• 제목/요약/키워드: Urban canopy

검색결과 117건 처리시간 0.023초

내연산 망개나무 임분의 군집구조와 생태적 특성 (Community Structure and Ecological Characteristics of Berchemia berchemiaefolia Stands at Mt. Naeyon)

  • 홍용식;윤이슬;진동필;김찬범;김학구;이진우;강신구
    • 한국산림과학회지
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    • 제111권4호
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    • pp.538-547
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    • 2022
  • 본 연구는 경상북도 내연산 소재 희귀식물인 망개나무림을 대상으로 개체군과 군집 구조를 정량화하고, 다변량통계기법을 활용하여 군집유형과 입지환경요인과의 상관관계를 분석하여 향후 망개나무 자생지의 보전 및 복원을 위한 기초자료를 제시하고자 하였다. 망개나무는 총 164개체가 출현하였으며, 평균흉고직경 24.5 cm의 정규분포형의 분포를 보였지만 하층식생인 수고 3 m 이하에 거의 출현하지 않았으며, 맹아발생 개체비율은 37.1%이었다. 망개나무 임분은 망개나무졸참나무군집(그룹 I)과 망개나무-서어나무군집(그룹 II)의 2개의 그룹으로 분류되었으며, 수관틈과 토양의 화학적 특성인 유기물함량(OM), 치환성 Ca 그리고 양이온치환능(CEC)이 임분들의 분포패턴에 영향을 주는 주요 입지조건이었다. 현재 내연산의 망개나무 임분들은 망개나무가 우점하고 있었으나 분포지의 입지조건에 따라 음수인 서어나무 또는 까치박달로의 미소천이가 일어나고 있었다.

하절기 도시의 지역별 장.단파복사 특성 분석과 해석 (Analysis of Radiative Characteristics at Urban Area by Observation in Summer Season)

  • 정임수;최동호;이부용
    • 한국태양에너지학회 논문집
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    • 제31권3호
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    • pp.133-144
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    • 2011
  • The objective of this study is to analyze the characteristic of radiation environment in the urban and rural through the field observation in the summer. The radiation balance was compared through the measurement of the shortwave radiation and long-wave radiation in the urban, sub-urban, and rural. The following conclusion could be obtained from this research. (1)In the results of observation including the rain-day, it was found that the short wave radiance in the urban is lower about 10% than the rural. (2)The upper part of atmosphere layers in the urban are aabsorb much short wave radiation energies compared with the rural relatively. It can increase the temperature of the upper part of atmosphere layers and the emittance of long wave radiation. (3)The ratio of the downward short wave radiation to the downward long wave radiation was 1.24 for the urban, 1.28 for sub-urban and 1.35 for rural. It can be estimated that the atmosphere condition of the rural is better than that of other areas. (4)The net radiation of the rural was lower that of the urban. It was found that the energy in and outflow of the rural is easier than that of the urban. (5)The temperature variation for the long-wave radiation change of the rural showed more sensitive than that of the urban. It was came from the radiation characteristics of the surrounding environment and can be used as the important index to evaluate the thermal environment characteristic of urban.

최근 2년간 서울 선정릉 지역의 복합센서 관측망을 활용한 녹지 냉각효과 분석 (Analyzing the Cooling Effect of Urban Green Areas by Using the Multiple Observation Network in the Seonjeongneung Region of Seoul, Korea)

  • 김근회;이영곤;이대근;김백조
    • 한국환경과학회지
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    • 제25권11호
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    • pp.1475-1484
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    • 2016
  • To analyze the cooling effect of urban green areas, we conducted micrometeorological measurements in these areas and their surroundings in Seoul, Korea. From the average hourly temperature measurements through each month for the last two years (March 2013 to February 2015), we found that the maximum temperature difference between urban and green areas was about $2.9^{\circ}C$ at 16:00 LST in summer, and the minimum was about $1.7^{\circ}C$ at 22:00 LST in winter. In summer, the temperature difference was the largest during the day, rather than at night, due mainly to shading by the tree canopy. The specific humidity difference between the two areas was about $1.5g\;kg^{-1}$ in summer, and this decreased in the winter. The specific humidity difference between urban and green areas in summer is relatively large during the day, due to the higher evapotranspiration level of biologically active plants.

