• 제목/요약/키워드: Multi-layered Planting

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조경식재공간에서 다층식재의 실태분석 -수도권 아파트와 근린공원을 중심으로- (An Analysis of Status Quo on the Multi-layer Planting at the landscape Planting Area in Apartment and Neighborhood Parks in Seoul Metropolitan Area)

  • 심우경;이동익
    • 한국조경학회지
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    • 제29권1호
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    • pp.140-151
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    • 2001
  • This study based on the theoretical understanding of multi-layer planting which have engineering, ecological and landscape benefits, was conducted to find out the status of multi-layer planting in the apartment and neighborhood park in Seoul. This study was also aimed to seek for the problematic matters, and suggest a solution on the current multi-layer planting. The results of this study were as follows; 1) Since landscape woody plants have been classified just as tree and shrub in Korea, the classification for the multi-layer planting has been unreasonable, and landscape woody plants might have been classified as tree, sub-tree and shrub, or upper, middle, and lower-layer, It could be defined that upper layer is over eight meters in full growth, middle over 3-8 meters and lower under 3 meters. 2) In apartments, the upper layer consisted of eighteen species, the middle and lower layer seven species each. In neighborhood parks, the upper layer consisted of fifteen species, and the middle and lower layer five species each. 3) In terms of planting year of the surveyed areas, there were no differences in the number of species when planting year of the apartment was divided into two groups, the first half(1900-1995) and the second(1996-2000). But, in terms of individual occupation, the percentage was decreased in upper layer, while there was increasing in middle and lower layer. 4) As the result of survey of multi-layered area, it appeared that apartment was shown 0.65 percent and neighborhood park 0.61 percent of the planted area, which was less than 1 percentage of landscape architecturally planted area. 5) In apartment, the number of individual in middle layers has been increased in the first half and the second, but with respect to the correlation with multi-layered area, the apartments had the "$\rho$=0.208", saying that increasing middle layer was scattered planting instead of multi-layered planting. 6) In planting at the apartments in Korea, the planting density was limited, because the layer division was restricted to only tree and shrub. On the contrary, it was divided into upper, middle and lower tree in Japan. Therefore, in Korea, it should be classified as the planting density by dividing into tree, sub-tree, and shrubs, or upper, middle and lower tree by the law. And, it should be considered that the multi-layered planting has a proper organic relation as well as the planting density.g density.

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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.

기능변화를 반영한 서울어린이대공원 조성녹지의 식재 리뉴얼 방향성 연구 (A Study on the Direction of Planting Renewal in the Green Area of Seoul Children's Grand Park Reflecting Functional Changes)

  • 박정아;한봉호;박석철
    • 한국조경학회지
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    • 제51권3호
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    • pp.21-36
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    • 2023
  • 기후변화 대응, 탄소중립 전략, 도시열섬, 미세먼지, 생물다양성 증진 등 환경이슈에 대한 해결책으로 도시녹지와 수목의 가치가 중요해지고 있으며 다양한 연구들이 도시환경개선을 위한 수목의 효과를 다루고 있다. 따라서 본 연구는 도시환경개선 측면에서 식재수종, 식재구조, 식재밀도, 식재기반의 선행연구를 종합적으로 고찰하여 도시공원 조성녹지의 식재 리뉴얼 방향성을 제안하고 이를 리뉴얼 계획에 적용해 조경수목을 통한 도시환경개선 효과를 제고하는 데 목적이 있다. 서울시 내 대규모 근린공원인 서울어린이대공원의 식재현황을 현장조사하고 조사자료를 근거로 식재기능평가를 했으며 식재기능개선 필요지역을 중첩 도출하였다. 식재기능평가는 공원기능 설정, 공간기능에 따른 식재개념, 식재현황 단계별로 수행하였고, 연구의 결과인 기능변화에 따른 식재 리뉴얼 방향은 식재기능평가 단계별로 도출하였다. 공원기능 설정은 녹지율을 높이는 것이 우선이나 이용자 편의도 고려해야 하며, 식재개념으로 시각적 경관식재는 교목층은 수형이 아름답고 탄소흡수와 미세먼지 저감효과가 높은 수종을 식재, 생태적 경관식재는 경사구배 위 다층구조 식재지 조성, 완충식재는 다층구조숲으로 조성하여 탄소흡수와 미세먼지 저감 효과 향상, 녹음식재는 활엽수 교목층과 초본층으로 구성하고 초본류의 자연형 식재를 지향해야 한다. 식재수종은 도시환경개선 효과가 높은 수종, 지역 자생종, 야생조류 선호 수종을 식재하고, 식재구조는 경관식재지와 녹음식재지는 교목층과 관목층, 교목층과 초본층으로 구성하고 생태성이 강조되거나 완충기능이 필요한 식재지는 다층구조로 조성한다. 식재밀도는 식재간격 기준으로 더 높은 기준을 적용하며, 식재기반은 빗물재활용과 토양객토 및 통기시설을 사용한다. 본 연구의 결과는 향후 노후 도시공원의 식재리뉴얼 계획 시 식재기능평가를 수행하여 식재기능개선 필요지역을 도출하는 데 적용할 수 있으며, 조성녹지의 기능변화 패러다임을 다각도로 반영한 식재 리뉴얼 방향성을 제시했다는 점에서 의의가 있다.

