• Title/Summary/Keyword: 식생도

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왕대속(Phyllostachys) 분포와 기후 요소의 관계

  • 허인혜;이승호;전영문;권원태
    • Proceedings of the KGS Conference
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    • 2003.05a
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    • pp.71-74
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    • 2003
  • 식생은 기후, 지형, 토양 등의 자연 환경에 의하여 영향을 받는다 그 중 기후 환경은 지역마다 다양한 식생의 분포를 야기 시킨다. 우리나라의 기후와 식생과의 관계는 Uyeki(1933)에 의해 비교적 광범위하게 다뤄졌으며, 우리나라의 위도 차이나 고도 차이에 의한 식생 구분은 기온에 의해 가장 영향을 받는 것이라고 연구되었다(Yim, 1977 a, b). (중략)

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A New Association of Gueldenstaedtio-Zoysietum japonicae: A Syntaxonomical and Syngeographical Description of the Southernmost Population of Gueldenstaedtia verna in South Korea (잔디-애기자운군집(신칭): 애기자운 최남단 분포 개체군의 군락분류와 군락지리)

  • Lee, Jung-A;Kim, Jong-Won
    • Weed & Turfgrass Science
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    • v.6 no.1
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    • pp.40-54
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    • 2017
  • The mound grave of Korean traditional funeral culture is a unique habitat which is a Zoysiagrass lawn being sustainable in proper management. We phytosociologically described an unusual Zoysiagrass vegetation with Gueldenstaedtia verna by the Zürich-Montpellier School's method and analyzed eco-floristic characteristics. A new association, Gueldenstaedtio-Zoysietum japonicae ass. nov. hoc loco, was identified and subdivided into festucetosum ovinae, typicum, and trifolietosum repensae. The subassociations were distinguished by the difference in species composition resulting from site accessibility and lawn management method. The association was assigned as not only a regional but also a locally-limited vegetation type, which distributes on a particular microhabitat with strong continentality in the Daegu regional subdistrict of Bioclimatological division. The Zoysiagrass vegetation of Korea was considered as a continental type apparently different from the oceanic type of Zoysion japonicae (Miscanthetea sinensis, Caricetalia nervatae). Mound graves in Korea should be acknowledged as a meaningful habitat for the in-situ conservation of biodiversity and phytocoenosen, despite being a secondary grassland of Gueldenstaedtio-Zoysietum japonicae.

Synecological Study of the Forest Vegetation in Mt. Naeyeon, Pohang City, Korea - Focusing on the Southern Area - (내연산 산림식생에 대한 군락생태학적 연구 - 남쪽 지역을 중심으로 -)

  • Kim, Hak-Yun;Kim, Jun-Soo
    • Korean Journal of Environment and Ecology
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    • v.31 no.3
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    • pp.318-328
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    • 2017
  • In order to provide basic data for the ecological management of forest vegetation in Southern Naeyeon Mountains, A total of 149 sample plots were selected and vegetation survey was carried out by the phytosociological method of the ZM school to classify vegetation types and to grasp ecological characteristics. The forest vegetation was divided into 10 types in terms of species composition, and had a unit hierarchy of 2 community groups, 4 communities, 6 sub-communities and 6 variants. A total of 19 types of physiognomic vegetation were identified based on uppermost dominant species, of which 18 were natural vegetation and 1 was artificial vegetation. As a result of the analysis of the importance values of constituent species, Quercus mongolica, a potentially natural vegetation element, was found to be relatively more important in most stands than other species, and excluding the artificial interference, most of the areas except for some sites would be changed to Q. mongolica forest. In order to understand the spatial distribution of forest vegetation, 1/5,000 large-scale physiognomic vegetation map was created by the uppermost dominant species. As a result, natural vegetation accounted for 98.2%, the number of vegetation patches was 733 and the average area per patch 3.93ha.