도시공원 경관 연결성 및 구조에 따른 조류 종다양성 분석 (Analysis of Bird Diversity According to Landscape Connectivity and Structure of Urban Park)

  • 송원경
    • 한국환경복원기술학회지
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    • 제20권1호
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    • pp.131-142
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    • 2017
  • The function of urban parks as wildlife habitats is becoming increasingly important. The urban park serves as a key area for preserving urban biodiversity. The purpose of this study is to estimate the bird species diversity in 30 parks in Cheonan city and quantitatively analyze the influence of vegetation, park structure and landscape connectivity index. As the results, a total of 27 birds species and 1,509 individuals were found at the sites and the largest number of birds were found in the Cheongsa park with 17 species. The optimal regression model was selected as the explanatory variables for the logged park area (LPA), the tree cover ratio (Co_T) and the patch betweenness centrality (PB). LPA and Co_T mean the internal characteristics of the park, and PB was the external environmental variable meaning landscape connectivity. LPA was the most important factor (73.3%) as bird habitat, and the PB could be interpreted as a factor that should be considered as important (26.7%). It will be possible to consider these environmental variables in the park and green area construction and management.

수도권지역의 신갈나무군집 복원모형 (Restoration Model of Quercus mongolica Community in the Case of Korean National Capital Region)

  • 강현경;방광자
    • 한국조경학회지
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    • 제28권6호
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    • pp.1-15
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    • 2001
  • The purpose of this study is to figure out the structural characteristics of urban plant community and suggest restoration model of Quercus mongolica in the case of Korean national Capital Region. The investigation areas were selected from urban area of Mt. Nam at Chung-Gu, suburban areas of Mt. Bong at Eunpyoung-GU, Mt. Sungju at Buchon City and non-urban areas of Mt. Suri at Kunpu City and Mt. Chonma t namyangju-City. After the main study field had been classified into the evaluation of the ecological characteristics and the modeling of the vegetation. We analyzed to evaluate the ecological characteristics of the forest structure -- successional stage, naturalness, multi-layer structure of the forest and species diversity, and the plant community structures. We have proposed vegetation restoration model based on the selection of proper plants, the number of individuals, diameter short area of breast height, the shortest distance between plants in non-urban area. As for successional stage, It was judged that the ecological succession may not be followed like the present stage of the surveyed areas in urban, suburban and non-ruban areas. As for the retention of naturalness and multi-layer structures of vegetation, In Quercus mongolica community, Robinia pseudo-acacia and Ailanthus altissima occurred in each layers at Mt. Nam, Mt. Bong and Mt. Sungju, and Eupatorium rugosum occurred in herbaceous layer at Mt. Nam. Consequently, the ecological restoration plan following the structure of the vegetation in Mt. Chonma seemed to be advisable in Q. mongolica community, there were less number of species and individuals in urban areas than those of non-urban areas. Planting of trees following the simulated native plant community of non-urban areas seemed to be required to promote the plants in urban areas. Considering the number of individuals up to three layers in each 400$m^2$ area, it was composed of twenty nine in canopy layer, forth nine in understory layer, 367 in shrub layer and 33.7% herbaceous ground cover in the Q.mongolica community. The suggested restoration model in this study is nan applicable model for the introduction in the cities, and this study shows that continuous experiments and field investigation on this model should be performed in the future.

