• Title/Summary/Keyword: 도심부

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An Analysis of Land Use Changes in Urban Center of Metropolis: The Case of Daegu City (대도시 도심부의 토지이용 변화 분석: 대구광역시를 사례로)

  • Yim, Soekhoi;Song, Minjeong
    • Journal of the Korean Geographical Society
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    • v.48 no.6
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    • pp.856-878
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    • 2013
  • This paper examines the recent changes of urban center in metropolis in terms of land use. Jung-Gu, Daegu City is analyzed for a case study, and publicly notified individual land price data of 2000 and 2011 are used as analysis materials. The analyzing results show that a lot of residential land uses diminished in urban center, but residential function is still significant despite such decrease. Commercial land uses also decreased. Office land uses increased, but the increase is insignificant. On the contrary, unused or miscellaneously used land increased considerably. The phenomena implicate that land uses in the urban center are not positive under the influence of inner city decline. Overall, more land use changes occurred in the frame than in the core of urban center. That is, land uses in the core is more stable than them in the frame. However, decreasing commercial land uses in the core is noticeable, comparing to the frame. Mixed land uses for residence and commerce are most deconcentrated and office land uses most concentrated. Mean center point and standard deviation distance of land uses did not change significantly from 2000 to 2011, despite considerable change of land uses. The finding reveals that land use changes are widely occurring in urban center.

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Analysis of Flood Reduction in Downstream Urban Areas for the Storage in Apartment Complex (하류 도심지 침수저감 분석을 통한 공동주택 단지의 우수저류조 계획)

  • Choi, Jae-Do;Lim, Hyoung-Chul
    • Proceedings of the Korean Society of Disaster Information Conference
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    • 2023.11a
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    • pp.301-302
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    • 2023
  • 연구목적:본 논문에서는 기후변화로 기존 도심지 침수 발생이 증가하는 현 상황에서 공동주택 단지에 소규모 우수저류시설을 계획하였을 때 기존 하류부 도심지 침수량 증가율과 기존 도심지 침수량 저감 정도를 분석하고자 한다. 연구방법:미국환경보호청 SWMM 모델을 활용해서 대규모 하수도 모델을 구축하고 시뮬레이션을 통해 하류부 기존 도심지 침수영향을 분석하였다. 구축한 모델은 개발지구, 하류부 기존 도심지, 우수를 방류하는 하천유역 전체를 포함하였다. 연구결과: 대규모 개발행위 시 연구대상지역에서 공동주택 블록별로 최소 우수저류조 용량을 산정하여 시뮬레이션한 결과, 하류부 기존 도심지에서 방재성능목표강우량 1시간 기준 4,893m3, 2시간 기준 25,815m3, 3시간 기준 55,528m3의 침수량을 저감할 수 있을 것으로 나타났다. 결론:본 연구와 같이 하류부 기존 도심지까지 고려한 대규모 침수 시뮬레이션을 실시하였을 때 하류부 도심지 침수가 크게 증가하는 것을 알 수 있고, 개발전 공동주택 단지 블록별로 필요한 우수저류조 용량을 계획하고 개발시 비용 지원 등으로 우수저류조 건설을 권장한다면 하류부 기존 도심지 홍수 부담을 감소시킬 수 있다.

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Red Light Violations Analysis Using Statistical Methods - in case of Chungbuk 4-Legged Signalized Intersections - (통계적기법을 이용한 신호위반 분석(충청북도 4지 신호교차로를 중심으로))

  • Park, Jeong-Soon;Kim, Yun-Hwan;Jung, Woo-Teak
    • International Journal of Highway Engineering
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    • v.12 no.3
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    • pp.49-57
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    • 2010
  • This case study investigated red light violations at CBD, suburban and rural signalized intersections in chungbuk. The goal of this study is to understanding the collection between red light violations and various driver, vehicles and environmental factors. This study uses descriptive statistics analysis and logistics analysis with SPSS 12.0 software. The major results of this study are as follows. First, red light violations occurred at rural and CBD more than suburban area. Second, About 81.1% of the violators were traveling at or below the posted speed limit. Moreover, 77.3% of the violations occurred within 2 seconds after the on set of red light. Finally, the logistic regression model, which is statistically significant(chisquare=0.000, McFadde=0.265)was developed, and includes the local type(CBD/suburban/rural), violators' gender, season, vehicle type, time of day, vehicle speed as the independent variables. In this study did not find significant relationship between red light violators' age and their driving behavior approaching signalized intersections.

Demographic Change and Easing Shrinkage in Urban Centers of Metropolises (대도시 도심부의 인구변동과 쇠퇴 양상의 변화 - 도심쇠퇴의 이완과 도심회귀 증후의 검토 -)

  • Yim, Seokhoi
    • Journal of the Korean association of regional geographers
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    • v.22 no.3
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    • pp.599-614
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    • 2016
  • Urban centers have been recognized as problem regions so far. However, urban centers of metropolises take a new aspect in recent years as much as the negative influence of gentrification becomes a social issue. This paper analyzes the declining trend of urban centers in six metropolises - Seoul, Busan, Daegu, Incheon, Gwangju and Daejun from 1995 to 2010. As results of analysis, it is identified that the urban centers' shrinkage got moderated recently in the metropolises, even though their resurgence is not evident. Especially it is difficult to say longer that Jongro-Gu and Jung-Gu of Seoul are declining urban centers. Easing shrinkage is most outstanding in Jung-Gu, Daegu among local metropolises. Nevertheless, a serious obstacle such as high price of housing is in the process of obvious resurgence of urban center differently from the United States, Europe and Japan.