Vegetation Type Classification and Endemic-Rare Plants Investigation in Forest Vegetation Area Distributed by Vulnerable Species to Climate Change, Mt. Jiri (지리산 기후변화 취약수종 분포지의 산림식생 유형 및 희귀-특산식물 분포 특성)

  • Kim, Ji Dong;Park, Go Eun;Lim, Jong-Hwan;Yun, Chung Weon
    • Journal of Korean Society of Forest Science
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    • v.107 no.2
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    • pp.113-125
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    • 2018
  • Subalpine zone is geographically vulnerable to climate change. Forest vegetation in this zone is one of the important basic indicator to observe the influence of climate change. This study was conducting phytosociological community classification and endemic-rare plants investigation based on vulnerable species to climate change at the subalpine zone, Mt. Jiri. Vegetation data were collected by 37 quadrate plots from March to October, 2015. In order to understand the species composition of plant sociological vegetation types and the ecological impacts of species, we analyzed the layer structure of vegetation type using important values. Vegetation type was classified into eight species groups and five vegetation units. The vegetation types can be suggested as an indicator on the change of species composition according to the future climate change. There were 9 taxa endemic plants and 17 taxa rare plants designated by KFS(Korea Forest Service) where 41.2% of them were the northern plant. Endemic-rare plants increased as the altitude of vegetation unit increase. Importance value analysis showed that the mean importance value of Abies koreana was highest of all vegetation units. Based on analysis of each layer, all units except vegetation unit 1 were considered to be in competition with the species such as Quercus mongolica and Acer pseudosieboldianum. The results of this study can be a basic data to understand the new patterns caused by climate change. In addition, it can be a basic indicator of long-term monitoring through vegetation science approach.

Vegetation Cover Type Mapping Over The Korean Peninsula Using Multitemporal AVHRR Data (시계열(時系列) AVHRR 위성자료(衛星資料)를 이용한 한반도 식생분포(植生分布) 구분(區分))

  • Lee, Kyu-Sung
    • Journal of Korean Society of Forest Science
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    • v.83 no.4
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    • pp.441-449
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    • 1994
  • The two reflective channels(red and near infrared spectrum) of advanced very high resolution radiometer(AVHRR) data were used to classify primary vegetation cover types in the Korean Peninsula. From the NOAA-11 satellite data archive of 1991, 27 daytime scenes of relatively minimum cloud coverage were obtained. After the initial radiometric calibration, normalized difference vegetation index(NDVI) was calculated for each of the 27 data sets. Four or five daily NDVI data were then overlaid for each of the six months starting from February to November and the maximum value of NDVI was retained for every pixel location to make a monthly composite. The six bands of monthly NDVI composite were nearly cloud free and used for the computer classification of vegetation cover. Based on the temporal signatures of different vegetation cover types, which were generated by an unsupervised block clustering algorithm, every pixel was classified into one of the six cover type categories. The classification result was evaluated by both qualitative interpretation and quantitative comparison with existing forest statistics. Considering frequent data acquisition, low data cost and volume, and large area coverage, it is believed that AVHRR data are effective for vegetation cover type mapping at regional scale.

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Syntaxonomical and Synecological Research of Forest Vegetation on Mt. Byeokbang (벽방산 산림식생의 군락분류와 군락생태)

  • Choi, Byoung-Ki;Huh, Man-Kyu;Kim, Seong-Yeol
    • Journal of Life Science
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    • v.25 no.6
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    • pp.646-655
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    • 2015
  • A phytosociological survey carried out using the Z.-M. School’s methodology and system of numerical-classification analyses, this study sought to classify the syntaxa of forest vegetation on Mt. Byeokbang and to collect basic data on the transitional zones of the southern Korean peninsula’s coastal region. The syntaxa were classified into three physiognomic types and nine communities, including (1) evergreen coniferous forests (Eurya japonica-Pinus thunbergii community and Ardisia japonica-Pinus densiflora community), (2) summer-green, broad-leaved forests (Chloranthus japonicus-Quercus serrate community, Syneilesis palmata-Quercus mongolica community, Quercus acutissima community, Carpinus turczaninovii var. coreana community, Fraxinus siebolidiana-Quercus dentate community, and Deutzia glabrata-Lindera erythrocarpa community), and (3) artificial afforestation (Alnus firma afforestation). The Chloranthus japonicus-Quercus serrata community, Syneilesis palmata-Quercus mongolica community, Fraxinus siebolidiana-Quercus dentata community, Carpinus turczaninovii var. coreana, community and Deutzia glabrata-Lindera erythrocarpa community were closely evaluated for national vegetation naturalness. It was confirmed that the Carpinus turczaninovii var. coreana community was endemic to Korea. Most syntaxa were defined as a secondary forestation due to various human activities (e.g., forest fires, logging, digging, climbing, etc.). The results of a canonical-correspondence analysis (CCA) showed that human activities, altitude, humus depth, rock cover ratio, slope, etc. were the main ecological factors determining the classified plant communities’ distribution patterns.

