• Title/Summary/Keyword: 식생하도

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Interaction between Coastal Debris and Vegetation Zone Line at a Natural Beach (자연 해안표착물과 배후 식생대 전선의 상호 작용에 관한 연구)

  • Yoon, Han Sam;Yoo, Chang Ill
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.17 no.3
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    • pp.224-235
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    • 2014
  • Changes in the interactions among incident ocean water waves, coastal debris (marine debris), and the back vegetation zone line on a natural sandy beach on the island of Jinu-do in the Nakdong river estuary were investigated. The study involved a cross-sectional field survey of the beach, numerical modeling of incident ocean water waves, field observations of the distribution of coastal debris, and vegetation zone line tracking using GPS. The conclusions of this study can be summarized as follows: (1) The ground level of the swash zone (sandy beach) on Jinu-do is rising, and the vegetation zone line, which is the boundary of the coastal sand dunes, shows a tendency to move forward toward the open sea. The vegetation zone line is developing particularly strongly in the offshore direction in areas where the ground level is elevated by more than 1.5 m. (2) The spatial distributions of incident waves differed due to variations in the water depth at the front of the beach, and the wave run-up in the swash zone also displayed complex spatial variations. With a large wave run-up, coastal debris may reach the vegetation zone line, but if the run-up is smaller, coastal debris is more likely to deposit in the form of an independent island on the beach. The deposited coastal debris can then become a factor determining which vegetation zone line advances or retreats. Finally, based on the results of this investigation, a schematic concept of the mechanisms of interaction between the coastal debris and the coastal vegetation zone line due to wave action was derived.

Basic Study on Development of Eco-Friendly Vegetation-Block (친환경 식생블록 개발을 위한 기초연구)

  • Heo, Yol;Oh, Sewook;Bang, Seongtaek
    • Journal of the Korean GEO-environmental Society
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    • v.15 no.4
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    • pp.61-67
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    • 2014
  • With a view to resolving environmental problems of hazardous cement, this study seeks to identify the unconfined compressive strength and bending strength of the vegetation block designed herein by utilizing high-strength natural soil stabilizer instead of cement. Soil stabilizer is mainly made of mixture of short fiber extracted from natural fiber and lime, etc. Soil stabilizer reinforces the shearing strength of soil to improve block supportive power and durability while preventing flood and frost damages. For the unconfined compressive strength test, test pieces were prepared by mixing soil stabilizer and weathered soil in different ratios of 6 %, 12 % and 18 %. Experiments were carried out according to curing periods of 5th, 7th, 14th and 28th of the day. For bending strength test, blocks were made in the same mixture ratios as for the unconfined compressive test and tested for each stage. Also, to evaluate for the field applicability, proposed optimum water content considering the characteristics of the soil stabilizer. Permeability test result for the vegetation block, satisfied by the KS F 4419 quality standards.

Studies on the Effects of Several Factors on Soil Erosion (토양침식(土壤侵蝕)에 작용(作用)하는 몇가지 요인(要因)의 영향(影響)에 관(關)한 연구(硏究))

