• Title/Summary/Keyword: 혼효림

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Analysis on Cloud-Originated Errors of MODIS Leaf Area Index and Primary Production Images: Effect of Monsoon Climate in Korea (MODIS 엽면적지수 및 일차생산성 영상의 구름 영향 오차 분석: 우리나라 몬순기후의 영향)

  • Kang, Sin-Kyu
    • The Korean Journal of Ecology
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    • v.28 no.4
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    • pp.215-222
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    • 2005
  • MODIS (Moderate Resolution Image Spectrometer) is a core satellite sensor boarded on Terra and Aqua satellite of NASA Earth Observing System since 1999 and 2001, respectively. MODIS LAI, FPAR, and GPP provide useful means to monitor plant phonology and material cycles in terrestrial ecosystems. In this study, LAI, FPAR, and GPP in Korea were evaluated and errors associated with cloud contamination on MODIS pixels were eliminated for years $2001\sim2003$. Three-year means of cloud-corrected annual GPP were 1836, 1369, and 1460g C $m^{-2}y^{-1}$ for evergreen needleleaf forest, deciduous broadleaf forest, and mixed forest, respectively. The cloud-originated errors were 8.5%, 13.1%, and 8.4% for FPAR, LAI, and GPP, respectively. Summertime errors from June to September explained by 78% of the annual accumulative errors in GPP. This study indicates that cloud-originated errors should be mitigated for practical use of MODIS vegetation products to monitor seasonal and annual changes in plant phonology and vegetation production in Korea.

Estimation of Forest Volumes in the Ecosystem Region Using Spatial Statistical Techniques (공간통계기법을 이용한 생태계 관리지역의 산림축적 추정)

  • SEO, Hwan-Seok;PARK, Jeong-Mook;KIM, Eun-Sook;LEE, Jung-Soo
    • Journal of the Korean Association of Geographic Information Studies
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    • v.18 no.2
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    • pp.149-160
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    • 2015
  • This study aims to estimate the forest volumes of the upper region of Nam-Han River in ecosystem zoning by forest types and age classes, and to suggest the optimal estimation method through the comparison of the standard errors according to the spatial unit. In the estimation of forest volumes, we used both of direct estimation, which uses sample plots of the target area only, and synthetic estimation, which includes sample plots of the expanded areas as well as those of the target area. As for the spatial expansion, we applied four standards for synthetic estimator: Mountainous zone, Neighbor ecosystem region, Gangwon province, and Buffer zone. The results show that average forest volume per ha, calculated by direct estimation, was $143.5m^3/ha$, while that by synthetic estimation with each standard, was estimated at $146.9m^3/ha$ by Gangwon province, $144.8m^3/ha$ by Buffer zone, $139.8m^3/ha$ by Neighbor ecosystem region, and $138.6m^3/ha$ by Mountainous zone, respectively. The standard errors of direct estimation was $1.79m^3/ha$, while those of synthetic estimation showed not a great difference among the errors. Meanwhile, considering the standard errors by forest type, the lowest was ${\pm}2.3m^3/ha$ of broad-leaved forest, followed by ${\pm}3.3m^3/ha$ of mixed forest, and ${\pm}4.8m^3/ha$ of coniferous forest.

Analysis of the MODIS-Based Vegetation Phenology Using the HANTS Algorithm (HANTS 알고리즘을 이용한 MODIS 영상기반의 식물계절 분석)

  • Choi, Chul-Hyun;Jung, Sung-Gwan
    • Journal of the Korean Association of Geographic Information Studies
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    • v.17 no.3
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    • pp.20-38
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    • 2014
  • Vegetation phenology is the most important indicator of ecosystem response to climate change. Therefore it is necessary to continuously monitor forest phenology. This paper analyzes the phenological characteristics of forests in South Korea using the MODIS vegetation index with error from clouds or other sources removed using the HANTS algorithm. After using the HANTS algorithm to reduce the noise of the satellite-based vegetation index data, we were able to confirm that phenological transition dates varied strongly with altitudinal gradients. The dates of the start of the growing season, end of the growing season and the length of the growing season were estimated to vary by +0.71day/100m, -1.33day/100m and -2.04day/100m in needleleaf forests, +1.50day/100m, -1.54day/100m and -3.04day/100m in broadleaf forests, +1.39day/100m, -2.04day/100m and -3.43day/100m in mixed forests. We found a linear pattern of variation in response to altitudinal gradients that was related to air temperature. We also found that broadleaf forests are more sensitive to temperature changes compared to needleleaf forests.

