radiative cooling produces a shallow nocturnal surface inversion layer (NSIL) of 200 m thickness over the inland surface, but relatively thin thickness less than 100m is found near the mountain surface. As synoptic scale westerly wind should be intensified under the association of mountain wind along the eastern slope of mountain to inland plain and further combine with land-breeze from inland plain toward sea, resulting in strong wind as internal gravity waves with a hydraulic jump motion bounding up to about 1km upper level in the atmosphere in the west of the city and becoming a eastward return flow. Simultaneously, wind near the eastern coastal side of the city was moderate. Since the downward strong wind penetrated into the city, the particulate matters floated near the top of the mountain in the day also moved down along the eastern slope of the mountain, reaching the. downtown and merging in the ground surface inside the NSIL with a maximum ground level concentration of total suspended particulates (TSP) at 0300 LST. Some of them were bounded up from the ground surface to the 1km upper level and the others were forward to the coastal sea surface, showing their dispersions from the coastal NSIL toward the propagation area of internal gravity waves. On the next day at 0600 LST and 0900 LST, the dispersed particulates into the coastal sea could return to the coastal inland area under the influence of sea breeze and the recycled particulates combine with emitted ones from the ground surface, resulting in relatively high TSP concentration. Later, they float again up to the thermal internal boundary layer, following sea breeze circulation.

벼먹노린재(Scotinophara lurida)의 월동처와 본답발생 (Overwintering Site and Seasonal Occurrence of the Rice Black Bug Scotinophara lurida $B\"{U}RMEISTER$ (Hemiptera: Pentatomidae) in the Rice Paddy Field)

  • 이기열;박성규;안기수;최병렬
    • 한국응용곤충학회지
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    • 제43권4호
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    • pp.291-296
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    • 2004
  • 충북지역에서 벼먹노린재(Scotinophara lurida)에 대한 월동처와 본논발생에 대하여 1999년부터 2001년에 걸쳐 조사하였다. 벼먹노린재 월동성충은 월동처에서 6월 상순부터 7월 상순까지 유아등에 포획되었으며, 이동최성기는 6월 하순이었다. 본논에서 각 태별 발생 피크는 월동성충이 7월 중순, 알이 7월 하순, 약충은 8월 중순에 가장 높은 밀도를 보였으며, 제 1대 성충은 9월 중순에 가장 높은 밀도 피크를 보였다. 월동태는 성충이며, 월동충은 산기슭, 제방, 논뚝에서 발견되었다.

한국에서 발생한 청천난류 사례들에 대한 수치연구 (A Numerical Study on Clear-Air Turbulence Events Occurred over South Korea)

  • 민재식;김정훈;전혜영
    • 대기
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    • 제22권3호
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    • pp.321-330
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    • 2012
  • Generation mechanisms of the three moderate-or-greater (MOG)-level clear-air turbulence (CAT) encounters over South Korea are investigated using the Weather Research and Forecasting (WRF) model. The cases are selected among the MOG-level CAT events occurred in Korea during 2002-2008 that are categorized into three different generation mechanisms (upper-level front and jet stream, anticyclonic flow, and mountain waves) in the previous study by Min et al. For the case at 0127 UTC 18 Jun 2003, strong vertical wind shear (0.025 $s^{-1}$) generates shearing instabilities below the enhanced upper-level jet core of the maximum wind speed exceeding 50 m $s^{-1}$, and it induces turbulence near the observed CAT event over mid Korea. For the case at 2330 UTC 22 Nov 2006, areas of the inertia instability represented by the negative absolute vorticity are formed in the anticyclonically sheared side of the jet stream, and turbulence is activated near the observed CAT event over southwest of Korea. For the case at 0450 UTC 16 Feb 2003, vertically propagating mountain waves locally trigger shearing instability (Ri < 0.25) near the area where the background Richardson number is sufficiently small (0.25 < Ri < 1), and it induces turbulence near the observed CAT over the Eastern mountainous region of South Korea.

