• Title/Summary/Keyword: 주왕계곡

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Plant Community Structure of Chuwang Valley in Chuwangsan National Park (주왕산국립공원 주왕계곡의 식물군집구조)

  • 이경재;조재창;강현경
    • Korean Journal of Environment and Ecology
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    • v.8 no.2
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    • pp.107-120
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    • 1995
  • To investigate the forest structure of Chuwang valley of Chuwangsan National Park, thirty plots were set up and surveyed. Importance values, DBH class distribution, species diversity indices, DCA Ordination, CCA ordiantion and TWINSPAN classification were used for vegetational structure analysis. Pinus densiflora Quercus serata, Q. mongolica, Q. variabilis were appeared to be dominant species in thirty plots. According to the analysis of classification by TWINSPAN, the thirty plots divided four groups. Groups were Q. mongolica-P. densiflora-Carpinus laxiflora community(I), P. densiflora-Q. variabilis community(II), Q. serrata-Q. variabilis community(III), broad-leaved mixed community(IV) Species diversity(H') of investigated area was calculated 1.17~l.32. The successional trend was seemed to be from P. densiflora to Q. spp. in the canopy layer.

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Forest Structure in Relation to Altitude and Part of Slope in a Valley Forest at Chuwangsan Area (주왕산지역 계곡부의 해발고와 사면부위에 따른 산림구조)

  • 박인협;문광선;류석봉
    • Korean Journal of Environment and Ecology
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    • v.8 no.2
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    • pp.154-159
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    • 1995
  • The Chuwang valley-Kumunkwangi valley forest in Chuwangsan area was studied to investigate forest structure in relation to altitude and part of slope. Forty eight quadrats were set up in the valley forest along altitude of 470m to 780m and part of the slope. Density and basal area of trees in tree strata decreased as increasing elevation. With increasing elevation the importance values of Quercus mongolica, Fraxinus rhynchophylla increased, while those of Pinus densiflora, Lindera obtussiloba decreased. As going from lower part to upper part of the slope, the importance values of Quercus valiabilis and Lindera obtussiloba increased while those of Fraxius rhynchophylla, Acer mono decreased. Species diversity tended to decreased as going to upper parts of the slope. The range of similarity indices between elevation belts, and parts of the slope were 74.4~84.2% and 68.0~96.3%, respectively. According to importance value and cluster analysis, the studied valley forest was classified into three forest communities of Pinus densiflora-deciduous tree species community of lower part of slope, Pinus densiflora-Quercus variabilis community of middle and upper part of slope, Pinus densiflora community of the top area.

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Topographical Landscapes and their Controlling Geological Factors in the Juwangsan National Park: Welding Facies and Columnar Joints (주왕산 국립공원의 지형경관과 지질학적 지배 요인: 용결상과 주상절리)

  • Hwang, Sang-Koo;Kim, Jae-Ho
    • The Journal of the Petrological Society of Korea
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    • v.18 no.3
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    • pp.195-209
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    • 2009
  • Juwangsan area($107.4km^2$) has been designated as the twelfth National Park in 1976, because it has magnificent aspect and seasonally spectacular landscapes. Juwang valley($9,177.5m^2$) has been designated as Noted Scenery No. 11 in 2003, because it has the same topographical landscape as rock domes, rock cliffs, caves, waterfalls and plunge pools. The most spectacular landscapes are exhibited in the densely welded zone of the Juwangsan Tuff. The rock cliffs generated from vertical joints in the densely welded zone, in which there are the same many rock cliffs as Geupsudae, Haksodae, Sinseondae, Mangwoldae, Giam and Byeongpungbawi, three caves such as Juwanggul, Mujanggul and Yeonhwagul in the cliff. The cliffs and caves are landscapes that were generated from vertical joints in the densely welded zone, and the rock domes and waterfalls are landscapes of erosional vertical joint planes in the zone. The vertical joints are columnar joints formed during cooling of the Juwangsan Tuff. Therefore the topographical features cause the cooling columnar joints that are vertically intersected in the densely welded zone of the Juwangsan Tuff.

The Distribution, Growth Environmental Conditions, and Morphological Characteristics of Korean Native Sedum rotundifolium at Native Habitats (한국 자생 둥근잎꿩의비름(Sedum rotundifolium)의 분포와 생육환경 및 자생지에서의 형태적 특성 조사)

  • Jeong, Jeong Hag
    • Horticultural Science & Technology
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    • v.17 no.4
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    • pp.500-502
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    • 1999
  • This study was carried out to survey the distribution of Korean native Sedum rotundifolium and environmental conditions of their native habitats. Sedum rotundifolium could be found only at the Mt. Juwang and its vicinity, Okgae valley. And most of Sedum rotundifolium plants in habitats were positioned between the chasm of cliffs in middle mountainous area having altitudes ranging about 250~450 m. Most of soil conditions in native habitats were somewhat arid, and light intensities were ranged from 1 to 90 % of those at the open area. But relative humidity, air temperature and soil temperature showed little difference compared with those of open area. Soil acidities were ranged from pH 5.0 to 7.0, and relatively high amount of humus, total $P_2O_5$, Ca, and Mg were measured at habitat area. On the other hand, growth of Sedum rotundifolium was significantly different according to habitat sites.