Analysis of Land Cover Characteristics with Object-Based Classification Method - Focusing on the DMZ in Inje-gun, Gangwon-do - (객체기반 분류기법을 이용한 토지피복 특성분석 - 강원도 인제군의 DMZ지역 일원을 대상으로 -)

  • Na, Hyun-Sup;Lee, Jung-Soo
    • Journal of the Korean Association of Geographic Information Studies
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    • v.17 no.2
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    • pp.121-135
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    • 2014
  • Object-based classification methods provide a valid alternative to traditional pixel-based methods. This study reports the results of an object-based classification to examine land cover in the demilitarized zones(DMZs) of Inje-gun. We used land cover classes(7 classes for main category and 13 classes for sub-category) selected from the criteria by Korea Ministry of Environment. The average and standard deviation of the spectrum values, and homogeneity of GLCM were chosen to map land cover types in an hierarchical approach using the nearest neighborhood method. We then identified the distributional characteristics of land cover by considering 3 topographic characteristics (altitude, slope gradient, distance from the Southern Limited Line(SLL)) within the DMZs. The results showed that scale 72, shape 0.2, color 0.8, compactness 0.5 and smoothness 0.5 were the optimum weight values while scale, shape and color were most influenced parameters in image segmentation. The forests (92%) were main land cover type in the DMZs; the grassland(5%), the urban area (2%) and the forests (broadleaf forest: 44%, mixed forest: 42%, coniferous forest: 6%) also occupied mostly in land cover classes for sub-category. The results also showed that facilities and roads had higher density within 2 km from the SLL, while paddy, field and bare land were distributed largely outside 6 km from the SLL. In addition, there was apparent distinction in land cover by topographic characteristics. The forest had higher density at above altitude 600m and above slope gradient $30^{\circ}$ while agriculture, bare land and grass land were distributed mainly at below altitude 600m and below slope gradient $30^{\circ}$.

The Structure of Plant Community in Kwangnung Forest(II) - Analysis on the Forest Community in Mt. Jookyup by the Classification and Ordination Techniques - (광릉(光陵) 삼림(森林)의 식물군집구조(植物群集構造)(II) - Classification 및 Ordination방법에 의한 죽엽산지역(竹葉山地域)의 식생분석(植生分析) -)

  • Lee, Kyong Jae;Choi, Song Hyun;Jo, Jae Chang
    • Journal of Korean Society of Forest Science
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    • v.81 no.3
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    • pp.214-223
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    • 1992
  • To investigate the structure of the plant community of Mt. Jookyup area in Kwangnung forest, thirty-seven plots were set up by the clumped sampling method. The classification by TWINSPAN and two kinds of multivariate ordination(RA, DCA) were applied to the study area in order to classify them into several groups based on woody plants and environmental variables. The classification have been successfully overlayed on an ordination of the same data using DCA. The plots can be classified into five groups by TWINSPAN and DCA. The successional trends of tree species by both techniques seem to be expected two ways in the canopy layer. The first is from Pinus densiflora to Carpinus laxiflora and the second is from Pinus densiflora through Quercus mongolica to Carpinus laxiflora. In the understory layer, it was expected that Rhododendron mucronulatum ${\rightarrow}$Lindera obtusiloba, Symplocos chinensis for. pilosa, Viburunum erasum, Styrax obassia${\rightarrow}$Euonymus sachalinensis, Sorbus alnifolia. As the result of the analysis for the relationship between the stand scores of DCA and environmental variables, they had a tendency to increase significantly from the P. densiflora community to Quercus spp. community that was soil pH, total nitrogen, available phosphate and exchangeable potassium, sodium, calcium and magnesium.

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Biodiversity Conservation & World Natural Heritage in Bangladesh (방글라데시의 생물다양성 보전 및 세계자연유산)

  • Nayna, Omme Kulsum;Lee, Sang Don
    • Journal of Environmental Impact Assessment
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    • v.26 no.5
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    • pp.376-384
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    • 2017
  • Bangladesh is a South Asian country with subtropical monsoonal climate between the intersection of the Indo-Himalayan and Indo-Chinese sub-regions, is known as biodiversity hotspot of the Asian region. The country has different types of forest like deciduous forest, evergreen forest, mixed forest, haor (wetlands) and mangrove forest. The natural beauty of the country is increased with the presence of so many rivers, longest sea beach of the world, green plants, critical hilly regions and green agricultural forest widely spread here and there. Sundarbans is the world largest mangrove forest and world natural heritage site declared by UNESCO in 1999 situated in Bangladesh and India. About 62 percent of this mangrove forest is situated in Bangladesh and there are so many plants and animals are found in this forest. To meet the increasing demand of the large population most of the natural ecosystem is now altered, deforestation rate is increased, natural habitat of the species is disturbed. Due to the imbalance of the climate and natural system many of the rare species of the world found this region is now endangered and some of the species are extinct. Directly or indirectly they are benefited from natural resources. At present time community, based ecotourism is also an important source of income for rural poor peoples. To protect the natural resources the government is now developed so many conservation acts and policy as well NGOs are also doing work for the conservation of ecosystem and biodiversity. At present transboundary pollutants and so many natural disasters also destruct the natural resources of Bangladesh.