강원도 원주시 공원녹지의 식재 수종 및 식재밀도 특성 연구 (A Study on the Planting Density and Planting Species Characteristic Analysis of Park and Green Space in Wonju, Gangwon Province)

  • 한봉호;최진우;노태환;최태영
    • 한국환경생태학회지
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    • 제28권2호
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    • pp.150-160
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    • 2014
  • 본 연구는 강원도 원주시 도심지역인 행정동에 조성된 전체 공원과 녹지를 대상으로 식재 수종 및 식재밀도 특성을 분석하였다. 원주시 행정동지역 공원과 녹지에는 교목 침엽수 19종 8,050주, 활엽수 61종 6,037주, 관목 103종 77,609주가 식재되어 있었다. 근린공원, 어린이공원, 완충녹지, 경관녹지 4개 유형 모두 조성시기, 주변 토지이용 요인과 상관없이 침엽수인 스트로브잣나무의 수종 편중이 심하였고, 잣나무, 벚나무, 단풍나무, 느티나무, 소나무 순으로 식재되어 있었다. 공원과 녹지의 평균 식재밀도는 교목 0.03주/$m^2$, 관목 0.18주/$m^2$로 대부분의 대상지는 식재밀도가 낮았고 관목식재가 미흡하였다. 녹지공간 내 잔디식재지가 넓어 식재밀도 증진과 관목류 보식이 필요하였다. 따라서 공원녹지 내 추가로 식재할 수 있는 공간을 구분하여 미식재지역 내 수목 보식, 다층구조 식재, 관목 식재 등 식재밀도 증진을 제안하였다.

공공용지 녹지의 탄소저감과 증진방안 (Carbon Reduction and Enhancement for Greenspace in Institutional Lands)

  • 조현길;박혜미;김진영
    • 한국조경학회지
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    • 제48권4호
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    • pp.1-7
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    • 2020
  • 본 연구는 도시의 공공용지 녹지에 의한 탄소의 연간 흡수 및 저장을 계량화하고, 탄소저감 효과를 증진하기 위한 녹지구조의 개선방안을 제시하였다. 연구대상 도시는 규모와 분포지방을 고려하여 서울시, 대전시, 대구시, 춘천시, 순천시 등 총 5개 도시를 표본 선정하였다. 대상 도시의 항공사진 상에서 체계적 임의 표본추출방법을 통해 표본 공공용지를 선정하고, 녹지의 수평적 및 수직적 구조를 실사하였다. 도시 조경수목을 대상으로 개발한 수종별 계량모델을 적용하여, 식재수목에 의한 탄소의 연간 흡수 및 저장량을 산정하였다. 연구대상 공공용지의 교목밀도는 도시들 모두에 걸쳐 평균 1.4±0.1주/100㎡이고, 흉고직경은 14.9±0.2cm이었다. 녹지의 수직구조는 교목, 관목 또는 잔디만 식재한 단층구조의 비율이 다층구조보다 더 높았다. 식재수목에 의한 단위면적당 연간 탄소흡수량은 평균 0.65±0.04t/ha/yr이고, 단위면적당 탄소저장량은 7.37±0.47t/ha로서, 국내·외의 타 녹지공간 유형에 비해 낮은 탄소저감 효과를 보였다. 이는 연구대상 공공용지의 식재수목 밀도와 규격이 상대적으로 저조하기 때문이었다. 그럼에도 불구하고, 공공용지의 녹지는 공공용 전력소비에 따른 탄소배출을 도시에 따라 해마다 0.6(서울)~1.9%(춘천) 상쇄시키는 셈이었다. 잠재식재공간 내 수목식재는 기존 연간 탄소흡수량을 약 18% 추가 증진 가능하였다. 공공용지 녹지의 탄소저감 효과를 증진하기 위해서는 잠재식재공간의 적극적 수목식재, 상층 교목, 중층 교목 및 하층 관목으로 구성되는 다층 군식의 추진, 탄소흡수 능력이 양호한 교목종의 상층 식재, 상록수종의 토피어리, 관리회피 등이 요구된다. 본 연구는 국내 미진한 공공용지의 녹지구조 및 탄소상쇄를 구명하는데 중점을 두었다.

