• 제목/요약/키워드: Urban Tree Canopy

검색결과 32건 처리시간 0.02초

도시림의 여름철 평균복사온도 저감 추정 연구 (A Study of the Urban Tree Canopy Mean Radiant Temperature Mitigation Estimation)

  • 안승만;손학기;이규석;이채연
    • 한국조경학회지
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    • 제44권1호
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    • pp.93-106
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    • 2016
  • 이 연구는 제안한 평균복사온도의 차감비교기법을 통해 도시림이 여름철 옥외 환경에 미치는 온열완화를 정량적으로 추정하고 평가는 것을 목적으로 한다. 항공 라이다 측량시스템 기반 3차원 점군자료로부터 도시림이 있는 모의 대상지와 도시림이 없는 모의 대상지 두 사례를 구축하여 SOLWEIG 기반에서 평균복사온도를 산출하고 두 값들을 비교 및 분석하였다. 연구를 통해 도시림 캐노피가 연구지역 전체 일평균 $T_{mrt}$를 약 $5^{\circ}C$ 정도 저감하며 태양의 위치와 지면 조건에 따라 시간평균 $T_{mrt}$$33^{\circ}C$까지 저감될 수 있음을 확인하였다. 결과들은 도시미기후 지표(풍속, 습도, 대기 온도 등) 및 생명기상(인지온도 등) 연구들을 향상시키고 더불어 삼림 기반 공공 녹색정책 개발에 활용될 수 있을 것이다.

도시공원 구조 및 식생 조건에 따른 조류 종다양성 분석 - 천안시 26개 도시공원을 대상으로 - (Analysis of Bird Species Diversity Response to Structural Conditions of Urban Park - Focused on 26 Urban Parks in Cheonan City -)

  • 송원경
    • 한국환경복원기술학회지
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    • 제18권3호
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    • pp.65-77
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    • 2015
  • The urban park has important functions as a habitat for wildlife as well as open space of rest and community for people. This study was carried out to find what factors of structure and vegetation of urban parks could affect forest bird species diversity in Cheonan city. The study surveyed bird and vegetation species in 26 urban parks, Cheonan city. A correlation analysis and multiple linear regressions were performed to test whether habitat structure and vegetation were the major correlate with species diversity. The results showed the Dujeong park was the most high bird species diversity (H' = 2.13), and the Dujeong-8 park (H' = 2.02) and the Cheongsa park (H' = 1.73) were considerably higher than the other urban parks. The variables that were strongly correlated with bird species diversity were park area, number of subtree species, canopy of shrub, number of shrub species, shape index, canopy of subtree, canopy of tree, and impervious surface ratio. The regression of bird species diversity against the environmental variables showed that 3 variables of park area, canopy of subtree, and canopy of tree were included in the best model. Model variable selection was broadly similar for the 5 optimal models. It means park area and multi-layer vegetation were the most consistent and significant predictor of bird species diversity, because urban parks were isolated by built-up areas. Especially the subtree coverage that provides shelter and food for forest birds was an important variable. Therefore, to make parks circular-shaped and abundant multi-layer vegetation, which could be a buffer to external disturbances and improve the quality of habitats, may be used to enhance species diversity in creation and management of urban parks.

도시 주차장내 수목그늘의 경제적 이익 연구 -미국 캘리포니아 데이비스 대학 주차장을 사례로- (A Study on the Economic Benefit of Urban Parking Lot Tree Shading -In the Case of University of California Davis Parking Lot-)

  • 장동수
    • 한국조경학회지
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    • 제33권6호
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    • pp.98-108
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    • 2006
  • The climate of urban area is an unstable type with considerable seasonal variation in precipitation wind speed, and temperature and it grows worse. Besides, ozone is a serious air pollutant in most of large cities. So worldwide, some of large cities are investing in forestry options to offset their climate problems, but lack of information has hindered comparisons of urban un cost effectiveness to other options. This research intends to study the economic benefits of tree shading of 19 parking lots in UCD campus. The economic benefits of tree shading are air conditioning savings, air quality, stormwater run-off, and other benefits. Especially, this study focuses how much the economic benefit of parking lot shading has been increased from 1995 to 2003 year by aerophoto. Some data on dimensions of parking lots and the number, size, tree species, and location of trees around each parking lot was inventoried. Two aerophotos(1995,2003) were used in order to analyze the increasement of tree canopy in 19 parking lots for 8 years. However, increasing coverage of trees and managing them for healthy growth would not be sufficient for avoiding adverse impacts by future climate change. Additional measures should be followed such as an increase of energy use efficiency and development of substitute energy. For example, coverage of trees help to save cooling energy by blocking solar radiation reaching parking cars and building structures through shading, and creating cool micro-climates through evapotranspiration. They also reduce heating demand by decreasing air infiltration and heat conduction out of the interior of buildings. Proper arrangement of vegetation over the parking lots can reduce cooling and heating costs. So proper planting design around hard space paving including species selection and location can significantly save cooling and heating energy. And a reduction in car and building's heating and cooling costs results in the reduction in energy demand which causes to emissions of air pollutants. Total increased tree canopy from 1995 to 2003 is $8,470.45m^2$ and the economic benefits is US$ 5,282.10. The economic benefit of one tree has been US$ 7.21 for 8 years. And an annually increased benefit is US$ 0.9 per a tree. If this kind of study is applied to studying the economic benefits of tree canopy in parking lots of Korea, it could result in guidelines of tree planting of parking lots. Because the trees selected for planting in parking lots were not suitable for an environment, the guidelines should contain a recommended list of trees. The guidelines should propose the shading percentage of parking lot when we plan a parking lot and contain the maintenance of trees in order to maximize the economic benefits of tree canopy.