제주 중산간지역 스코리아의 철 화합물에 관한 연구 (A Study on Iron Compounds of Scoria in Mid Mountain Area of Jeju)

  • 최원준;고정대
    • 한국자기학회지
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    • 제17권5호
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    • pp.205-209
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    • 2007
  • 제주도 중북부 산간 지대 일원에 형성된 오름에서 채취한 스코리아의 화학적 조성, 산화철의 원자가상태와 자기적 성질을 조사하였다. X-선 형광분석으로부터 철 함유량은 $12.01{\sim}13.57\;wt%$ 이었고, X-선 회절법을 이용하여 $SiO_2$와 같은 규산염 외에 소량의 철산화물을 확인할 수 있었다. $M{\ddot{o}}ssbauer$ 분광법을 통해 광물 내의 철 성분들이 어떤 형태를 이루는지 확인하였다. 측정한 시료들로부터 olivine인 규산염과 pyroxene, ilmenite와 같은 상자성 철산화물 및 상온에서 반강자성 및 강자성 물질인 hematite와 magnetite 산화철 광물을 확인하였다. 철 화합물의 원자가 상태는 일부 $Fe^{2+}$인 olivine, pyroxene 그리고 ilmenite와 $Fe^{3+}$인 hematite, magnetite 등을 포함하고 있으며 주성분으로 볼 수 있는 hematite의 총 면적비는 평균 51.77 wt% 이었고 스코리아 내에 존재하는 철의 주 원자가 상태는 대부분 $Fe^{3+}$임을 알 수 있었다.

지리산 : 지각 깊은 곳을 들여다보는 창문 (Jiri Mountain, Korea : A Window into the Deep Crust)

  • 송용선;박계헌
    • 암석학회지
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    • 제26권4호
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    • pp.385-398
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    • 2017
  • 지리산은 한반도 선캠브리아 기반 육괴 중의 하나인 영남육괴의 남서부에 위치하며, 주로 고도변성의 변성암류로 구성되어 있다. 이 지역 지질은 산상과 암석기재적 특성에 의해 구분된 퇴적기원 미그마타이트질 편마암류, 화강암질 편마암, 반상변정질 편마암, 규장질 편마암으로 구분되는 화강암질 편마암류, 차노카이트 및 회장암 등의 고원생대 암석들로 주로 구성되어 있다. 이들 암석들에서 얻어진 연대는, 저어콘의 상속핵들은 조금 더 오래된 연대(>2,020 Ma)를 보이지만, 대체로 약 1,876에서 1,856 Ma 사이이다. 주 변성작용의 시기도 약 1850-1840 Ma이며 광물군과 지질온도압력계로부터 얻어진 변성조건은 4-6 kb, $700-750^{\circ}C$에 이른다. 이러한 결과는 이 지역이 고원생대의 조산운동기에 지각 깊은 곳에서 일어난 강렬한 화강암질 마그마작용과 변성작용을 받았음을 지시한다. 연대가 약간 젊은 차노카이트(1,856-1,865 Ma)와 회장암(ca. 1,861-1,862 Ma)의 연대는 아마도 조산운동기 직후에 판내부에서 시작된 열개로 규장질 및 고철질 마그마작용이 일어났음을 지시하는 것으로 보인다. 결론적으로, 지리산의 암석들은 중 내지 하부지각에서 생성된 것들로 우리가 지각의 내부를 들여다 볼 수 있게 해주는 창문이다.

Habitat Suitability Modeling of Endangered Cyathea spinulosa (Wall. ex Hook.) in Central Nepal

  • Padam Bahadur Budha;Kumod Lekhak;Subin Kalu;Ichchha Thapa
    • Journal of Forest and Environmental Science
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    • 제39권2호
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    • pp.65-72
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    • 2023
  • The endangered species of Cyathea spinulosa (tree ferns) are among the least concerned ferns of Nepal that bring threats to them and their habitat. A way to reduce such threats is by maintaining a database of species' whereabouts and generating a scientific understanding the habitat preferences. This will eventually help in the formulation of conservation plans for the species. This research aimed to characterize the suitable habitat of C. spinulosa by enumerating the location of species in the Panchase Forests of central Nepal. The statistical index method was applied to relate the occurrence locations of species with various environmental factors for the development of indices. The suitable habitat of C. spinulosa (more and most suitable categories) covered 119 km2 and accounted for 43% of the total area studied. 74.4% of occurrence locations of C. spinulosa were recorded from these habitats. The habitat characteristics suitable for C. spinulosa were: proximity to streams (high moisture), land covered by forested area (shady area), mid-elevations of hills about 1,000 m to 2,000 m (sub-tropical climate), slope gradient of 20° to 40° (steep slopes), and northern to eastern aspects. These habitat characteristics could be considered for in-situ protection of tree ferns and designating the conservation plots.