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북한산국립공원 참나무시들음병 방제지역 식생구조 특성 연구 (Characteristics of Vegetation Structure of Managed Area by Oak Wilt Disease in Bukhansan National Park)

  • 한봉호;최진우;염정헌;이경재
    • 한국환경생태학회지
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    • 제28권3호
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    • pp.342-356
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    • 2014
  • 본 연구는 북한산국립공원 참나무시들음병 피해지 중 벌채 및 훈증 관리된 지역에 대한 식생구조특성을 분석함으로서 향후 식생복원을 위한 기초자료 제공을 목적으로 하였다. 연구 대상지는 2006~2011년 벌채 및 훈증 관리된 지역 중 예비답사를 통해 관리년도가 명확하고 조사 및 관리가 용이한 탐방로 인접지역을 선정하였으며 선정된 대상지는 소귀천계곡, 무수골, 다락원, 원도봉, 도봉계곡, 도선사 등 6개 지역 이었다. 조사구는 대조구를 포함하여 총 18개소 ($20m{\times}20m$)를 설정하였으며 아교목층과 관목층의 밀도 및 피도, 아교목층의 상대우점치, 도시화적응종 및 외래종의 상대우점치 등을 분석하였다. 모니터링 결과, 벌채 후 4년 이상 경과된 소귀천계곡과 무수골에서 아교목층과 관목층의 밀도 및 피도가 모두 크게 증가하였으며 벌채 후 3년이 지나지 않은 지역 중 다락원, 원도봉, 도봉계곡, 도선사 등은 벌채 및 훈증 작업시 하층이 훼손되어 대조구에 비해 아교목 및 관목층 밀도가 낮았다. 하지만 원도봉과 도선사는 관목층의 밀도가 대조구에 비해 높았는데 다수의 유목이 이입된 것으로 분석되었다. 아교목층의 세력 경쟁 측면에서는 다락원과 원도봉을 제외하고는 신갈나무가 쇠퇴하면서 졸참나무와 팥배나무가 우점하였다. 다락원은 아교목층에서 소나무와 신갈나무 등이 우점하였고 원도봉은 신갈나무가 지속적으로 우점하였다. 외래종은 일본목련, 아까시나무 등이 수관층이 개방된 곳을 중심으로 분포하였으며, 소귀천계곡에서는 덩굴식생인 칡이 생육하였다. 토양환경에서는 전 지역에서 토양의 산성화(pH 4.49)와 더불어 유기물함량(3.23%), 유효인산(1.40mg/kg) 및 치환성양이온 등이 부족한 것으로 분석되어 수목생육에는 불량한 환경으로 판단되었다.

Particle Image Velocimetry Measurement of Unsteady Turbulent Flow around Regularly Arranged High-Rise Building Models

  • Sato, T.;Hagishima, A.;Ikegaya, N.;Tanimoto, J.
    • 국제초고층학회논문집
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    • 제2권2호
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    • pp.105-113
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    • 2013
  • Recent studies proved turbulent flow properties in high-rise building models differ from those in low-rise building models by comparing turbulent statistics. Although it is important to understand the flow characteristics within and above high-rise building models in the study of urban environment, it is still unknown and under investigation. For this reason, we performed wind tunnel experiment using Particle Image Velocimetry (PIV) to investigate and identify the turbulent flow properties and characteristic flow patterns in high-rise building models. In particular, we focus on instantaneous flow field near the canopy and extracted flow field when homogeneous flow field were observed. As a result, six characteristic flow patterns were identified and the relationship between these flow patterns and turbulent organized structure were shown.

서울 남산도시자연공원의 비오톱 구조 및 생태적 관리방안 (Ecological Management Plan and Biotope Structure of Namsan Urban Natural Park in Seoul)

  • 이경재;한봉호;이수동
    • 한국조경학회지
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    • 제32권5호
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    • pp.102-118
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    • 2004
  • The purpose of this study was to propose an ecological management plan by the comprehensive analysis of biotope structures on Namsan Urban Natural Park in Seoul. Classified by actual vegetation, structure of layer and vegetation damage, biotope structures were composed of forest area, compact management area, herb area, cultivated area and non-ecology(urban) area. Succession had seened to stop in the Native forest. Artifical forest was divided into two types. The first, upper layer, was too dense to accommodate lower layer plants, the other case was the appearance of Quercus spp. and the first stage plants of succession following the declination of the upper layer plants. The soil pH of Nam-san Urban Park was 4.21∼4.51, which meant the soil was becoming acid. As the result of acidity, leaching of available nutrition(K/sup +/, NH₄/sup +/, Ca/sup ++/ etc.) was immediately influenced by the natural ecosystem, influence of acid rain was disturbed to becoming organic matter which was use to plants. In the case of a biotope structure management plan, the urban area was prohibited to spread outside. Cultivated and herb area was regenerated to natural forest. In the forest area, the compact management area was maintained with its present condition, and then it is desirable to make a preservation area and to plant shrubs. Planted Pinus densiflora Community was needed to eliminate competitive species of canopy layer, and plant shrubs. Management of deciduous broad-leaved Comm. was maintained in its present conditionand it is desirable to raise the diversity of the understory and shrub layer. The management of the artifical forest seems to be suitable for Q. spp. community. The care of naturalized plants prevents the expansion and restores the structure of wild plants. The soil management was a marked restoration soil ecosystem in order to prevent soil acid and drying.

