• 제목/요약/키워드: Urbanization Effect

검색결과 255건 처리시간 0.034초

소규모 단지의 유출모의와 도시화 효과에 관한 연구 (A Study of the Runoff Simulation and the Urbanization Effect on Small Watersheds)

  • 이병호
    • 물과 미래
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    • 제24권2호
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    • pp.59-70
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    • 1991
  • 본 연구에서는 소규모 유역에서의 유출 해석을 위해 기존의 모의 모형중 ILLUDAS 모형과 ILSD 모형을 선택하였다. 이들 모형을 실제 유역에 적용하여 유출 수문곡선을 모의하고 그 결과를 분석해 봄으로서 모형의 적응성과 유의 해야할 사항을 검토해 보았다. 또한 도시화가 이루어짐에 따라 첨두 유량과 유출계수 및 유출용적 등이 증가하는 현상을 알아 보기 위해 도시화 정도에 따른 분석도 실시 하였다.

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도시화에 따른 도시유역 배수계통의 유출영향분석에 관한 연구 (Analysis of Runoff Effect of Drainage System at Urban Watershed due to Urbanization)

  • 서규우;허준행;조원철
    • 상하수도학회지
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    • 제11권4호
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    • pp.80-90
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    • 1997
  • The ILLUDAS and SWMM models were applied to the developing area of Dongsucheon for comparisons of the total runoff, peak discharge and travel time. For this purpose, the present and future urbanization rates were assumed 70% and 90%, respectively. The runoff analysis of two models has been performed based on 10, 20, 30 and 50 return periods and Huff's 4 quantiles for time distribution pattern of design rainfalls. As results, the total runoff based on Huff's pattern had an decreasing order of 1, 4, 3 and 2 quantiles for both models. The SWMM model showed that there were 4.3% increasing of the total runoff, 4.9% increasing of peak discharge, and 6.6% decreasing of travel time. Similarly, for ILLUDAS model, there were 7.3% and 9.2% increasing of total runoff and peak discharge, respectively and 9.1% decreasing of travel time.

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물 환경 건전화를 위한 도시하천의 물 순환 모의 (I) - 안양천 유역 - (Hydrologic Cycle Simulation of Urban river for Rehabilitation of Water Environment (I) - Anyangcheon Basin -)

  • 이정민;이상호;이길성
    • 한국물환경학회지
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    • 제22권2호
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    • pp.349-357
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    • 2006
  • Nowadays, the discharges of urban streams during dry season are depleted because the hydrologic cycle in the watershed has been destroyed due to the expansion of the impermeable area, the excessive groundwater pumping, climate change, and so forth. The streamflow depletion may bring out severe water quality problems. This research are to investigate the hydrologic characteristics and to develop a technology to restore sound hydrologic cycle of Anyangcheon watershed. For the hydrological cycle analysis of the Anyangcheon watershed, continuous simulations of urban runoff were performed for the upstream basin of Gocheok bridge whose basin area covered 4/5 of the whole catchment area. The increase of impervious area by urbanization was analysed and its effect on urban runoff was evaluated. The SWMM 5 (Storm Water Management Model 5) was used for the continuous simulation of urban runoff. The analysis results of urbanization effect on runoff are as follows: the surface runoff in 2000 increases to 65% of the whole precipitation whereas the surface runoff in 1975 amounts to 50% of the precipitation; the groundwater runoff in 2000 amounts to 7% and shows 6% decrease during the period from 1975 to 2000.

Landsat영상을 이용한 토지피복 변화에 따른 행정중심복합도시의 표면 열섬현상 변화분석 (Analysis of the Surface Urban Heat Island Changes according to Urbanization in Sejong City Using Landsat Imagery)