남한(南韓) 중부지역(中部地域)의 토질(土質)과 지구조(地構造) (Geology and Tectonics of the Mid-Central Region of South Korea)

  • 김옥준
    • 자원환경지질
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    • 제2권4호
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    • pp.73-90
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    • 1969
  • The area studied is a southwestern part of Okcheon geosynclinal zone which streches diagonally across the Korean peninsula in the mid-central parts of South Korea, and is bounded by Charyeong mountain chains in the north and by Sobaek mountain chains in the south. The general trend of the zone is of NE-SW direction known as Sinian direction. Okcheon system of pre-Cambrian age occupies southwestern portion of Okcheon geosynclinal zone, and Choseon and Pyeongan systems of Cambrian to Triassic age in northeastern portion of the zone. It was defined by the writer that the former was called "Okcheon Paleogeosynclinal zone" and the latter "Okcheon Neogeosynclinal zone," although T. Kobayashi named them "Metamorphosed Okcheon zone" and "Non-metamorphosed Okcheon zone" respectively and thought that sedimentary formations in both zones were same in origin and of Paleozonic age, and C.M. Son also described that Okchon system was of post-Choseon (Ordovician) and pre-Kyeongsang (Cretaceous) in age. According to the present study two zones are separated by great fault so that the geology in both zones is not only entirely different in origin and age, but also their geolosical structures are discontinuous. Stratigraphy and structure of Okcheon system are clearly established and defined by the writer and its age is definitely pre-Cambrian. It is clarified by present study that the meta-sediments in and at vicinity of Charyeong mountain chains are correlated to Weonnam series of pre-Cambrian age which occupies and continues from northeast to southwest in and at south of Sobaek mountain chains, and both metasediments constitute basement of Okcheon system. Pyeongan, Daedong and Kyeongsang systems were deposited in few narrow intermontain basins in Okcheon paleogeosynclinal zone after it was emerged at the end of Carboniferous period. Granites of Jurassic and Cretaceous ages and volcanics of Cretaceous age are cropped out in the zone. Jurassic granite is aligned generally with the trend of Okcheon geosynclinal zone, whereas Cretaceous granite lacks of trend in distribution. Many isoclinal folds and thrust faults caused by Taebo orogeny at the end of Jurassic period are also parallel with Sinian directieon and dip steeply to northwest. Charyeong, Noryeong, Sobaek, and Deogyu mountain chains are located in areas of anticlinorium, and Kyongsang system in narrow synclinal zones. Folds in Okcheon neogeosynclinal zone are generally of N 70-80W direction but deviate to Sinian direction at the western parts of the zone. This phenomena is interpreted by the fact that the folds were originated by Songrim disturbance at the end of Triassic period and later partly modified by Taebo orogeny. Thrust faults of Taebo orogeny coentinue from Okcheon paleogeosynclinal zone into neogeosynclinal zone, forming imbricated structure as previously described. Strike-slip faults perpendicular to Sinian direction and shear faults diagonally across it by 55 degrees also prevail in neogeosynclinal zone. It is concluded from viewpoints on geology and geological structure that l)Okchon geosyncline had changed its location and affected by numerous disturbances through geologic time, and 2)mountain chains in the area such as Charyeong, Noryeong, Sobaek, and Deogyu were originated as folded mountains. Differing from others, however, Sobaek range was probably formed at the time of Songrim disturbance and modified later by Taebo orogeny. It is cut by Danyang-Jeomchon fault at the vicinity of Joryeong near Munkyeong village and does not continue to southwest beyond the fault, whereas southwestern portion of erstwhile Sobaek range continues to Taebaek rangd northeastward from Deogyusan passing through Sangju, Yecheon, and Andong. From these evidences, the writer has newly defined the erstwhile Sobaek range in such a way that Sobaek range is restricted only to northeastern portion and Deogyu range is named for the southwestern portion of previous Bobaek range.

