• Title/Summary/Keyword: ecological tree planting

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생태복원 사업에서의 식재 설계에 관한 인식 조사 (Ecological Restoration Planting Design Awareness Survey)

  • 조동길
    • 한국환경과학회지
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    • 제31권7호
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    • pp.579-592
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    • 2022
  • Much controversy has been generated over whether the ecological restoration project in Korea is faithful to the basic approach of ecological restoration compared to projects aimed at creating parks or green spaces. This study was aimed at understanding the level of awareness of practitioners in the planting design method, which is recognized as relatively important in landscape architecture and ecological restoration. The proficiency of practitioners in planting design techniques for ecological restoration projects was investigated and analyzed in seven areas: overall planting design awareness, plant species selection method, planting tree sizes, planting density, use of native species, vegetation climatic zone, soil environment, and weed control. There was no statistically significant difference between the group who thought they were experts in the field of ecological restoration and the group who thought they were experts in the field of parks and green spaces. Moreover, there was no statistically significant difference between the degree of work performance, that is, the group whose main industry was ecological restoration, the group that performed relatively more ecological restoration work, and the group that rarely performed it. Therefore, to apply desirable ecological restoration techniques in the future and to clearly differentiate between the approach in the field of parks and green spaces, the appropriate tree size or planting density selected in the ecological restoration planting design stage must be chosen. To this end, the awareness of expert groups must be improved and related laws, systems, and guidelines must be revised.

친환경 고속도로의 건설 방향 (The Prospects of Highway Road in Consideration of Natural Environment)

  • 전기성;김태수
    • 한국환경복원기술학회지
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    • 제3권3호
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    • pp.105-112
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    • 2000
  • For the purpose of building up the construction prospects of highway in consideration of natural environment. The tree planting and flower seeding in highway road side using native species were offered to natural landscape and resting area landscaping for peoples, and these area were 194place. The tree planting and flower seeding activity is to improve driving circumstances, and to conserve living and natural environment along the highways. And, preparation of ecotone and biotope at the highway surroundings for natural ecosystem conservation is an important activity, and planting of natural plants is generally carried out near wildlife ecoroads in order to give the way for animals. The primary purpose of this tree planting and seeding is not only to reduce environmental pollution, but also to enhance the ecological surroundings of highway circumference. Ultimately, It is essential that the constructive method of highway think over such as ecological environment and road design, surveying and management, construction, highway maintenance etc.

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생태통로 식재수종의 현황 및 문제점 고찰 (The Existing Conditions and Problems of Ecological Corridor in Korea - Focusing on Planting Species -)

  • 김명수
    • 한국환경복원기술학회지
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    • 제8권1호
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    • pp.17-26
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    • 2005
  • Ecological corridor is the facility to connect two habitats fragmented by roads, dam, housing and industrial area. Critics of faunal corridors have suggested that they are simply an untested application of unproved island biogeography theory. But, everyone agree that ecological corridor is important useful structural components that help animal movement in fragmented landscapes. There are 52 ecological corridors in Korea. We investigated 43 ecological corridors of these and recorded the size of corridor, planting species, management and growth condition. We compared planting species to nearby exiting vegetation species and structure. We found that there are no considerations for many aspects of planting, for example, planting species, structure, animal migration and behavior, surrounding vegetation etc. Expecially, It was ignored management of plants, difference of surrounding vegetation, lacks of diverse planting species and structure. We suggest planting the native species of tall tree, shrub and ground cover, edge planting for transitional space between road and natural habitat, planting for foraging and breeding of target animal, diverse layer vegetation, and open space of center for rapid animal dispersal.

수변구역 조성 녹지의 모니터링을 통한 식재방안 모색 - 가평군 시공지를 대상으로 - (Exploring Planting Strategies through Monitoring of a Greenspace Established in the Riparian Zone - The Case of an Implementation Site in Gapyeong County -)

