• 제목/요약/키워드: Urban green area

검색결과 619건 처리시간 0.03초

신도시 개발이 도시열섬 형성에 미치는 영향 - 분당신도시와 판교지역을 중심으로 - (Influence of New Town Development on the Urban Heat Islands - ln the Case of Pan-Gyo Area and Bun-Dang New Town -)

  • 송영배
    • 한국조경학회지
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    • 제30권4호
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    • pp.37-46
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    • 2002
  • The main purpose of this research is to discuss the urban heat island which will be caused by urbanization, especially by the construction of new town on a wide green zone. Over the last ten years, five new towns have been developed around the Seoul metropolitan area. However these new towns become bedroom communities and create traffic problems between Seoul and its surrounding areas because of an increase in population and a lack of roads and other infrastructures. The construction of another such new town is under consideration in the Pan-gyo area. But it is important that Pan-gyo remains a wide green zone. Many studies show that green space can play an important role in improving urban eco-meteorological, ameliorative capability and air hygiene. The objective of this study is to analyze the urban heat islands of Bund-Dang Si which was constructed in 1996 and of the Pan-Gyo area planned as new town. To investigate the local thermal environment and its negative effects caused by change of the land use type and urbanization we used LANDSAT TM images for extraction of urban surface temperature according to change of land use over 15 years. These data were analyzed together with digital land use and topographic data. As a study result, we found that the thermal island of this area from 1985 to 1999 rapidly increased with a difference of mean temperature of more than 12'E. Before construction of Bun-Dang Si the temperature of this area was the same as the forest, but during the new town construction in 1991, an urban heat island developed. The temperature of forest with a size of over 50% of the investigation area was lowest, which leads us to conclude that the forest cools the urban and its surroundings. The mean temperature of the residential and commercial area is more than +4.5$^{\circ}C$ higher then forest, so this method of land use is the main factor increasing the urban heat island. Urban heat islands and green space play an important role in urban wind systems, i.e. Thermal Induced Air Exchange and Structural Wind Circulation, because of their special properties with regard to energy balance between constructed urban and land. The skill to allocate land use types in urban areas is a very important planning device to reduce air pollution and induce the fresh cold air from green space. An urban climatic experiment featuring a numerical wind simulation study to show the air corridor will be published in a following research paper.

도시 토지피복별 불투수면적률과 녹지면적률에 따른 지표면 일최고온도 변화량 산정방법 (Development of calculating daily maximum ground surface temperature depending on fluctuations of impermeable and green area ratio by urban land cover types)

  • 김영란;황성환
    • 상하수도학회지
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    • 제35권2호
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    • pp.163-174
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    • 2021
  • Heatwaves are one of the most common phenomena originating from changes in the urban thermal environment. They are caused mainly by the evapotranspiration decrease of surface impermeable areas from increases in temperature and reflected heat, leading to a dry urban environment that can deteriorate aspects of everyday life. This study aimed to calculate daily maximum ground surface temperature affecting heatwaves, to quantify the effects of urban thermal environment control through water cycle restoration while validating its feasibility. The maximum surface temperature regression equation according to the impermeable area ratios of urban land cover types was derived. The estimated values from daily maximum ground surface temperature regression equation were compared with actual measured values to validate the calculation method's feasibility. The land cover classification and derivation of specific parameters were conducted by classifying land cover into buildings, roads, rivers, and lands. Detailed parameters were classified by the river area ratio, land impermeable area ratio, and green area ratio of each land-cover type, with the exception of the rivers, to derive the maximum surface temperature regression equation of each land cover type. The regression equation feasibility assessment showed that the estimated maximum surface temperature values were within the level of significance. The maximum surface temperature decreased by 0.0450℃ when the green area ratio increased by 1% and increased by 0.0321℃ when the impermeable area ratio increased by 1%. It was determined that the surface reduction effect through increases in the green area ratio was 29% higher than the increasing effect of surface temperature due to the impermeable land ratio.