  • 이경일;임철희
    • 대한원격탐사학회지
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    • 제38권3호
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    • pp.225-236
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    • 2022
  • 도시의 인구 증가와 이에 따른 개발로 인한 도시화는 도시 내 열섬현상과 같은 다양한 환경문제를 유발할 수 있다. 특히 계획적으로 구축되는 신도시의 경우 짧은 기간에 진행되는 급격한 도시화로 인한 도시 기후의 변화를 분석하기에 적절한 연구대상지로 여겨진다. 본 연구에서는 Landsat-8 Operational Land Imager/Thermal Infrared Sensor (OLI/TIRS) 위성영상을 활용하여 세종특별자치시 내 행정중심복합도시의 2013년부터 2020년 개발계획에 의한 토지피복 변화와 이에 따른 표면 열섬현상의 변화를 분석하였다. 이를 위해 위성영상에서 제공하는 열적외선 밴드값과 방사율을 고려하여 지표면온도를 산출하고, 이를 기반으로 표면 열섬현상 강도와 Urban Thermal Field Variance Index (UTFVI)의 변화분석을 수행하였다. 개발이 진행됨에 따른 토지피복 변화 및 피복별 열섬현상 강도의 차이 확인을 위해 환경부에서 제공하는 중분류 토지피복지도를 활용하였다. 분석 결과, 연구지역의 시가화 면적은 15% 증가하였고 자연식생은 28% 이상 줄어든 것이 확인되었다. 또한 이에 따른 열섬현상의 확장 및 강도 증가가 관측되었고, 열섬현상이 발생된 지역의 생태적 수준은 매우 낮은 것을 확인하였다. 본 연구를 통해 급격한 도시화에 따른 열 환경의 정량적 변화 및 생태적 수준을 확인하고, 주거환경의 열 환경 개선을 위한 추가적인 정책의 필요성이 제시될 수 있다.

서울의 일교차 주말효과와 에어러솔과의 연관성 (A Weekend Effect in Diurnal Temperature Range and its Association with Aerosols in Seoul)

  • 김병곤;김유준;은승희;최민혁
    • 대기
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    • 제17권2호
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    • pp.147-157
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    • 2007
  • A weekend effect has been investigated in diurnal temperature range (DTR) for Seoul in Korea using 50-year (1955 ~ 2005) surface measurements of maximum and minimum temperatures, and particle mass concentrations (PM10). The minimum temperature increases by 0.42K per decade, 2 times faster than the maximum temperature during 1955 to 2005, for rapid urbanization has occurred in Seoul. The weekend effect, which is defined as the DTR for Sunday minus the average DTR for Tuseday through Thursday, can be as large as +0.08 K for the recent 20-year period relative to 0.01K for 1955 to 1975. Especially the wintertime DTR tends to have a remarkable positive weekend effect (+0.17K), that is, larger DTR on Sunday compared to weekdays, which seems to be associated with increased maximum temperature and thus an increase in DTR. This result could be explained by relative differences in PM10 concentration between Sunday and weekdays (Tuesday through Thursday), such that PM10 concentration on Sundays appears to be systematically lower about 12% than on weekdays. The annually average weekend DTR increases by 0.2K with $10{\mu}gm^{-3}$ decrease in PM10 concentration in comparison with weekdays. The results could be possible evidence of an anthropogenic link to DTR, one of climate important indicators, since no meteorological phenomenon is supposed to occur over a 7 day cycle.

2010년 여름철 수도권 집중관측기간 강수 사례들에서 나타나는 도시화 효과 (Effect of Urbanization on Rainfall Events during the 2010 Summer Intensive Observation Period over Seoul Metropolitan Area)