기후변화적응형 도시림 조성을 위한 i-Tree Canopy 기반 의사결정지원 방안 (i-Tree Canopy-based Decision Support Method for Establishing Climate Change Adaptive Urban Forests)

  • 김태한;이재영;송창길;오지은
    • 반도체디스플레이기술학회지
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    • 제23권1호
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    • pp.12-18
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    • 2024
  • The accelerated pace of climate crisis due to continuous industrialization and greenhouse gas emissions necessitates sustainable solutions that simultaneously address mitigation and adaptation to climate change. Naturebased Solutions (NbS) have gained prominence as viable approaches, with Green Infrastructure being a representative NbS. Green Infrastructure involves securing green spaces within urban areas, providing diverse climate adaptation functions such as removal of various air pollutants, carbon sequestration, and isolation. The proliferation of Green Infrastructure is influenced by the quantification of improvement effects related to various projects. To support decision-making by assessing the climate vulnerability of Green Infrastructure, the U.S. Department of Agriculture (USDA) has developed i-Tree Tools. This study proposes a comprehensive evaluation approach for climate change adaptation types by quantifying the climate adaptation performance of urban Green Infrastructure. Using i-Tree Canopy, the analysis focuses on five urban green spaces covering more than 30 hectares, considering the tree ratio relative to the total area. The evaluation encompasses aspects of thermal environment, aquatic environment, and atmospheric environment to assess the overall eco-friendliness in terms of climate change adaptation. The results indicate that an increase in the tree ratio correlates with improved eco-friendliness in terms of thermal, aquatic, and atmospheric environments. In particular, it is necessary to prioritize consideration of the water environment sector in order to realize climate change adaptive green infrastructure, such as increasing green space in urban areas, as it has been confirmed that four out of five target sites are specialized in improving the water environment.

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Canopy Model 적용을 통한 도심지 풍환경 예측 CFD 시뮬레이션 결과의 보정 (Modification of CFD results for Wind Environment in Urban area with Tree Canopy Model)

  • 정수현;홍인표;최종규;송두삼
    • 한국태양에너지학회 논문집
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    • 제32권spc3호
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    • pp.185-193
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    • 2012
  • Recently rapid urbanization facilitates development of high-rise building complex including apartment and office building in urban area. Many problems related with high -rise building are reported. Especially, unpleasant strong winds in pedestrian area are frequently encountered around the high-rise building. CFD simulation methods are used to analyze the wind environment of pedestrian level in high-rise building block. However, the results show differences between CFD and measurement. This difference is attributed to improper use of CFD. Conventional CFD simulation for wind environment around high-rise building does not describe the effect of trees, shrubs and plants near ground which affect the wind environment of pedestrian level. Canopy model can be used to reproduce the aerodynamic effects of trees, shrubs and plants near ground. In this paper, CFD simulation methods coupled with the tree canopy model to predict wind environment of pedestrian level in high-rise residential building block were suggested and the validity was analyzed by comparison between measurement and CFD results.

해안 매립도시 완충녹지 조성현황과 기능향상을 위한 식재방안 - 안산시 완충녹지를 사례로 - (Planting Plan for Improvement of Buffer Green Space Function in the Vicinity of Railroad in Seashore Reclaimed Land - A Case Study of Buffer Green Space, Ansan City -)