  • Woo, Bo Myeong
    • Journal of Korean Society of Forest Science
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    • v.29 no.1
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    • pp.54-101
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    • 1976
  • This study was conducted on the major factors affecting soil erosion and surface run-off. In order to investigate the processes and mechanisms of soil erosion on denuded forest-land in Korea, and to systematize the magnitudes of influences and interactions between individual factors, the five major factors adopted in these experiments are soil textures (coarse sand and clay loam), slope steepness ($10^{\circ}$, $20^{\circ}$, $30^{\circ}$ and $40^{\circ}$), rainfall intensities (50, 75 and 100mm/hr), slope mulching methods (bare, coarse straw-mat mulching, grass mulching and anti-erosion liquid mulching) and vegetation densities (sparse, moderate and dense). The processes and mechanisms of soil erosion, and the effects of mulchings on soil erosion as well as surface run-off rates were studied algebraically with four parts of laboratory experiments under the simulated rainfall and another part of field experiment under the natural rainfall. The results in this study are summarized as follows: 1. Experiment factors and surface run-off rates The surface run-off rates under the natural rainfall were resulted about 24.7~28.7% from the bare slopes, about 14.0~16.4% from the straw-mat mulched slopes, about 7.9~9.1% from the liquid mulched slopes, and about 5.6~7.2% from the grass mulched slopes respectively. The surface run-off rates under the simulated rainfall differed greatly according to the rainfall intensity and the mulching method. 2. Magnitudes of influences and interactions of the individual factor on the surface run-off rates. The experimental analyses on the major factors(soils, slopes, rainfalls, mulchings and vegetations) affecting the rates of surface run-off, show that the mean differences of surface run-off rate are significant at 5% level between the soil texture factors, among the slope steepness factors, among the rainfall intensity factors, among the mulching method factors, and among the vegetation density factors respectively. The interactions among the individual factor have a great influence(significant at 1% level) upon the rate of surface run-off, except for the interactions of the factors between soils and slopes; between slopes and vegetations; among soils, slopes and rainfalls; and among soils, slopes and mulchings respectively. On the bare slopes under the simulated rainfall, the magnitude of influences of three factors(soils, slopes and rainfalls) affecting the rate of surface run-off is in the order of the factor of rainfalls, soils and slopes. The magnitude of influences of three factors (soils, rainfalls and mulchings) affecting the rate of surface run-off, on the mulched slopes under the simulated rainfall is in the order of the factor of mulchings, rainfalls and soils and that of influences of the factor of soils, slopes and mulchings is in the order of the factor of mulchings, soils and slopes. On the vegetation growing slopes under the simulated rainfall, the magnitude of influences of three factors (soils, slopes and vegetations) affecting the rate of surface run-off is in the order of the factor of vegetations, soils and slopes. In the same condition of treatments on the field experiment under the natural rainfall, the order of magnitude of influences affecting the rate of surface run-off is the factor of mulchings, soils and slopes. 3. Experiment factors and soil losses The soil losses of the experiment plots differed according to the factors of soil texture, slope steepness, rainfall intensity and mulching method. The soil losses from the coarse soil were increased about 1.1~1.3 times as compared with that of fine soil under the natural rainfall, while the soil losses from the fine soil were increased about 1.2~1.3 times compared with that of coarse soil under the simulated rainfall. The equation of $E=aS^b$ (a, b are constant) between the slope steepness (log S) and soil losses (log E) under the simulated rainfall were developed. The equation of $E=aI^b$ (a, b are constant) between the rainfall intensity (log I) and soil losses (log E) were developed, and b values have a decreasing tendency according to the increase of the slope steepness and rainfall intensity. The soil losses under the natural rainfall were appeared about 38~41% from the coarse straw-mat mulched slopes, about 20~22% from the liquid mulched slopes, about 14~15% from the grass mulched slopes as compared with that of the bare slopes respectively. The soil loss from the vegetation plots showed about 7.1~16.4 times from the sparse plot, about 10.0~17.9 times from the moderate plot and about 11.1~28.1 times from the dense plot as compared with that of the bare slopes. 4. Magnitudes of influences and interactions of the individual factor on the soil erosion. The experimental analyses on the major factors(soils, slopes, rainfalls, mulchings and vegetations) affecting the soil erosion, show that the mean differences of soil losses are highly significant between the soil texture factors, among the slope steepness factors, among the rainfall intensity factors, among the mulching method factors and among the vegetation density factors respectively. The interactions among the individual factor have mostly great influences upon the soil erosion. The magnitude of influences of three factors (soils, slopes and rainfalls) affecting the soil erosion on the bare slopes under the simulated rainfall is in order of the factor of rainfalls, soils and slopes. On the mulched slopes under the simulated rainfall, the magnitude order of influences of three factors(soils, rainfalls and mulchings) affecting the soil erosion is the factor of mulchings, rainfalls and soils, and the order of influences of factor of soils, slopes and mulchings is the factor of mulchings, soils and slopes. On the vegetation growing slopes under the simulated rainfall, the magnitude of influences of three factors (soils, slopes and vegetations) affecting the soil erosion is in the order of the factor of slopes. vegetations and soils. In the same condition of treatments on the field experiment under the natural rainfall, the order of magnitude of influences of three factors (soils, slopes and mulchings) affecting the soil erosion is the factor of mulchings, of slopes and of soils.