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서남해안지역(西南海岸地域)의 지형발달(地形發達)에 미친 지질조건(地質條件) (Effects of Geological Conditions on the Geomorphological Development of the Southwestern Coastal Regions of Korea)

  • 김서운
    • 자원환경지질
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    • 제4권1호
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    • pp.11-18
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    • 1971
  • The geotectonics and geomorphic structure of Korea resulted from the Song-rim Disturbance and the Daebo orogenic movements. Afterward this mountainous peninsula underwent several geological changes on a small scale, and it was also claimed that the steady rising of the elevated peneplain of the eastern coast and the submerging of the southwestern coastal area are largely due to the tilted block movement. These views have been generally accepted good in several ways, but they are limited in range or lacking in theoretical integration. The present writer investigated the geology of the Mt. Chi-ri-san and the Honam coal mining area for a geological map in 1965, respectively. The results of these studies convinced the present writer that the conventional views, which were based upon a theory of lateral pressure should be reconsidered in many respects, and more recent studies made it clear that the morphological development in the southwestern area can be better explained by the orogenic movement and rock control. The measurement of submerging speed of the western coastal area (Pak. Y. A., 1969) and a new account on the geology and tectonics of the Mid-central region of South Korea (Kim O.J., 1970) act as an encouragement to a new explanation. The present writer's researches on the extreme southwestern portion of the peninsula show that the steady submerging of this area cannot be attributed to a simple downthrown block phenomenon caused by block movement. It is no more than the result of the differential movement of uplifting in the eastern and western coastal areas and the rising of sea-level in the post-glacial period. This phenomenon could be easily explained by the comparison of the rate of rise in sea-level and amount of heat flow between Korea and other areas in the world. The existance of the erosional planes in the Sobaik-San ranges also provide an evidence of an upheaval in the western coast area. Though the Sobaik-San ranges largely follow the direction of the Sinian system. They consist of the numerous branches, whose trends run more or less differently from their main trend because of the disharmonic folding, are converged into Mt. Sobaik-San and Chupungryung. The undulation of the land is not wholely caused by orogenic movements, where as the present writer confirmed that the diversity of morphological development is the direct reflection of geological conditions such as rocks and processes which constitute the basic elements of geomorphic structure. An east-west directed mountain range which could be named as Hansan mountain range, was claimed to be oriented by the joint control. The geological conditions such as a special erosion and weathering of agglomerate and breccia tuff usually produce pot-hole like submarine features which cause the whirling phenomenon at the southwestern coast channel.

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남산의 생태학적 진단 (Ecological Diagnosis on Mt. nam in Seoul, Korea)

  • 이창석;문정숙;김재은;조현제;이남주
    • The Korean Journal of Ecology
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    • 제21권5_3호
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    • pp.713-721
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    • 1998
  • The effects of artificial interference on the vegetation landscape in Mt. Nam of Seoul, Korea were clarified by analysing the distribution of vegetation landscape element and the number and size of patch depicted as a vegetation map in terms of landscape ecological principles. The effects of artificial interference on vegetation were also confirmed from the environmental gradient analysis on plant community extended from the lowland to the peak of that mountain. Vegetation landscape elements were divided into plantation and secondary forest in actual vegtation map. The ratio of plantation to secondary forest was higher in the lowland below mid-slope and the southern slope. Most afforested land were occupied by Robinia pseudoacacia and Populus tomentoglandulosa, Pinus rigida, P. koraiensis, Metasequoia glyptostroboides, Alnus hirsuta and so on are localy planted. In addition, projects to replace those afforested trees by P. densiflora as a kind of campaign for "Restoration of the one original feature of Mt. Nam" or to replace those tree species by planting young Abies holophylla or P. koraiensis under the mature afforested trees are also carried out in recent years. In cases of secondary forest, the southern slope was dominated by P. densiflora and the northern one by Q. mongolica. But the lowland of the northern slope is dominated by P. densiflora as the same as that in the southern slope. Vegetation landscape elements in Mt. Nam were much simplified comparing with that of suburban area around Seoul. The number of patches, which reflects the degree of diverse artificial interference was more in the lower area than in the upper area and more in the southern slope than in the northern one. On the other hand, the size of patch showed the antagonistic tendency to that of the number of patch. As a result of environmental gradient analysis, vegetation distribution in Mt. Nam was different from that in suburban area around Seoul. For example, Alnus japonica community, Zelkova serrata community, and Carpinus laxiflora community, which is established in mountain comparatively rare in artificial interference disappeared in Mt. Nam. As a result of analysis on vegetational succession in P. densiflora community and Q. mongolica community, both communities showed a tendency of retrogressive succession differently from that in control site located in suburban area around Seoul. In addition, species composition of P. densiflora and Q. mongolica communities in Mt. Nam were also different from those in Mt. Surak located around Seoul. It was interpreted that those results were originated from the environmental pollution and excessive arti ficial interferences.rferences.

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