대전시 녹지계획을 위한 연결성 분석에 대한 연구 (A Study on the Analysis of Connectivity for Green Space Planning in Daejeon Metropolitan City)

  • 정용문;김선태;김명수
    • 한국환경복원기술학회지
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    • 제5권6호
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    • pp.14-23
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    • 2002
  • Daejeon is a large city in Korea and very high-speedly developing city. Recently urban area is expanding and large forest patch is fragmenting into small habitats because of urban sprawl. The fragmentation of large forest patch decreases the size of habitats and increases the loss of biodiversity in urban area. This study is to analysis the connectivity of green space of Daejeon metropolitan city, and suggest the optimum location of greening site and corridor in order to increase the connectivity of green space of Daejeon metropolitan city. The findings of this study are as follows; (1) The result of this study showed that ${\alpha}$ and ${\gamma}$ index are -0.24 and 0.20. A ${\alpha}$ index is very low and a ${\gamma}$ index is relatively low. (2) The dispersion was very high, for urban forest patches were isolated through fragmentation. Therefore, it needed ecological corridors in order to connect the patches. (3) A urban streams were very important in connectivity of urban green space. Urban riparian corridor must be preserved and restored. (4) A urban green space policy and planning must be prepared to increase the connectivity and assessment of alternatives must be accomplished from perspective of connectivity. The results of this study show the practical implications in perspective of green space planning and policy in Daejeon metropolitan city. The suggestions by findings of this study are to connect green space between large forest patch in urban fringe and island green space in inner city. Also, It is required that urban stream is restored to natural feature for use of corridor by wildlife.

택지개발사업지구의 공원녹지계획 지표연구 (A Study on the Planning Standards of Parks and Open Space Planning)

  • 김귀곤;성현찬;황기현
    • 한국조경학회지
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    • 제22권1호
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    • pp.179-198
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    • 1994
  • Urban parks and open spaces provide the community residents with the most easily accessible source for outdoor recreation, contributing also to the improvement of quality of natural environment in urban area. The demands of urban residents' for more and better green area are ever-increasing. However, the level of most urban open spaces which are easily accessible for residents are not satisfactory to meet the residents' demand in availability and in quality as well. Most existing urban open spaces are simply built of green areas only or have been developed in almost identical design with little consideration for individual uniqueness of the site. When developing neighbourhood parks in urban housing complexes, for example, little consideration is being given to topographical conditions, interrelation with the adjacent green area, or viability of the urban ecosystem. In many cases, urban park development projects are being done with serious negligence of natural properties of the site, by even destroying existing healthy woodlands. for instance. The objectives of this study are; -To survey on the domestic and the overseas cases of regulatory systems, development status and planning methods for urban open space. -To identify underlying issues of residental park developments in urban housing projects and establish appropriate improvement measures thereof, by studing and analyzing current-use data of developed urban parks and management status thereof. -To establish improved standards for urban open space planning, by integrating above surveys and studies, and recommendation for revision of related legislation is also presented to implement these standards.

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옥상녹화 조성에 따른 열환경 변화분석 (An Analysis of Thermal Environment Change according to Green Roof System)

  • 박지영;정응호;김대욱;차재규;시미즈 아키
    • 한국주거학회:학술대회논문집
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    • 한국주거학회 2009년도 추계학술발표대회 논문집
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    • pp.100-103
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    • 2009
  • The impermeable area on the surface of city has been increased as buildings and artificial landcover have continually been increased. Urban development has gradually decreased the green zone in downtown and alienated the city from the natural environment on outskirt area devastating the natural eco system. There arise the environmental problems peculiar to city including urban heat island phenomenon, urban flood, air pollution and urban desertification. As one of urban plans to solve such problems, green roof system is attracting attentions. The purpose of this study was to investigate the heat reduction effect according to the development of green roof system and to quantify the heat reduction effect by analyzing through simulation the heat environment before and after green roof system. For thermal environment analysis, Thermo-Render 3.0 was used that was developed by Tokyo Industrial College to simulate. The simulation showed that the heat island index before and after the development of tree-planting on rooftop changed maximum $0.86^{\circ}C$ and the surface temperature changed about $20^{\circ}C$. Only with lawn planting, heat reduction effect was great and it means that the green roof system in low-management-light-weight type is enough to see effect. The simulation identified that only lawn planting for green rooftop brought such difference and could lower the heat island index at a narrow area. It is judged that application of green roof system to wider areas might relieve urban heat island phenomenon positively.