Correlation Analysis with Vegetation Indices and Vegetation-Endmembers From Airborne Hyperspectral Data in Forest Area (산림지역의 항공기 탑재 하이퍼스펙트럴 영상에 대한 식생-Endmember와 식생지수의 상관 분석)

  • Kim, Tae-Woo;We, Gwang-Jae;Suh, Yong-Cheol
    • Journal of the Korean Association of Geographic Information Studies
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    • v.15 no.3
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    • pp.52-65
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    • 2012
  • The net biomass accumulation (or net primary production, NPP) and gross primary production (GPP) have closely related with carbon accumulations(or carbon exchange) in vegetation. There are many approaches to estimate biomass using remote sensing techniques. The vegetation indices (VIs) can be a methodology to estimate biomass which assumes total chlorophyll contents. Various VIs were characterized with difference development conditions as vegetation species, input datasets. The hyperspectral data have also different spatial/spectral resolutions for aerial surveying. Additionally they need particular spectral bands selection difficulty to calculate the VIs. The objective of this study is to evaluate the correlations with airborne hyperspectral data (compact airborne spectrographic imager, CASI) and spectral unmixing model (or spectral mixture analysis, SMA) to characterize vegetation indices in forest area. The spectral mixture analysis was used to model the spectral purity of each pixel as an endmember. The endmembers are the fraction components derived from hyperspectral data through the SMA. In this study, we choose three endmembers represented vegetation pixels in the hyperspectral data. These endmembers were compared with 9 VIs by the Pearson's correlation coefficient. The results show MTVI1 and TVI have same correlation coefficient with 0.877. The MCARI, especially has very high relationship with vegetation endmembers as 0.9061 at less vegetation and soil distributed site. The MTVI1 and TVI have high correlations with the vegetation endmembers as 0.757 in whole test sites.

Discharge Computation from Float Measurement in Vegetated Stream (부자 측정 시 식생을 고려한 유량산정에 관한 연구)

  • Lee, Tae Hee;Jung, Sung Won
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.39 no.2
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    • pp.307-316
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    • 2019
  • Development of vegetation in stream channel increases resistance to flow, resulting in increase in river stage upon flood and affecting change in stage-discharge relationship. Vegetation revealed in stream by water level reaching a peak and then declined upon flood is mostly found as prone. Taking an account of flow distribution with the number of vegetation, prone vegetation layer might be at height where discharge rate is zero (0) (Stephan and Guthnecht, 2002). However, there is a tendency that flow rate is overestimated when applying the height of river bed to flow area with no consideration of the height of vegetation layer in flow rate by float measurement. In this study, reliable flow measurement in stream with vegetation was calculated by measuring the height of vegetation layer after flood and excluding the vegetation layer-projected area from the flow area. The result showed the minimum 4.34 % to maximum 10.82 % of flow deviation depending on the scale of discharge. Accordingly, reliable velocity-area methods would be determined if vegetation layer-projected area in stream is considered in flow rate estimation using the flow area during the flood.