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Population genetic structure of Sedum polytrichoides (Crassulaceae): Insights into barriers to gene flow (바위채송화(돌나물과)집단의 유전적 구조: 유전자 이동과 물리적 장벽에 관한 통찰)

  • Chung, Mi Yoon;Lopez-Pujol, Jordi;Chung, Myong Gi
    • Korean Journal of Plant Taxonomy
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    • v.46 no.4
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    • pp.361-370
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    • 2016
  • An area comprising Juwangsan National Park and its adjacent mountains (southeastern Korean Peninsula) is a good model system for testing the effects of physical barriers to gene flows in plant populations. We predicted that plant species consisting of isolated populations are genetically more differentiated than those that are rather continuously distributed. Most populations of Sedum polytrichoides occur in four isolated valleys, and we assessed the genetic variability and structures using twelve allozyme loci in ten populations. We also compared the present results to earlier findings pertaining to the two co-occurring herbs Hylotelephium ussuriense (${\equiv}$ Sedum ussuriense) (growing only in the four isolated valleys) and S. kamtschaticum (rather continuously distributed). We found moderate levels of within-population genetic variation in S. polytrichoides ($H_{e}=0.112$). Estimates of among-population divergence in S. polytrichoides were also moderate ($F_{ST}=0.250$) and, as expected, very similar to that of H. ussuriense (0.261) but considerably higher than the variation in S. kamtschaticum (0.165). An analysis of molecular variance (AMOVA) revealed that S. polytrichoides and H. ussuriense had higher percentages of among-valley variation (19% each) than S. kamtschaticum (4%). Most of this variation, as also indicated by the STRUCTURE program, was due to differences in genetic profiles between the two central valleys. We concluded that the genetic differences observed between species (S. kamtschaticum vs. S. polytrichoides and H. ussuriense) are mainly due to differences in their distribution within the study area.

안동지역에서의 풍수경관

  • 옥한석
    • Proceedings of the KGS Conference
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    • 2002.05a
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    • pp.95-98
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    • 2002
  • 본 연구는 안동지역에 있어서 이른바 명당이라고 하는 음택 풍수 경관을 조사하여 그 형태와 특징을 살펴보고자 하였다. 안동문화원에서 펴낸 $\boxDr$안동의 분묘$\lrcorner$ 에 나오는 분묘를 대부분 조사하고 이를 형기론적 입장에서 형국으로 분류하였다. 태백산에서 소백산을 잇는 낙동정맥 살의 문수산(1206m)에서 하나의 지맥이 남쪽으로 흘러 태자산, 박달산, 오적산, 학가산(870m), 보문산(643m), 검무산(331m)을 이루어내어 안동의 서쪽 산줄기를 형성하며, 태백산에서 백병산, 일월산, 주방산(주왕산), 보현산, 황학산, 오산으로 이어지는 산줄기가 우측을 이루어내어, 이들 우백호와 좌청룡이 안동군 풍천면의 구담리에서 마주하게 된다. 그 사이로 안동군, 예안현 등이 입지하였다. 이러한 안동의 산세에 따라 낮은 구릉, 완만한 사면 및 높은 배후 산지가 전개되며 낙동강 본류와 지류가 흘러 다양한 형국이 나타나게 된다. 안동의 경우는 날짐승(봉, 학, 꿩), 꽃(모란, 연꽃, 칡넝쿨), 길짐승(닭), 들짐승(거북, 뱀), 물건(등잔, 가마솥, 밥상), 용, 달 등이 33개가 나타난다. 이들의 분포를 살펴보면 크게 낙동강 본류 이북 쪽에 집중한다. 이들 명당은 고도 상으로 해발고도 200미터 부근에 대부분 입지한다. 무릇 명당이란 안산과 조산을 넘어 득수가 잘 이루어져야 하므로 낙동강 본류를 중심으로 하고 그 지류를 향하여 분포하는 것은 당연하다 이들 명당의 형태와 공통된 특징을 살펴본 결과 명당은 반개방성, 중첩성, 안정성, 조화성, 균형성의 5가지 특징이 나타나는 곳이다. 이러한 명당의 특징은 태조산, 중조산, 소조산를 거쳐 주산 아래 산이 겹겹이 에워싸게 되고, 계곡물의 여러 줄기가 합수하고 물이 역류하지 않으며 잘 감아도는 곳으로 표현할 수 있다 이러한 명당의 기본적인 원리는 장풍(藏風)과 득수득파(得水得破)이다. 장풍과 득수란 '국'(局), 즉 산줄기와 수계로 이루어진 일정한 범위 속에 만물이 생태계 속에서 살아가는 모습인 '체형(體形)'의 의미가 나타나야 한다는 것이다. 그러나 이러한 의미는 시대에 따라 달라질 수 있는 것이다.

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