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중국의 도시녹지 종류와 도시거주구 녹지의 설치 기준에 관한 법제도의 현황과 특성 (The Characteristic of Laws on the Kind of Urban Green Spaces and the Legal Requirements for the Green Spaces of Urban Habitat in China)

  • 신익순
    • 한국조경학회지
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    • 제41권3호
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    • pp.1-11
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    • 2013
  • 본 연구는 도시녹지에 관한 현행 중국의 법제도를 조사하여 도시녹지의 종류와 도시거주구 녹지의 설치 기준을 항목별로 분류해 봄으로써 그 속성을 이해하고, 국내 규정과 상이한 특이점을 분석 고찰함으로써 향후 이들 법규의 국내 도입 여부를 위한 기초 자료를 제공하고자 수행되었다. 본 연구를 통해 도출된 결과는 다음과 같이 요약할 수 있다. 첫째, 공원녹지, 생산녹지, 방호녹지, 부속녹지, 기타녹지 등 5종류로 구분되는 중국의 도시녹지는 공원과 녹지 개념이 동시에 포함되어 있는 점이 공원과 녹지가 엄밀히 구분되어 있는 국내의 공원녹지 개념과는 상이하며, 종합공원, 공동체공원, 전문공원 및 대상(帶狀)공원 등으로 구분되는 중국의 도시공원의 종류는 하위 법규인 '도시녹지분류표준'에서 밝히고 있다. 둘째, 옥상조경 시 중국에서는 주민 출입이 용이한 지하나 반지하 건물의 옥상 외에는 옥상조경의 조경면적을 도시녹지의 녹지율 산입에 포함시키지 않고 있고, 도시 주민들의 생활환경 확보를 위해 거주구 계획 설계 시의 녹지 요구 조항과 거주구, 소구(小區), 조단(組團) 등 거주구 종류별 의무적 공공녹지 확보율이 구체적으로 명시되어 있다. 셋째, 거주구 내 녹지계획 시 녹지계통 수립이 의무화되고, 기존 수목과 녹지의 보존 이용을 명시하고 있다. 녹지율은 구거주구 재정비시의 경우 신거주구 건설시보다 완화시켜 주고, 특이하게 녹지 경사도를 별도로 명시하고 있다. 거주구공원, 어린이공원(소유원(小遊園)), 조단(組團)녹지 등 각급 중심녹지의 설치 내용, 요구사항 및 최소 면적 규모가 명시되어 있고, 특히 조단녹지의 일종인 정원식 조단녹지는 폐쇄형 녹지와 개방형 녹지로 분류하여, 다층 고층 건물별로 남 북측 건물 간격과 녹지 면적 확보치를 밝히고 있으며, 녹지 면적 계산법이 별도의 규범에 제시되어 있다. 넷째, 거주구별 달성해야 할 거주구 내 공공녹지의 1인당 확보 면적인 총 지표가 정해져 있고, 이 경우 노후 구역 재정비시에는 일정치까지 완화할 수 있다. 공공녹지의 위치와 규모, 최소폭, 개소당 최소 면적 등이 명시되어 있고, 도로와의 인접, 전체 면적 대비 녹화 면적비, 개방적 공간 확보, 일조음영선 범위 등 공간 배치 원칙이 규정되어 있다. 다섯째, 지하관선 설치 시의 녹지 고려 사항으로 지하관선과 주변 녹화수목과의 최소 수평 이격거리가 명시되어 있고, 공공서비스 시설 중 녹지 설치를 위해 종류별 서비스 내용에 따른 녹지 설치 원칙이 규정되어 있다. 국내 규정에는 없는 중국 법규만의 특이점에 대한 국내 도입 여부의 검토가 향후 요구되고, 이상의 연구 결과는 중국의 도시녹지 관련 법제도 연구의 당면성에 대한 국내 조경가들의 공감대를 형성하는데 기여할 수 있을 것이며, 나아가 조경 법제도의 국제화 진입의 계기 역할을 하게 될 것이다.

Urban Growth of Chuncheon City Observed by Landsat Satellite Images

  • Ahn, Young-Jin;Lee, Hoon-Yol
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2005년도 Proceedings of ISRS 2005
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    • pp.411-414
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    • 2005
  • In this study, 8 Landsat(TM/ETM+) satellite images acquired from 1984 to 2002 were used to investigate the growth of Chuncheon city, Kangwon-do, Korea. The images were geocoded and classified using training set collected from field survey. Four land-use types were classified such as urban area, green zone, agricultural land and water body. It also showed rapid increase of urban area in the past two decades from 1166ha in 1984 to 3358ha in 2002. About 2182ha of agricultural land and green zone have been changed to urban area. Agricultural land was newly formed from the green zone.