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Assessment of Site Environmental Factors on the Structure of Forest Vegetation in Naejang-san National Park Using Canonical Correlation Analysis (정준상관분석을 통한 내장산국립공원 산림식생구조의 입지환경 평가)

  • Kim, Tae-Geun;Cho, Young-Hwan;Oh, Jang-Geun
    • Korean Journal of Ecology and Environment
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    • v.46 no.4
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    • pp.561-569
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    • 2013
  • This study examines locational environment factors that may affect the vegetation structure in the forests of Naejang National Park. To that end, we selected LAI (Leaf Area Index), diameter at breast height, and tree height as structural variables as well as altitude above sea level, gradient, slope direction, soil moisture, topographic location, and amount of solar radiation as locational environment factors, using the method of canonical correlation analysis in order to find out correlation between them. As to the simple correlation between the locational environment factors and structural variables, the correlation coefficient was relatively low (0.6). The values of LAI, measured along the ridge with higher altitudes, decreased as the soil moisture and solar radiation increased. However, LAI increased as the gradient increased and the slope direction faced the north (farther from the east). In respect of the diameter at breast height, the diameter decreased as the altitude and gradient increased. But the diameter increased as the moisture and solar radiation increased. The tree height decreased as the moisture increased and the site was closer to the ridge. These various correlations show a variety of locational environment factors in the national park, implying that the structural variables are affected by complex locational environment factors. This study conducted a canonical correlation analysis on locational environment factors which may affect the vegetation structure, and the result showed that LAI increased and tree height & diameter at breast height decreased as the solar radiation & moisture decreased and altitude increased. Although more factors that may affect vegetation structure (e.g. climate) should be taken into account, this study is significant in that the vegetation structure, which can adapt to more unfavorable conditions in terms of solar radiation, moisture, and higher altitudes, could be inferred in a statistical way. The results of this study, especially the locational environment factors based on DEM, can be used for assessing diversity of vegetation structure in a forest and for monitoring the structure in a national park on a regular basis so as to establish more effective maintenance plans of a park.

Application of Physical River Assessment System in Naeseongcheon (내성천에 대한 물리적 하천 평가시스템 적용)

  • Jung, Hye Ryeon;Kim, Ki Heung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.563-567
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    • 2015
  • 우리나라 하천관리의 패러다임은 1990년대 이후 기존의 치수 및 이수능력을 고려함과 동시에 하천환경의 보전 및 복원을 새로운 목표로 설정한 자연친화적 방식으로 변화되었다. 하천법령 및 제도적 측면에서도 수자원 장기종합계획 및 유역 종합 치수계획은 하천의 환경보전 및 다목적 이용계획을 포함하도록 규정하고 있으며, 국내 하천법에 따르면 하천기본계획 수립 또한 자연친화적 하천조성 및 이와 관련된 보전지구 지정 등을 포함하도록 규정하고 있다. 하천설계기준, 자연 친화적 하천관리에 관한 통합지침, 또는 수자원 장기종합계획에서 적용하고 있는 하천환경조사 및 평가지표는 서로 다를 뿐만 아니라 과학적인 근거가 명확하지 않는 등 국가차원의 표준화가 이루어지지 못한 상태라 할 수 있다. 1990년대 이후 미국, 독일, 영국, 호주 등 선진국들은 하천환경 복원사업의 추진과정에서 복원사업의 타당성 제고 및 성공적인 사업수행을 위하여 그들 국가의 하천특성에 적합한 하천환경 평가 체계를 구축한 바 있으며, 이들 평가체계는 새로운 과학적 지식과 기술의 축적에 힘입어 지속적으로 발전되고 있다. Fujita의 유형화(Segment 분류)법에 의하면, 하천구간(Segment)은 하상경사, 하상재료, 식생, 생태 등이 통계적으로 동질인 하천 구간으로서, 하도 특성과 하천생태계 공간을 구분하는 단위이다. 자연하천에서 동일한 경사를 갖는 하천구간은 하상재료, 소류력, 저수로 폭, 수심 등이 대체로 동일한 값을 나타내고 있으며, 하도 특성을 지배하는 주요 인자로 각 하천의 평균 연최대유량, 하상재료의 대표입경, 하상경사 등을 설정하고 있다. 본 연구에서는 하천구간을 유형화하는 기준을 하상경사로 적용하여 평가단위를 분류하였으며, 평가체계는 미국의 USEPA를 한국형 하천환경에 맞도록 수정보완 하였다. 특히 미국의 USEPA의 지표 중 하안영역의 식생피복, 하반림 등은 생물분야 식생영역과 상충되어 제외하고 우리나라 특성에 적합한 하천횡단형상, 하천횡단 구조물 등의 평가기준을 재정립하여 내성천에 평가적용 분석하였다. 하천환경의 수리 및 하도 특성 평가기준 개발에 따라 평가체계의 개념적 틀을 토대로 통합적이고 표준화된 한국형 하천평가기준 개발을 위한 방법론을 정립하고, 나아가 하천환경의 지속가능성을 전제로 한 하천복원사업의 장 단기적 성공 여부를 평가할 수 있는 실무지침의 과학적 근거를 제시하고자 한다.