길동자연생태공원에서 조류의 군집 특성과 서식지 이용 현황 (Characteristics of Bird Community and Habitat Use in Gildong Natural Ecological Park)

  • 김정수;문길동;구태회
    • 한국환경복원기술학회지
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    • 제7권1호
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    • pp.19-29
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    • 2004
  • This study was carried out to understand the bird community and habitat using condition in the Gildong natural ecological park, from April 2001 to March 2002. In this study, 63 species and 2,075 individuals were observed respectively. The dominant species were Paradoxornis webbianus(33.6%), Emberiza elegans 18.5%), Parus major(6.4%), Pica pica(6.0%), and the diversity of the species was 2.511. With migration, the highest number and percentage to the lowest was residents, summer visitors, winter visitors and passage migrants. Among 17 species which bred in the Gildong natural ecological park, hole(H) was 47.1%, canopy(C) was 41.1% and bush(B) was 11.8% in their nesting guilds. In foraging guilds in breeding season was canopy(c) was 45.7%, water(w) was 23.9% and bush(c) was 15.2%, and, in non-breeding season, canopy was 43.5%, water 23.9% and bush 21.7%. For the habitats of the birds in the Gildong natural cological park, reservoir area was used by herons, ducks and sandpiper, wetland area was used by Lanius bucephalus, Paradoxornis webbianus and buntings, grassland area was used by Paradoxornis webbianus and buntings, and forest area was used by Streptopelia orientalis, woodpeckers and tits. The number of species and individuals of birds observed in the Gildong natural ecological park was higher than other urban parks. We suggest that this was attributed to different habitats such as reservoir, wetland, grassland and forest area constructed in the Gildong natural ecological park.

식생캐노피모델을 통한 저관리 조방형 옥상녹화시스템의 열해석 전산모의에 관한 연구 (A study on thermal simulation for extensive green roof system using a plant canopy model)

  • 김태한
    • 한국환경복원기술학회지
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    • 제15권2호
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    • pp.137-147
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    • 2012
  • GRS is an effective urban ecology restoration technique that can manage a variety of environmental functions such as ecological restoration, rainwater spill control and island heat effect from a low-impact development standpoint that can be utilized in new construction and retrofits. Recently, quantitative evaluation studies, both domestic and abroad, in the areas related to these functions, including near-earth surface climate phenomenon, heavy rainwater regulation, thermal environment of buildings, have been actively underway, and there is a trend to standardize in the form of technological standards. In particular, centered on the advanced European countries, studies of standardizing the specific insulation capability of buildings with green system that comprehensively includes the green roof, from the perspective of replacing the exterior materials of existing buildings, are in progress. The limitation of related studies in the difficulties associated with deriving results that reflect material characteristics of continuously evolving systems due in part to not having sufficiently considered the main components of green system, mechanisms of vegetation, soils. This study attempts to derive, through EnergyPlus, the effects that the vegetation-related indicators such as vegetation height, FCV, etc. have on building energy load, by interpreting vegetation and soil mechanisms through plant canopy model and using an ecological standard indicator LAI that represent the condition of plant growth. Through this, the interpretations that assume green roof system as simple heat insulation will be complemented and a more practical building energy performance evaluation method that reflects numerical methods for heat fluxes phenomena that occur between ecology restoration systems comprised of plants and soil and the ambient space.