  • 김도우;김연희;김기훈;신승숙;김동균;황윤정;박종임;최다영;이용희
    • 한국지구과학회지
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    • 제33권3호
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    • pp.219-232
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    • 2012
  • 도시화 효과가 여름 강수에 미치는 영향을 분석하기 위해 2010년 8월 13일부터 9월 3일까지 수도권 집중관측(ProbeX-2010)을 수행하였다. 분석 결과, 다음의 두 가지 현상들이 발견되었다. 첫째, 관측 기간 동안 약한 강수(${\leq}1\;mm\;hr^{-1}$)가 다른 지역보다 서울 풍하측 지역에서 더 자주 발생하였으며, 이는 최근 5년(2006-2010) 자료에서도 확인되었다. 약한 강수는 주로 서울 풍하측 산악 지역에서 야간에 더 자주 발생하였기 때문에 이는 도시지형 뿐만 아니라 산악 지형의 복합적인 효과로 여겨진다. 둘째, 간헐적으로 대류 시스템이 서울 풍하측에서 급격하게 발달해 호우를 야기했다. 이는 특히 8월 27일 1300-1500 KST의 일련의 레이더 영상에서 뚜렷하게 확인되었다. 본 연구에서는 이 강수 사례에 대한 종관 국지적 날씨 특성과 고층 대기 특성을 자세히 분석하였다. 그 결과 도시지형과 연관된 지표 현열 증가뿐만 아니라 조건부 불안정 대기 상태(특히 대기 하층)와 대기 하층의 습기 유입이 도시화 효과와 연관된 대류성 호우를 야기하는 중요한 요소로 제시되었다.

서울 도심지의 인본열에 의한 지표온도 분석: 위성영상 적용 사례 (Analysis of the Land Surface Temperature by the Anthropogenic Heat in the Urban Area of Seoul: An Example in Application of Satellite Images)

  • 방건준;박석순
    • 환경영향평가
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    • 제19권4호
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    • pp.397-407
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    • 2010
  • The increase of the solar reradiation from urban areas relative to suburban due to urbanization heats up the air temperature in urban areas and this is called the urban heat island (UHI) effect. This UHI effect has a positive relationship with the degree of urbanization. Through the studies on UHI using the satellite imagery, the effect of the surface heat radiation was observed by verifying the relationship between the air temperature and the land cover types (surface materials such as urban, vegetation, etc.). In this study, however, the surface temperature distribution was studied in terms of land use types for Seoul. Using land use types, the surface temperature in urban areas such as residential, industrial, and commercial areas in Yeongdeungpo, highly packed with industrial and residential buildings, was maximum $6^{\circ}C$ higher than in the bare ground, which indicated that the surface temperature reflected the pattern of the human-consumed energy on the areas and showed that one of the important causes influencing the air temperature except the surface heat reradiation by the sun is the anthropogenic heat. Also, the effect due to the restoration of the Chunggae stream on UHI was investigated. The average surface temperature for the Chunggae stream was reduced about $0.4^{\circ}C$ after restoration. Considering that each satellite image pixel includes mixture of several materials such as concrete and asphalt, the average surface temperature might be much lower locally reducing UHI near the stream.

WRF-UCM을 활용한 수도권 지역의 열환경 변화 연구: 2000년과 2009년의 비교 (Study on Heat Environment Changes in Seoul Metropolitan Area Using WRF-UCM: A Comparison between 2000 and 2009)

  • 이보라;이대근;남경엽;이영곤;김백조
    • 대기
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    • 제25권3호
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    • pp.483-499
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    • 2015
  • This study examined the impact of change of land-use and meteorological condition due to urbanization on heat environment in Seoul metropolitan area over a decade (2000 and 2009) using Weather Research and Forecasting (WRF)-Urban Canopy Model (UCM). The numerical simulations consist of three sets: meteorological conditions of (1) October 2000 with land-use data in 2000 (base simulation), (2) October 2009 with land-use data in 2000 (meteorological condition change effect) and (3) October 2009 with land-use data in 2009 (both the effects of land-use and meteorological condition change). According to the experiment results, the change of land-use and meteorological condition by urbanization over a decade showed different contribution to the change of heat environment in Seoul metropolitan area. There was about $1^{\circ}C$ increase in near-surface (2 m) temperature over all of the analyzed stations due to meteorological condition change. In stations where the land-use type changed into urban, large temperature increase at nighttime was observed by combined effects of meteorological condition and land-use changes (maximum $4.23^{\circ}C$). Urban heat island (UHI) over $3^{\circ}C$ (temperature difference between Seoul and Okcheon) increased 5.24% due to the meteorological condition change and 26.61% due to the land-use change. That is, land-use change turned out to be contributing to the strengthening of UHI more than the meteorological condition change. Moreover, the land-use change plays a major role in the increase of sensible heat flux and decrease of latent heat flux.