  • 조현길;박혜미
    • 한국환경과학회지
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    • 제25권12호
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    • pp.1689-1699
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    • 2016
  • The growth conditions of planted trees, invasion of nuisance herbaceous species, competition between species, and effects of erosion control were monitored over five years in a riparian greenspace in Gapyeong County that was established through multilayered and grouped ecological planting. Of 156 trees planted in the upper and middle layers, 5.8% died. This tree death was attributed to poor drainage or aeration in the rooting zone from the clay-added root ball and too deep planting as well as a small-sized root ball and scanty fine roots. Of all the trees, 21.6% grew poorly due to transplant stress in the first year after planting, but they started to grow vigorously in the third year. This good growth was largely associated with soil improvement before planting, selection of appropriate tree species based on growth ground, and control of dryness and invasive climbing plants through surface mulching and multilayered/grouped planting. Mixed planting of fast-growing species as temporary trees was desirable for accelerating planting effect and increasing planting density. Thinning of fast-growing trees was required in the fifth year after planting to avoid considerable competition with target species. To reduce the invasion of herbaceous and climbing plants that oppress normal growth of planted trees, higher density planting of trees (crown opening of about 15%), woodchip mulching to a 10-cm depth, and edge planting 2 m wide were more effective than lower density planting (crown opening of 70%), no surface mulching, and no edge planting, respectively. This reduction effect was especially great during the first three years after planting. Nuisance herbaceous plants rarely invaded higher density planting with woodchip mulching over the five years. Higher density planting or woodchip mulching also showed much greater erosion control through rainfall interception and buffering than lower density planting with no mulching did. Based on these results, desirable planting and management strategies are suggested to improve the functions of riparian greenspaces.

Improvement of the Planting Method to Increase the Carbon Reduction Capacity of Urban Street Trees

  • Kim, Jin-Young;Jo, Hyun-Kil;Park, Hye-Mi
    • 인간식물환경학회지
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    • 제24권2호
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    • pp.219-227
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    • 2021
  • Background and objective: Urban street trees play an important role in carbon reduction in cities where greenspace is scarce. There are ongoing studies on carbon reduction by street trees. However, information on the carbon reduction capacity of street trees based on field surveys is still limited. This study aimed to quantify carbon uptake and storage by urban street trees and suggest a method to improve planting of trees in order to increase their carbon reduction capacity. Methods: The cities selected were Sejong, Chungju, and Jeonju among cities without research on carbon reduction, considering the regional distribution in Korea. In the cities, 155 sample sites were selected using systematic sampling to conduct a field survey on street environments and planting structures. The surveyed data included tree species, diameter at breast height (DBH), diameter at root collar (DRC), height, crown width, and vertical structures. The carbon uptake and storage per tree were calculated using the quantification models developed for the urban trees of each species. Results: The average carbon uptake and storage of street trees were approximately 7.2 ± 0.6 kg/tree/yr and 87.1 ± 10.2 kg/tree, respectively. The key factors determining carbon uptake and storage were tree size, vertical structure, the composition of tree species, and growth conditions. The annual total carbon uptake and storage were approximately 1,135.8 tons and 22,737.8 tons, respectively. The total carbon uptake was about the same amount as carbon emitted by 2,272 vehicles a year. Conclusion: This study has significance in providing the basic unit to quantify carbon uptake and storage of street trees based on field surveys. To improve the carbon reduction capacity of street trees, it is necessary to consider planning strategies such as securing and extending available grounds and spaces for high-density street trees with a multi-layered structure.

도시녹지의 생태학적 조성 및 관리방안에 관한 연구 -서울시 안산 도시자연공원을 중심으로- (Studies on Urban Green Open Space Establishment and Management of Ecological Approach -A case study of Ansan urban nature park in Seoul-)

  • 오충현;이경재
    • 한국조경학회지
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    • 제21권1호
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    • pp.125-137
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    • 1993
  • Ansan urban nature park is 197.8ha and located in Seodeamun-Gu of Seoul. Flora of Ansan consisted of 141 species, 76 genera, 40 families in woody plants. This study was conducted to analyze the natural environment and establish the park management plan with ecological approach. The result of this study is summarized as follows. 1. The short term plan shall be performed in six vegetation management zones; Robinia pseudoacacia community zone, Sorbus alnifolia community zone, Quercus acutissima community zone, Populus ${\times}$albagrandulosa community zone, Pinus densiflora community zone, and landscape planting zone. Pinus densiflora and landscape planting zones shall be managed artificially, the others managed with ecological approach. 2. The long term plan shall be performed in four vegetation management zones; Robinia pseudoacacia community zone, Quercus spp. community zone, Pinus densiflora community zone, and landscape planting zone. Pinus densiflora and landscape planting zones shall be managed artificially, the others managed with ecological approach. 3. Because soil of Ansan is acidified and the soil disturbed growth of plants, the improvement of soil is necessary. The fertilization shall be performed in three zones; evergreen confierous tree zone(ex. P. densiflora), Quercus spp. zone, and the other deciduous tree zone(ex. R. pseudoacacia).