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복원 및 경관생태학적 원리에 근거한 남산의 생태공원화 계획 (Restoration and Landscape Ecological Design to Restore Mt. Nam in Seoul, Korea as an Ecological Park)

  • 이창석;문정숙;김재은;조현제;이남주
    • The Korean Journal of Ecology
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    • 제21권5_3호
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    • pp.723-733
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    • 1998
  • Restoration to improve the ecological quality of Mt. Nam was explored in a viewpoint of restoration in both landscape and ecosystem levels. A restoration plan in landscape level was based on the result on the land-use pattern in Mt. Nam including its surrounding area and that in ecosystem level on the ecological quality of each landscape element. A plant to construct the green network, which extending from Mt. Nam to the Han river through the Yongsan family park and through the Eungbong urban park was prepared as a restoration project in landscape level to improve the ecological quality of Mt. Nam as an ecological park. On the other hand, a plan for restoration and creation of biotop as a restoration project in ecosystem level was also prepared to improve the ecological quality of each green area consisting green network. Green areas composing green network include keystone green area (Mt. Nam), green stations (Yongsan family park, Eungbong urban park, and the han river citizen's park), and green pathway (or ecological corridor) connecting those green areas.

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Study of Urban Land Cover Changes Relative to Demographic and Residential Form Changes: A Case Study of Wonju City, Korea

  • Han, Gab-Soo;Kim, Mintai
    • Journal of Forest and Environmental Science
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    • 제31권4호
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    • pp.288-296
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    • 2015
  • In many very high density cities in Asia in which there is limited area to expand, growth is forced upward as well as outward. Densely packed detached houses and low-rise buildings are replaced by lower density high-rises, leaving open spaces between high-rise buildings. Through this process, areas that formerly did not have much green space gain valuable green spaces, and new ecological corridors and patches are created. In this study, the demographic and housing-type changes of Wonju City were delineated using land use maps, aerial images, census data, and other administrative data. Green area changes were calculated using land cover data derived from multi-year Landsat TM satellite imagery. The values were then compared against demographic and housing-type changes for each administrative unit. The overall results showed a decrease of forested area in the city and an increase of developed area. Urban sprawl was clearly visible in many of the suburban areas. However, as expected, we also detected areas in which greenness did not decrease when the population greatly increased. These areas were characterized by residential building complexes of ten or more stories. If an equal number of housing units had been built as detached houses, these areas would not have kept as much green space. Our research result showed that high-density and high-rise residential structures can offer an alternative means to protect or create urban green spaces in high-density urban environments.

Satellite-based Assessment of Ecosystem Services Considering Social Demand for Reduction of Fine Particulate Matter in Seoul

  • Lim, Chul-Hee
    • 대한원격탐사학회지
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    • 제38권4호
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    • pp.421-434
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    • 2022
  • Fine particulate matter (PM2.5) has been the biggest environmental problem in Korea since the 2010s. The present study considers the value of urban forests and green infrastructure as an ecosystem service (ES) concept for PM2.5 reduction based on satellite and spatial data, with a focus on Seoul, Korea A method for the spatial ES assessment that considers social demand variables such as population and land price is suggested. First, an ES assessment based on natural environment information confirms that, while the vitality of vegetation is relatively low, the ES is high in the city center and residential areas, where the concentration of PM2.5 is high. Then, the ES assessment considering social demand (i.e., the ESS) confirms the existence of higher PM2.5 values in residential areas with high population density, and in main downtown areas. This is because the ESS of urban green infrastructure is high in areas with high land prices, high population density, and above-average PM2.5 concentrations. Further, when a future green infrastructure improvement scenario that considers the urban forest management plan is applied, the area of very high ESS is increased by 74% when the vegetation greenness of the green infrastructure in the residential area is increased by only 20%. This result suggests that green infrastructure and urban forests in the residential area should be continuously expanded and managed in order to maximize the PM2.5 reduction ES.