도시가로녹지의 개선을 위한 녹화환경평가 연구 -전주시를 대상으로- (A Study of Evaluating Streetscape Green Environments to Improve Urban Street Green Spaces - A Case Study of Jeonju City -)

  • 정문선;임현정
    • 한국환경복원기술학회지
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    • 제22권3호
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    • pp.55-71
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    • 2019
  • The purpose of this study is to propose an evaluation method to assess green environments of streetscapes to improve urban street green spaces in Jeonju City. Through a rapid assessment of urban street green spaces, we suggest an objective basis for expanding street green space as well as for adopting sustainable maintenance and improvement measures. We choose 12 sections of streetscapes (roads and sidewalks) to investigate existing street conditions which have more than four lanes and function as major road axes. Six large roads and six medium roads of Jeonju City center area are investigated as pilot assessment study sites. Site inventory checklists consist of environmental characteristics of streetscape, street tree status, and planting condition evaluation. Environmental characteristics of streetscapes are composed of physical and neighborhood factors. For instance, items for physical factors are types and width of road/sidewalks, paving materials, tree protection materials, and green strip. And surrounding landuse is a neighborhood factor. Assessment items for street tree status are street plant names (tree/shrubs/ground cover), size, and planting intervals. Planting condition evaluation items are tree shape, damage, canopy density, and planting types with existence of adjacent green space. Evaluation results are classified into three levels such as A(maintain or repair), B(greening enhancement), and C(structural improvement). In case of grade A, streetscapes have enough sidewalk width for maintaining green strip and a multi-layered planting(in large road only) with fairly good growing conditions of street trees. For grade B and C, streetscapes have a moderate level of sidewalk width with a single street tree planting. In addition, street tree growing conditions are appeared poor so that green enhancement or maintenance measures are needed. For median, only grade B and C are found as its planting growing foundations are very limited in space. As a result, acquiring enough sidewalk space is essential to enhance ecological quality of urban street green. Especially, it is necessary to have green strip with reasonable widths for plant growing conditions in sidewalks. In addition, we need to consider native species with multi-layer plant compositions while designing street green.

고속도로 휴게소 환경개선을 위한 기능 증진 방안 연구 - 수도권 휴게소를 중심으로 - (A Study of the Functional Improvement for Comfortable Expressway Service Areas - Metropolitan Expressway Service Areas -)

  • 이원명;한봉호;김종엽;박석철
    • 한국조경학회지
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    • 제43권3호
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    • pp.63-76
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    • 2015
  • 본 연구는 수도권에 설치된 고속도로 휴게소 5개소를 대상으로 휴게소 공간 및 환경 특성, 식재현황을 조사 분석하여 휴게소 조경공간의 문제점과 개선방안을 제시하였다. 공간 및 환경 특성에서는 토지이용, 녹지 배치, 토지피복과 환경영향 요인으로 소음 현황, 분리녹지대 지형 구조를 조사 분석하였다. 식재현황에서는 식재개념, 식재구조, 식생경관을 조사 분석하였다. 토지이용 현황은 건물 등 시설지가 81.6%, 녹지는 18.4%이었으며, 녹지는 경관공간 5.4%, 완충공간 9.1%, 녹음공간 0.7%이었다. 녹지 배치는 분리녹지대, 건물 좌 우측, 진 출입부, 휴게소 건물 후면에 주로 배치되어 있었다. 토지피복 현황으로 평균 불투수포장율은 79.3%, 평균 투수포장율은 20.7%이었다. 소음 측정 결과는 소음원인 고속도로와 휴게소의 배치, 분리녹지대의 유형 및 규격에 따라 차이가 있었다. 식재개념 현황은 경관식재 6.7%, 기타녹지 3.4%, 완충식재 4.6%, 완충+경관식재 2.0%, 녹음식재 1.1%, 경관+녹음식재 0.5%로 조경공간 대부분이 감상을 위한 공간 위주로 조성되어 있었으며, 이용자의 휴식, 위락 공간 등 적극적 이용 가능 공간은 부족하였다. 식재구조는 교목층식재 52.2%, 관목층식재 11.8%, 교목층+관목층식재 9.4%로 대부분 단층구조이었다. 식생경관은 조사지점에 따라 식재밀도, 식재구조, 생육상태의 영향을 받고 있었다. 고속도로 휴게소 환경 개선 방안은 기반환경 개선, 공간기능 개선, 식재기능 개선으로 구분하여 제시하였다. 기반환경 개선은 휴게소 소음 개선을 위한 분리녹지대 기능 강화, 물순환 체계 개선, 비점오염 저감을 위한 시설물 설치를 제시하였다. 공간기능 개선은 휴게공간 접근성 향상을 위하여 건물 좌우측에 조성되는 녹지를 건물 전면에 배치하는 휴게공간 배치 개선과 주차장 내 녹지섬 조성을 통한 열섬현상 완화 및 보행자 안전 확보를 위한 식재 및 조성 방안을 제안하였다. 식재기능에서는 분리녹지대 완충기능 강화를 위하여 다층형 수림대 조성, 외곽녹지 완충기능 확보를 위한 상록교목+낙엽교목+관목층의 식재구조를 제시하였다. 건물 전면과 이용 선호도가 높은 건물 좌측공간에 녹음공간을 조성하고, 주제 설정을 통한 경관공간 식재방안을 제시하였다.