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도시공원 조경수목 식재 평가 및 평가등급 적용 방안 - 인천광역시 송도 해돋이공원을 대상으로 - (Planting Evaluations for the Landscaping Tree and Application Plan by Assessment Grade in the City Park - A Case Study of Haedoji Park, Songdo, Incheon Metropolitan City -)

  • 한봉호;조훈검;곽정인;박석철
    • 한국환경생태학회지
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    • 제28권4호
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    • pp.457-471
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    • 2014
  • 본 연구는 인천광역시 송도 해돋이공원의 공간기능에 따른 식재개념 적정성 검토, 식재구조 현황, 공간별 식재된 수목에 대해 형태평가와 생육평가를 통해 현재 식재되고 있는 조경수목의 형태 및 생육상태 문제점을 도출하고, 이를 개선하기 위한 평가 적용 체계를 제안하고자 수행하였다. 공간기능에 따른 식재개념 적정성 평가 결과 녹음기능이 필요한 공간 중 29.5%만 녹음식재지이었고, 58.7%는 시각적 경관식재지, 11.8%는 완충식재지이었다. 이는 시설물 중심 공간구성에 따른 식재면적 부족과 녹음기능을 수행할 수 없는 어린 수목을 식재하였기 때문인 것으로 판단되었다. 식재구조 현황에서는 식재기능 향상을 위해서는 각 식재개념에 따른 적정한 식재종, 식재 구조, 밀도, 규격, 생육상태 등을 고려한 식재가 필요할 것으로 판단되었다. 조경수목 평가 조사는 완충공간에서 22종 209주, 녹음공간에서 8종 71주, 시각적 경관공간에서 16종 266주, 생태적 경관공간에서 4종 54주로 총 28종 600주의 조경수목을 대상으로 수목평가를 실시하였다. 수목평가 결과 수목 형태평가 점수는 평균 56.6점, 수목 생육평가 점수는 평균 76.0점으로 평가되었다. 수목평가 점수는 모두 점수별로 등급화하였고 공간별, 수종별로 통계처리하여 유의성을 검증하였다. 본 연구에서는 수목평가 결과를 활용하여 공간기능별 수목 기준 도출 및 적정 식재개념을 적용하였다. 공간별 수목 형태평가 결과를 식재개념에 적용하면 완충식재는 기능성이 강조되므로 형태평가 등급이 가장 낮은 E등급, 생태적 경관식재는 다양성과 자연성이 강조되므로 D등급, 녹음식재는 이용성이 강조되므로 주간에서 분지된 가지의 높이를 고려한 수종 선택으로 C등급, 시각적 경관식재는 미적가치성이 강조되므로 A등급과 B등급을 각각 적용할 수 있었다. 공간별 수목 생육평가 결과를 식재개념에 적용해 보면 식재기반을 기준으로 양호와 불량으로 구분하여 완충식재, 시각적 경관식재, 생태적 경관식재에서는 생육평가 A등급부터 E등급까지 식재가 가능하였고, 녹음식재에서는 A등급부터 C등급까지 식재가 가능하였다.

순천만 해안방풍림 조성을 위한 생태학적 식재모델 개발 (The Development of Ecological Planting Model for the Make Up of Coastal Windbreak Forest on Suncheon Bay in Suncheon-si, Korea)