Influence of Artificial Afforestation and Management of Natural Forests to the Increase of Forest Protit (천연림(天然林) 보전관리(保全管理)와 인공조림(人工造林)이 임리증진(林利增進)에 미치는 영향연구(影響硏究))

  • Shim, Chong-Supp
    • Journal of the Korean Wood Science and Technology
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    • v.10 no.3
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    • pp.201-202
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    • 1982
  • 1. 본(本) 조사(調査) 연구(硏究)는 천연림(天然林) 관리(管理)와 인공조림(人工造林)이 임이증진에 어떠한 영향을 미치느냐? 라는 문제(問題)를 알아보고자 실시되었으나 그 범위가 너무 막연(莫然)하여 다음과 같이 실제 시업중(施業中)인 경우를 대상지로 정(定)하여 비교(比較) 평가하여 보았다. 가. 우리나라 대표적(代表的)인 천연림(天然林) 활엽수 지대(地帶)에서 일정(一定)한 임지(林地)를 벌채(伐採)한 후 계속 천연갱신(天然更新)을 시도하고 있는 경우와 동일장소(同一場所) 인공조림(人工造林)을 하였을 경우 나. 우리나라 대표적(代表的)인 천연침엽수림(天然針棄樹林) 지대(地帶)에서 일정(一定)한 임지(林地) 벌채(伐採)한 후 계속 천연경신(天然更新)을 시도하고 있는 경우와 동일장소(同一場所)에 인공조림(人工造林)을 하였을 경우 다. 우리나라 대표적(代表的)인 침활수림 척박림(瘠薄林) 지대(地帶)에서 그 임지(林地)를 그대로 보존(保存)하였을 경우와 벌채(伐採)하고 적수(適樹)를 조림(造林)하였을 경우 등으로 구분하여 실시하였다. 2. 이와 같은 조사(調査) 연구결과(硏究結果)는 다음과 같다. 가. 2. 이와 같은 조사(調査) 연구결과(硏究缺課)는 다음과 같다. 가. 활잡 천연림(天然林)을 그대로 관리(管理)하였을 경우와 낙엽송(落葉松)을 조림(造林)하여 관리(管理)하였을 경우는 후자(後者)가 임이증진에 월등(越等)히 좋은 영향을 나타냈고 나. 우량(優良) 침엽수(針葉樹) 천연림(天然林)을 그대로 관리(管理)하였을 경우는 양자간(兩者間)에 큰 차이(差異)가 나지는 않았으나 역시(亦是) 후자(後者)의 경우가 임이(林利) 증지에 유리(有利)한 결과(結果)를 나타내고 있다. 마. 침활 천연(天然) 혼효림(混淆林)으로 그 임상(林相)이 불량(不良)한 경우 그 천연림(天然林)을 그대로 관리(管理) 보호(保護)하였을 경우와 리기다 소나무를 조림(造林)하여 관리(管理) 보호(保護)하였을 경우는 양자(兩者) 공(共)히 임이(林利) 증진에 별(別)로 좋은 영향을 냐타내지 않았으며 임이(林利) 증진의 목적(目的)보다도 임지(林地) 회복(回復)을 위한 조림(造林)이 이루어져야 할 것으로 생각된다. 라. 척박림(瘠薄林)의 경우를 제외(除外)하고 본(本) 조사(調査) 대상이 된 모든 경우에 천연림(天然林)을 그대로 관리(管理)하는 경우보다 인공조림(人工造林)을 하여 정상(正常) 경영을 하는 경우가 임이(林利) 증진에 유리(有利)하다는 결과(結果)를 나타내고 있다. 마. 본(本) 조사(調査) 연구(硏究)의 목적(目的)이 천연림(天然林) 보존관리(保存管理)와 인공조림(人工造林)이 임이(林利) 증진에 미치는 영향을 알기 보기 위한 것이었으나 이것은 너무 광범한 과제(課題)이므로 명(名) 경우에 따라 판단(判斷)지어져야 할 것이다. 따라서 본(本) 조사(調査)에서도 국한(局限)된 몇 경우를 조사(調査) 검토하기로 하였다.