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A Guideline(Tentative) for Implementation of Riparian Buffer Strips Adapted to the Korean Streams (국내 여건에 맞는 수변완충지대 조성 가이드라인(안))

  • Chung, Sang-Joon;Woo, Hyo-Seup;Ahn, Hong-Kyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.1038-1042
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    • 2007
  • 수변완충지대는 수역과 육역의 경계에 위치하면서 하도를 따라 선형으로 길게 연속적으로 이어지는 공간으로서 토양, 동식물 등 생태시스템을 이루는 자연공간이다. 수변완충지대의 기능은 일반적으로 수질정화, 생태통로 및 서식처, 강턱의 안정, 토양침식 방지, 경관 개선 등이며 하천의 일부로서 사회적 경제적으로 높은 가치를 지니고 있다. 특히 최근에는 비점오염 저감과 하천 생태서식처 조성분야에서의 적용이 활발히 검토되고 있다. 선진국에서는 1980년대 이후부터 수변완충지대의 중요성을 인식하고 환경 생태 치수 측면에서 효율적 조성 및 복원 방법에 관한 연구와 적용이 본격적으로 시작되었고 가이드라인이 제시되었다. 이 분야에서 기술적 정책적으로 가장 앞선 나라로 평가되고 있는 미국의 경우 정부에서는 농무부(USDA)를 비롯하여 환경처(EPA), 내무부(USDI), 공병단(US ARMY)의 관련 산하기관, 각 주정부의 담당부서에서 수변완충지대의 보전과 조성에 관련된 여러 가지 정책과 기준을 제시하고 있다. 이들 가이드라인에서는 수변완충지대가 필요로 하는 기능별 최소 폭, 식생 종별 구성, 식생배열 등을 제시하며 그 기준은 조성 목적이나 기능, 대상 지역별로 차이를 보인다. 기능별 최소 폭은 수질정화를 목적으로 하는 경우 $4m{\sim}61m$이상, 생태서식처 조성을 목적으로 하는 경우는 $30m{\sim}1,000m$ 이상을 권장하고 있다. 식생 종은 수변완충지대 폭을 상 중 하단부로 나누어 초본, 관목, 교목류로 식재하고 강우유출수의 유입부에서 초본을 통한 부유고형물 등을 여과하고, 목본류의 뿌리와 토양을 통해 질소, 인 등 영양물질을 저감하는 구조를 제시하고 있다. 미국의 경우는 이러한 가이드라인을 실제로 현장에 적용하고 있으며 조성효과가 정성적으로 검증되었고 정량적인 관계 도출을 위한 연구가 지속적으로 진행되고 있다. 국내의 경우 수질개선 및 생태서식처 조성, 하천환경을 개선하기 위한 관련 정책이 꾸준히 제시되고 있다. 한 예로 정부에서는 수변구역을 지정 고시하여 상수원으로 유입되는 비점오염물질을 저감하고 생태서식처를 조성함으로써 양질의 상수원과 건전한 생태계를 확보하기 위한 제도를 시행 중이다. 수변 구역의 범위는 한강수변구역의 경우 약 $500{\sim}1,000m$로 설정되어 있으나 아직까지는 관리적 성격이 강하며, 향후에는 구체적인 조성방안이 요구된다. 본 연구에서는 한강 수변구역 내에 미국의 가이드라인에서 제시하는 수변완충지대의 물리적 조건과 국내 지역 토착식생을 적용하여 시험완충지대를 조성하였고, 실험조건 하에서 그 효과를 정량적으로 분석 검증한 결과와 외국사례를 분석하여 국내여건에 맞는 수변완충지대 조성 가이드라인(안)을 제시하였다.