Phytosociological Vegetation Classification and Community Characteristics in Maruguem (the Ridge Line) Area of Mt. Jirisan (Yuksipryeong to Cheonwangbong), the Baekdudaegan (백두대간 지리산권역(육십령-천왕봉 구간) 마루금의 식물사회학적 유형분류 및 군집 특성)

  • Song, Ju Hyeon;Kim, Ho Jin;Lee, Jeong Eun;Cho, Hyun Je;Park, Wan Geun;Yun, Chung Weon
    • Journal of Korean Society of Forest Science
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    • v.111 no.1
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    • pp.19-35
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    • 2022
  • In this study, the forest vegetation structure in the Maruguem (ridge line) area from Yuksipryeong to Cheonwangbong, Baekdudaegan, was analyzed using vegetation classification, importance values, species diversity, and NMS. Data were collected using 373 quadrates in a Braun-Blanquet vegetation survey conducted from May to October 2020. Vegetation was classified into nine vegetation units, which were verified using DCA analysis. Vegetation units 1-5, which were grouped by sub-alpine region, showed high importance values, mainly for sub-alpine vegetation, such as Abies koreana, Picea jezoensis, Pinus koraiensis, and Betula ermanii. In Maruguem, which is not high above sea level, importance values for species such as Pinus densiflora and Quercus serrata were high due to the topographical characteristics of the ridge. The A. koreana community (vegetation unit 1-5), which had a relatively high average elevation, had higher species diversity compared with that of other vegetation units. According to NMS analysis, for abiotic environmental factors, there was a positive correlation between vegetation units 1, 2, 4, and 5 and elevation. Overall, this study describes all low-elevation area vegetation (P. densiflora and Lindera erythrocarpa) to high-elevation area vegetation (A. koreana and P. jezoensis) as well as the characteristics of the Baekdudaegan ridge vegetation that did not include valley vegetation.

Vegetation Development Mechanism and Flood Drainage Capability Reduction Characteristic at Downstream of Dams (댐하류 하도의 식생 메카니즘과 홍수소통능력 저감특성)

  • Yeo, Woon Ki;Lim, Ki Seok;Lee, Seung Yun;Jee, Hong Kee;Lee, Soontak
    • Proceedings of the Korea Water Resources Association Conference
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    • 2004.05b
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    • pp.922-926
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    • 2004
  • 1970년대부터 시작된 산업화와 도시화는 국토 전반에 걸쳐서 개발을 촉진시켰으며, 그 결과로 나타나기 시작한 홍수재해와 용수부족은 보다 많은 저수시설을 요구하게 되었다. 즉, 홍수유출을 저감시키기 위해서 유역의 저류기능을 강화시킬 수 있는 댐 건설은 이수적인 측면에서 안정적인 용수공급을 보장해주는 수단으로 겸용되어 왔으며, 특히 다목적댐이 건설되면서 하도의 첨두홍수유출량을 줄이는데 크게 기여해 왔다. 댐에 의해 홍수가 사실상 사라진 댐 하류에서는 유사이송이 줄어들면서 주수로는 좁아지며, 낮아진다. 홍수가 없어진 주변 홍수터에는 식생이 활착하여 그 폭이 점차 커지고 하상은 높아진다. 과거 댐 건설 전까지 불안정했던 작은 독려 사주에도 홍수가 없어지면서 식생이 뿌리를 내리게 되고 이로 인하여 식생에 의한 난류변화와 와류의 형성으로 주변에 유사의 퇴적이 증가하게 된다. 결과적으로 식생이 활착할 수 있는 면적이 확장되면서 사주는 점차 넓어진다. 특히, 홍수터나 사주의 외딴 관목 식생에 의한 주변 하상의 세굴, 미립토사의 퇴적, 하상재료의 분급효과는 생태 서식 측면에서 귀중한 휴식처나 피난처를 제공하게 된다. 따라서 본 연구에서는 하도의 상류에 댐이 건설되고 난 후에 댐하류의 하도에서 발생하고 있는 식생 메카니즘과 이로 인한 조도증가와 유속저하 및 홍수소통능력의 저감현상을 규명하였다.

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