  • 이경재;한봉호;박현애;최진우
    • 한국환경생태학회지
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    • 제22권6호
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    • pp.691-706
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    • 2008
  • 본 연구에서는 해안 매립도시인 안산시 철도변 완충녹지를 대상으로 완충녹지의 문제점을 분석하고, 완충녹지의 공간기능과 식재개념에 적합한 식재방안을 제시하였다. 안산시 철도별 완충녹지의 식재밀도는 $0.04{\sim}0.17$주/$m^2$ 이었고, 녹지용적계수는 $0.15{\sim}1.65m^3/m^2$로 녹량이 부족하여 완충기능이 미흡하였다. 마운딩 완충녹지의 토양경도는 $2.72{\sim}15kg/cm^2$로 식생생육에 적합하지 않았다. 완충녹지의 기능을 향상시키기 위해 야생조류 서식 측면의 생물서식기능, 주변 토지이용 측면의 도시공원기능, 식재수종 계절성 측면의 경관개선기능을 검토하였다. 완충녹지를 기능에 따라 생물서식기능의 완충녹지, 완충 및 경관개선기능의 완충녹지, 경관 및 도시공원기능의 완충녹지, 완충 및 생물서식기능의 완충녹지로 재설정하였다. 완충기능 식재방안에서는 곰솔 등을 주요종으로 선정하고, 교목종 0.4주/$m^2$, 관목종 0.5주/$m^2$로 식재밀도를 설정하였고, 경관개선 기능에서는 느티나무, 산벚나무, 살구나무 등을 주요종으로 선정하고 교목종 0.2주/$m^2$, 관목종 0.5주/$m^2$로 식재밀도를 설정하였다. 생물서식기능에서는 상수리나무, 산벚나무, 팥배나무 등을 주요종으로 선정하고, 적정 식재 밀도를 교목종 0.06주/$m^2$, 아교목종 0.1주/$m^2$, 관목종 0.8주/$m^2$로 식재밀도를 제시하였다.

광주광역시 도시림의 현존식생과 식생구조 (Actual Vegetation and Plant Community Structure of Urban Forest in Kwangju Metropolitan City)

  • 이규완;오구균
    • 한국조경학회지
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    • 제23권2호
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    • pp.148-156
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    • 1995
  • This study was conducted to investigate the actual vegetation and plant community structure of the urban forest in Kwangju Metropolitan City. Thirty eight plots in the urban forest were set up by the clumped sampling method. The degree of green naturality, 6 that is artifical planting area covered 10.9% in Kwangju Metropolitan City and Pinus densiflora community covered 48.7% of the actual vegetations of urban forest. Canopy height, Diameter of breast height (DBH) and No. of species in urban forest were 13.5m, 21cm and 24 species, respectively. The soil conditions and community structure of the urban forest were differenced by location of urban and suburban area. The plant communities divided into six groups which were Quercus acutissima community, Q. acutissima-Robinia pseudo-acacia community, Pinus rigida Community, P. rigida-P. densiflora community, P. densifrora-Q. acutissima community and Q, serrata-P. densiflora community. Successional series of the urban forest in the surveyed area were proceeding from P. dinsiflora to Quercus species. The species diversity of plant were high in natural plant community but low in artificial plant community. Tree density in the canopy layer varied from 600ea/ha to 2,800ea/ha.

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기계학습을 이용한 광학 위성 영상 기반의 도시 내 수목 피복률 추정 (Estimation of Fractional Urban Tree Canopy Cover through Machine Learning Using Optical Satellite Images)

  • 배세정;손보경;성태준;이연수;임정호;강유진
    • 대한원격탐사학회지
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    • 제39권5_3호
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    • pp.1009-1029
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    • 2023
  • 도시 수목은 탄소를 저장하고 불투수면적을 감소시키는 도시 생태계의 중요 요소이며, 탄소 저장량 및 순환량 산정 시 주요 정보로 활용될 수 있다. 많은 선행 연구에서 항공 라이다 자료 및 인공지능 기법을 활용하여 고해상도 수목 정보를 산출하고 있으나, 항공 라이다 영상은 제공하는 플랫폼이 제한되어 있으며 비용적인 면에서도 한계가 다수 존재한다. 따라서 본 연구에서는 수원시를 대상으로 자료 취득이 용이한 고해상도 위성 영상인 Sentinel-2를 활용하여 기계학습 기반의 도시 내 수목 피복률(fractional tree canopy cover, FTC)을 추정하고자 하였다. Sentinel-2 시계열 영상으로부터 중앙값 합성을 수행하여 수원시 전역에 대한 단일 영상을 제작하여 활용하였다. 도시 내 토지 피복의 이질성을 반영하기 위하여, 30 m 격자내 10 m 해상도의 광학 지수의 평균 및 표준편차 값과 환경부 세분류 토지 피복 지도 기반 항목별 피복률을 계산하여 기계학습 모델의 입력 변수로 활용하였다. 총 4가지의 입력 변수 조합을 설정하여, 입력 변수 구성에 따른 FTC 추정 정확도를 비교 및 평가하였다. 광학 영상의 평균 정보만을 활용(Scheme 1)했을 때 보다 도시 내 이질적인 특성을 반영할 수 있는 표준 편차 및 피복률 정보를 모두 함께 고려(Scheme 4, S4)했을 때 향상된 성능을 나타낼 수 있었다. 검증용 자료에 대해 S4의 Random Forest (RF) 모델이 0.8196의 R2, 0.0749의 mean absolute error (MAE), 및 0.1022의 root mean squared error (RMSE)로 전체 기계학습 모델 중에서 성능이 가장 높게 나타났다. 변수 기여도 분석 결과 광학 지수의 표준 편차 정보는 도시 내 복잡한 토지 피복 지역에 대해 높은 기여도를 나타내었다. 훈련된 S4 구성의 RF 모델을 수원시 전역에 대해 확장 적용하였을 때, 참조 FTC 자료에 대해 0.8702의 R2, 0.0873의 MAE, 및 0.1335의 RMSE의 우수한 성능을 나타냈다. 본 연구의 FTC 추정 기법은 향후 다른 지역에 대한 적용성이 우수할 것으로 판단되며, 도시 생태계 탄소순환 파악의 기초자료로 활용될 수 있을 것으로 기대된다.