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Vegetation Structure of the Woongseokbong in the Jirisan(Mt.) (지리산 웅석봉지역의 산림군집구조)

  • An, Hyun-Cheul;Choo, Gab-Cheul
    • Korean Journal of Environment and Ecology
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    • v.24 no.5
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    • pp.547-555
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    • 2010
  • To investigate the vegetation structure of mountain ridge from Bammeorijae to Woongseokbong, 25 plots($400m^2$) selected by random sampling method were surveyed. Three groups of Quercus mongolica - Pinus densiflora community, Q. dentata community and Q. mongolica - Q. dentata community were classified by cluster analysis. Q. dentata, Q. variabilis, Pinus densiflora, Acer pseudosieboldianum and Q. mongolica were found as mostly dominant woody plant species in the Woongseok-bong area. In the future, the importance percentage of Pinus densiflora might be eventually decreased, but those of Q. mongolica, Q. variabilis and Q. dendata might be gradually increased. There were strong positive correlations between Pinus densiflora, Zanthoxylum piperium and Lindera obtusiloba; Q. mongolica and Rhododendron mucronulatum; Styrax obassia and R. schlippenbachii; Fraxinus sieboldiana, Zanthoxylum piperium and Styrax obassia; Acer pseudosieboldianum and Fraxinus sieboldiana; Cornus controversa and Corylopsis coreana were relatively weak negative correlations between Q. dentata and Q. mongolica; Lindera erythrocarpa, Q. mongolica and Q. variabilis; Q. mongolica, Larix leptolepis and Q. variabilis; Symplocos chinensis for. pilosa and Rhododendron mucronulatum. Species diversity index(H') of investigated groups was ranged from 0.09832 to 1.1102.

Isolation and characterization of cellulolytic bacteria, Bacillus sp. EFL1, EFL2, and EFP3 from the mixed forest (혼효림으로부터 셀룰로오스분해 박테리아 분리 및 효소학적 특성규명)

  • Park, Hwa Rang;Oh, Ki-Cheol;Kim, Bong-Gyu
    • Journal of Applied Biological Chemistry
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    • v.61 no.1
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    • pp.59-67
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    • 2018
  • This study was conducted to isolate the cellulolytic bacteria able to grow on LB- Carboxymethyl cellulose (CMC) agar trypan blue medium from the mixed forest and Larix leptolepis stands. Three bacterial strains with high activity against both CMC and xylan were isolated. Both API kit test and 16S rRNA gene sequence analysis revealed that the three different isolates belong to the gene Bacillus. Therefore, the isolates named as Bacillus sp. EFL1, Bacillus sp. EFL2, and Bacillus sp. EFP3. The optimum growth temperature of Bacillus sp. EFL1, EFL2, and EFP3 were $37^{\circ}C$. The optimum temperature for CMCase and xylanase from Bacillus sp. EFL1 were $50^{\circ}C$. The optimum pH of Bacillus sp. EFL1 xylanase was pH 5.0 but the optimum pH of CMCase from Bacillus sp. EFL1 was pH 6.0. The optimum temperature of CMCase and xylanase from Bacillus sp. EFL2 was $60^{\circ}C$, respectively. The optimum pH of CMCase of Bacillus sp. EFL2 was 5.0, whereas xylanase showed high activity at pH 3.0-9.0. The optimum temperature for CMCase and xylanase of Bacillus sp. EFP3 was $50^{\circ}C$. The optimum pH for CMCase and xylanse was 5.0 and 4.0, respectively. CMCases from Bacillus sp. EFL1, EFL2, and EFP3 were thermally unstable. Although xylanase from Bacillus sp. EFL1 and EFP3 showed to be thermally unstable, xylanase from Bacillus sp. EFL2 showed to be thermally stable. Therefore, Bacillus sp. EFL2 has great potential for animal feed, biofuels, and food industry applications.

Measurements of Wet Canopy Evaporation in Forests: A Review (산림에서의 젖은 군락 증발 관측: 고찰)

  • Kwon, Hyo-Jung
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.13 no.2
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    • pp.56-68
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    • 2011
  • Wet canopy evaporation ($E_{WC}$) has been recognized as a significant component of total evapotranspiration, especially in forests and therefore it is critical to accurately assess $E_{WC}$ to understand forest hydrological cycle. In this review, I focused on the measurement methods and evaluating the magnitudes of $E_{WC}$ at diverse forest types (e.g., deciduous, coniferous, mixed, and rain forests). I also present the general issues to be considered for $E_{WC}$ measurements. The commonly used measurement methods for $E_{WC}$ include the water balance, energy balance, and the Penman-Monteith (PM) methods. The magnitudes of $E_{WC}$ ranged from 5 to 54% of precipitation based on the literature review, showing a large variation even for a similar forest type possibly related to canopy structure, rainfall intensity, and other meteorological conditions. Therefore, it is difficult to draw a general conclusion on the contribution of $E_{WC}$ to evapotranspiration from a particular forest type. Errors can arise from the measurements of precipitation (due to varying wind effect) and throughfall (due to spatial variability caused by canopy structure) for water balance method, the measurements of sensible heat flux and heat storage for energy balance method, and the estimation of aerodynamic conductance and unaccounted sensible heat advection for the PM method. For a reliable estimation of $E_{WC}$, the combination of ecohydrological and micrometeorological methods is recommended.