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.

자연광 기반 적층형 식물공장의 열환경에 대한 수치해석 연구 (Numerical Study on the Thermal Environment of a Natural Light Based Multi-layered Plant Factory)

  • 박동윤;장성택;장성주
    • KIEAE Journal
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    • 제13권5호
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    • pp.43-50
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    • 2013
  • Recent researches on plant factory system deal with the convergence of lighting technology, agricultural technology inclusive to the high-tech industries worldwide in order to respond to the decreasing crop harvest due to global warming and abnormal weather phenomena. However, the fundamental performance standard is not currently being introduced in the case of plants factory and its commercialization is not activated because of high initial investment and operating cost. Large portion of the initial investment and operating cost of a plant factory is ascribed to artificial light sources and thermal control facilities, therefore, innovation should be provided in order to improve the economics of the plant factory. As an alternative, new plant factory could harness solar thermal and geothermal systems for heating, cooling and ventilation. In this study, a natural light dependent multi-layer plant factory's thermal environment was analyzed with two-dimensional numerical methods to elicit efficient operation conditions for optimized internal physical environment. Depending on the supply air temperature and airflow rate introduced in the facility, the temperature changes around the crops was interpreted. Since the air supplied into the plant factory does not stay long enough, the ambient temperature predicted around the plating trays was not significantly different from that of the supplied air. However, the changes of airflow rate and air flow pattern could cause difference to the temperature around the planting trays. Increasing the amount of time of air staying around the planting trays could improve energy performance in case the thermal environment of a natural light based multi-layer plant factory is considered.

Classification of Crop Lands over Northern Mongolia Using Multi-Temporal Landsat TM Data

  • Ganbaatar, Gerelmaa;Lee, Kyu-Sung
    • 대한원격탐사학회지
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    • 제29권6호
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    • pp.611-619
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    • 2013
  • Although the need of crop production has increased in Mongolia, crop cultivation is very limited because of the harsh climatic and topographic conditions. Crop lands are sparsely distributed with relatively small sizes and, therefore, it is difficult to survey the exact area of crop lands. The study aimed to find an easy and effective way of accurate classification to map crop lands in Mongolia using satellite images. To classify the crop lands over the study area in northern Mongolia, four classifications were carried out by using 1) Thematic Mapper (TM) image August 23, 2) TM image of July 6, 3) combined 12 bands of TM images of July and August, and 4) both TM images of July and August by layered classification. Wheat and potato are the major crop types and they show relatively high variation in crop conditions between July and August. On the other hands, other land cover types (forest, riparian vegetation, grassland, water and bare soil) do not show such difference between July and August. The results of four classifications clearly show that the use of multi-temporal images is essential to accurately classify the crop lands. The layered classification method, in which each class is separated by a subset of TM images, shows the highest classification accuracy (93.7%) of the crop lands. The classification accuracies are lower when we use only a single TM image of either July or August. Because of the different planting practice of potato and the growth condition of wheat, the spectral characteristics of potato and wheat cannot be fully separated from other cover types with TM image of either July or August. Further refinements on the spatial characteristics of existing crop lands may enhance the crop mapping method in Mongolia.