도시 가로수의 증산 작용으로 인한 불쾌지수 변화 분석 (Analyzing Change of Discomfort Index for Transpiration of Street Tree)

  • 윤석환;이동근;박채연
    • 한국환경복원기술학회지
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    • 제23권5호
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    • pp.29-43
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    • 2020
  • Thermal environment of city is getting worse due to severe urban heat island caused by climate change and urbanization. The cooling effect of street tree is regarded as a effective way to ameliorate the urban heat environment. The effect is largely made up of shadow formation and transpiration. This study aims to identify how the transpiration affects the discomfort index by analyzing comprehensive impact of the transpiration on the air temperature and relative humidity. The changes in the amount of transpiration, air temperature, and relative humidity were estimated for Seogyo-dong area which has a lot of floating population in Seoul, at 2 p.m. in dry day in July and August. On average, the transpiration of the street tree decreased the temperature 0.3℃ and increased the relative humidity 2.6% in an hour. As a result of these changes in temperature and humidity, the discomfort index rose mostly(0.036 on average). It was always get rise especially on the day when the discomfort index was above 80(0.05 on average). However, compared with the significant change in temperature and humidity, the variation of the discomfort index itself was very slight(up to 0.107). Therefore, the effect of transpiration by the street trees might not be effective in the planning to improve the thermal environment(especially on the day when the discomfort index is high). It is necessary to select the species of trees and planting location considering the cooling effect of shade formation synthetically.

도시생태계 현황파악 및 자연성 증진 방안 -서울시 강서구를 사례로- (Ecosystem Structure and Improvement of Naturalness in Urban Area -In the Case of Kangseo-gu in Seoul-)

  • 이수동;이경재
    • 한국조경학회지
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    • 제32권3호
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    • pp.1-17
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    • 2004
  • The focus of this study is the promotion of green area volumes and their naturalness, water circulation system, decline of entropy, creation of biological habitats and linkage of separated urban green space. Re-presentative urban biotope survey sites were categorized as urban biotope, semi-natural biotope, and natural forest. In the urban biotope, a residential biotope was constructed near the Han river and in mountain areas. The green-area ratio at the housing complex was about 25%. GVZ(Grunvolumenzahl) was 0.35m$^3$/m$^2$ at the 5∼10-story housing complex, and 1.53m$^3$/m$^2$ over the 11-story. As for the green-area structure of the housing complex, canopy layer, understory layer, and shrub layer were not differentiated and the green-area volume was not high enough. The green-area ratio of school areas as a public area biotope was 5∼20%. GVZ was 1.12m$^3$/m$^2$ at Myungduk High School, and 1.78m$^3$/m$^2$ at Jeonggok Elementary School. In order to convert the urban biotope into an ecological area, green areas around the buildings should be connected to urban buffer green areas, and multi-layer structures should be established with natural plant species. In the semi-natural biotope, neighbor parks were created park in the vicinity of the natural forests. GVZ was 0.28m$^3$/m$^2$, and plantation was established with single layer structure and was definitely insufficient for the area. The urban buffer green areas have been established in strip corridors with the width of 20∼123m. In those areas, GVZ was 0.16∼0.27m$^3$/m$^2$ and had a deficient canopy layer, understory layer, and shrub layer. Soil conditions were not favorable for tree growth. In the natural biotope, GVZ of the plantation was 1.03∼1.5m$^3$/m$^2$ but the high crown closure of this area reduces the chance of species change and succession. GVZ of natural forest was 2.53∼2.57m$^3$/m$^2$. It is desirable to plant diverse plants and the natural forest should be succeeded by broad-leaf deciduous tree species. To improve the value of biotope at Kangseo-Gu, building height needs to be limited to reduce the environmental deterioration in the city. In order to maintain the water circulation system, water-permeable material is recommened when the urban surface areas are paved. The establishment of a water circulation system will improve ground water levels, soil moisture, water quality, and habitats. In order to improve biological diversity, it is desirable to have multi-layer structures in urban green areas with native species.