  • 김도균
    • 한국환경복원기술학회지
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    • 제14권1호
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    • pp.89-104
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    • 2011
  • This study was carried out to the development of ecological planting model to make up of coastal windbreak forest on the Suncheon-bay in Sucheon-si, Korea. Make up of coastal windbreak forest in this site was needed for appropriate bioresource, biodiversity and ecological structure, and for conservation of the eco-tour resource and protection of human life and property by the unforeseen disaster from the coast. Based on the plant-social principle, the planting model of windbreak forest was developed to facilitate growth of trees, considering planting locations. The ecological planting model for the coastal windbreak was composed of warm temperate evergreen and windbreak forest which is spreading around the inland area in Korea. The horizontal forest style was composed of forest edge community and inner forest community, and the vertical forest style was composed of upper, middle, low and ground planting class. The target of the present model was quasi-natural forest, and the species of tree were selected based on the adaptability to surroundings depending on a goal to create a forest and forest style. To achieve both functions of wind break forest and visual effect in short period of time, small trees and seedlings were planted with high-density of 40,000/ha in an expectation of easy natural maintenance in the future. The significance of the present study is a suggestion for a guideline to create ecological coastal windbreak forest in the Suncheon-bay in which the harmony of human life and the ecological conservation is of great importance. Also, the ecological coastal windbreak forest model should be developed further through the long term monitoring after construction of forest.

Carbon Storage and Uptake by Street Trees in Seoul

  • Jo, Hyun-Kil;Kim, Jin-Young;Park, Hye-Mi
    • Journal of Forest and Environmental Science
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    • 제34권2호
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    • pp.162-164
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    • 2018
  • This study quantified the carbon storage and uptake by street trees in Seoul and explored suitable planting and management strategies. A systematic sampling model was used to select 50 plots to survey the structures of street trees. The average density and cover of street trees were approximately 5.8 trees/$100m^2$ and 12.1%, respectively. Trees with a dbh of less than 30 cm accounted for about 66.3% of the total number of trees surveyed. The total carbon storage and uptake by the street trees were approximately 103,641 t and 10,992 t/yr, respectively. The total carbon uptake equaled the amount of annual carbon emissions from driving of about 11,000 cars. Street tree planting and management strategies were proposed to enhance carbon uptake. They included multi-layered and multi-aged planting, securing ground and space for plant growth, and avoiding excessive tree pruning.

도시공원 생태적 배식의 조성 단계별 문제점 고찰 및 개선방안 -서울시 여의도공원 자연생태의 숲을 사례로- (Problem Analysis and Suggestion for Improved Approaches to Ecological Planting and the Establishment of Urban Parks -A Case Study of the Nature Ecological Forest in Yeouido Park, Seoul-)

  • 성경호;이경재;최진우;김종엽
    • 한국조경학회지
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    • 제39권2호
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    • pp.91-102
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    • 2011
  • 본 연구에서는 국내 현실을 고려한 도시공원의 생태적 배식기법을 마련하기 위해 여의도공원 자연생태의 숲의 조성단계별 문제점과 원인을 고찰하여 개선방안을 제시하였다. 실시설계단계에서는 가장 중요한 배식모델과 도면작성이 불명확하게 제시되었고, 식재수량 및 규격이 비현실적이었다. 시공단계에서는 설계도면과 다른 유사수종 및 다른 규격의 수목이 식재되었고, 목표군락에 따른 토양환경 기반 조성이 이루어지지 못해 생태적 배식에 한계가 있었다. 관리단계에서는 하자보식 처리가 미흡하고, 하자보수 담보기간 이후의 관리대책이 부재하였다. 도시공원 생태숲 조성을 위한 단계별 개선방안을 제시하였다. 실시설계단계에서는 반드시 목표 배식모델을 고려하여 교목층, 아교목층, 관목층별 식재도면을 작성해야 하고, 수목 자원조사결과를 통해 현실적으로 가능한 식재종 및 규격을 제시해야 한다. 시공단계에서는 이식대상 수목에 인식표를 부착하여 적정한 식재종 및 규격으로 식재가 이루어져야 하며, 수종 변경시 식재모델에 적합한지를 검토하도록 시방서에 명기하고, 규격 변경시 실제규격으로 준공처리를 하고, 목표모델에 적합한 토양이 유입될 수 있도록 반입 토양의 의무적인 분석이 필요하다. 관리단계에서는 관급수목에 대한 하자처리를 위해 설계시 일정 할증율을 반영하고, 하자보수 담보기간을 2년에서 5년으로 확대하며, 시간변화에 따른 목표군락별 변화과정을 관찰할 수 있도록 준공후 5년 동안 모니터링 의무화 등이 필요하다.