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Application of Simple Biosphere Model (SiB2) to Ecological Research (Simple Biosphere Model 2 (SiB2)의 생태학적 응용)

  • 김원식;조재일
    • The Korean Journal of Ecology
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    • v.27 no.4
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    • pp.245-256
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    • 2004
  • The simple biosphere model 2 (SiB2), which is one of the land surface models, simulates the exchange of momentum, energy and mass such as water vapor and carbon dioxide between atmosphere and biosphere, and includes the biochemical sub-model for representation of stomatal conductance and photosynthetical activities. Throughout the SiB2 simulation, the significant information not only to understand of water and carbon budget but also to make an analysis of interaction such as feed-back and-forward between environment and vegetation is given. Using revised SiB2-Paddy, one sample study which is the evaluation of the runoff in Chaophraya river basin according to land use/cover change is presented in this review. Hence, SiB2 is available in order to ecological studied, if revised SiB2 for realistic simulation about soil respiration, computing leaf area index, vegetation competition and soil moisture is improved.

Late Pleistocene Paleovegetation and Paleoclimate of the Uiwang Area Based on Pollen Analysis (화분 분석을 통한 의왕시 지역의 후기 플라이스토세 고식생 및 고기후 연구)

  • Chung, Chull-Hwan;Lim, Hyoun-Soo;Yoon, Ho-Il
    • Journal of the Korean earth science society
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    • v.31 no.7
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    • pp.698-707
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    • 2010
  • The Late Pleistocene pollen record from the Poil-dong, Uiwang, Kyunggi-do, reveals that mixed coniferous and deciduous broadleaved forests were spread along with herb and fern understory. Palynofloral changes reflect climate fluctuations. From ca. 43,100 to 41,900 cal. yr BP, a mixed coniferous and deciduous broadleaved forest combined with open grassland occupied the study area, which indicates cooler condition than today. During the period of ca. 41,900-41,200 cal. yr BP, along with fern understory a decrease in subalpine conifers and an increase in temperate deciduous broadleaved trees suggest a climatic amelioration. A climatic deterioration, as evidenced by an increase in subalpine conifers and a decrease in the density of vegetation cover, occurred from ca. 41,200 to 39,700 cal. yr BP.

The Impacts of Vegetation and Soil Characteristics on Recreation Behavior in Urban Park - The Cases of Kumkang Park and Children′s Park in Pusan - (이용객의 이용행위가 도시내공원의 토양 및 식생에 미치는 영향 -부산 어린이대공원과 금강공원을 중심으로-)

  • Lee, Kyong-Jae;Kim, Sun-Hee;Cho, Woo
    • Korean Journal of Environment and Ecology
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    • v.7 no.1
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    • pp.49-57
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    • 1993
  • This study was executed to investgate the impacts of vegetation and soil characteristics on the user's impact in Children's Park and Kumkang Park, Pusan. In survey sites, twenty plots of 100$m^2$ size were set up. The degree of soil hardness was showed above 90kg/$\textrm{cm}^2$ in using area, which was prevented to the plants growth. The user's control was effective to the soil surface softening, while that effects of the other soil characteristics were not cleared. In the analysis of Plant community structure, especially, shrub vegetation was severely damaged. And the user's impact was due to the lowering of species and maximum species diversity. The recreation area protection of the two years was positively operated to the natural vegetation restoration and species diversity enhancement.

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Evaluation on The Actual Vegetation and The Degree of Green Naturality in Chiak Mountain National Park (치악산 국립공원 지역의 현존식생과 녹지자연도 사정에 관한 연구)

  • 김용식;김갑태;김준선;임경빈
    • Korean Journal of Environment and Ecology
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    • v.2 no.1
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    • pp.9-18
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    • 1988
  • The present study was carried out to investigate both the actual vegetation and the degree of green naturality in the Chiaksan National Park. The results obtained are in the follows; The actual vegetation in the Chiaksan National Park were classified into 11 communities, including with the farmland and afforestation areas. According to the results, the Pinus community, as 36.83%. were the most largest community, and the Quercus mongolica, 22.35%. Quercus mongolica-Pinus densiflora community, which is mixed forest, 7.37%, and Pinus densiflora-Quercus mongolica community were 6.63%. The pure and mixed forest with these two species of Pinus densiflora and Quercus mongolica were the dominant species in the comunities of the area. The Degree of Green Naturality 9 was the widest area as 35.9% in the total area, the second was the Degree of Green Naturality 8 at 28.5 %.

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