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Boundary, Functions and Internal Structure of CBD in Seoul (서울 도심의 경계, 기능 및 내부구조)

  • Joo, Kyung-Sik;Seo, Min-Cheol
    • Journal of the Korean Geographical Society
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    • v.33 no.1
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    • pp.41-56
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    • 1998
  • The main purpose of this study is to delimit the boundary of central business district and to describe the internal structure of CBD in Seoul. To delimit the CBD boundary, we used the locational matrices of main CBD functions, which were ofganized through fieldworks. CBD functions are classified into 20 categories. They are retail sales, corporation managements, administration managements, business, and unclassified services, customer(personal)services, and manufacturings. The core area of CBD in Seoul is at Chongro and Chung Gu area that shows the locational consistency comparing to 1970s. Although the boundary is slightly expanded into west, south and east, the extent of horizontal expansion in CBD can be negligible comparing to the remarkable growth of Korean economy after 1970s. The reasons why CBD showed little expansion can be found out from the process of restructuring in Seoul metropolitan area, such as the growth of subcenters, decentralization of central functions, construction of highrise buildings, redevelopment in central area and so on. Internal structure of Seoul's CBD shows 5 specialized functional subdistricts. They are CBD core area, subdistrict of department and office functions, retail sales, customer services and light manufacturings.

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Incident Detection for Urban Arterial Road by Adopting Car Navigation Data (차량 궤적 데이터를 활용한 도심부 간선도로의 돌발상황 검지)

  • Kim, Tae-Uk;Bae, Sang-Hoon;Jung, Heejin
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.13 no.4
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    • pp.1-11
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    • 2014
  • Traffic congestion cost is more likely to occur in the inner city than interregional road, and it accounts for about 63.39% of the whole. Therefore, it is important to mitigate traffic congestion of the inner city. Traffic congestion in the urban could be divided into Recurrent congestion and Non-recurrent congestion. Quick and accurate detection of Non-recurrent congestion is also important in order to relieve traffic congestion. The existing studies about incident detection have been variously conducted, however it was limited to Uninterrupted Traffic Flow Facilities such as freeway. Moreover study of incident detection on the interrupted Traffic Flow Facilities is still inadequate due to complex geometric structure such as traffic signals and intersections. Therefore, in this study, incident detection model was constructed using by Artificial Neural Network to aim at urban arterial road that is interrupted traffic flow facility. In the result of the reliability assessment, the detection rate were 46.15% and false alarm rate were 25.00%. These results have a meaning as a result of the initial study aimed at interrupted traffic flow. Furthermore, it demonstrates the possibility that Non-recurrent congestion can be detected by using car navigation data such as car navigator system device.

도심 역세권 개발의 해법 복합 개발로 도시에 활력을 찾는다

  • Park, Jun-Hyeong
    • 주택과사람들
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    • no.6 s.217
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    • pp.20-23
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    • 2008
  • 수도권 주택 부족 문제를 도심 재개발을 통해 해결해야 한다는 목소리에 힘이 실리고 있다. 최근에는 도심 역세권 개발 시 복합 용도 개발 방식을 검토해야 한다는 의견이 국토해양부에서 제기되기도 했다. 도심 복합 개발을 통해 도시에 새로운 활력을 불어넣고 있는 해외의 모범 사례들을 살펴보자.

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Estimating Development Density Constrained by Traffic Congestion in the Downtown, Seoul (교통혼잡을 고려한 서울 도심부 개발가능밀도 추정)

  • Hwang, Kee Yeon;Shin, Sang Young;Kang, Jun Mo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.26 no.1D
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    • pp.49-58
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    • 2006
  • The purpose of this study is to develop transportation-sensitive land use densities in a metropolitan context. It analyses traffic impacts according to 20 different development density scenarios in the downtown Seoul, and estimates the density ceiling. The results identify that the transportation-wise sustainable density in the downtown can be extended up to the FAR level of 460% with an option of 2,000 won congestion charge levied on the downtown area. It also finds that the region-wide sustainability measured by congestion level can be improving as the level of congestion charge increases. Without the congestion charge, however, the density ceiling slides down to 430%. It is recommended that, in order to bring in higher density developments in the region, transportation demand management (TDM) measures are indispensible.

Analysis of Flood Reduction in Downstream Urban Areas for the Storage in Apartment Complex (하류 도심지 침수저감 분석을 통한 공동주택 단지의 우수저류조 계획)

  • Jae-Do Choi;Hyoung-Chul Lim
    • Journal of the Society of Disaster Information
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    • v.19 no.3
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    • pp.698-709
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    • 2023
  • Purpose: In this paper, we would like to analyze the growth rate of existing urban immersion in the downstream during large-scale urban development and the degree of reduction in existing urban immersion in the downstream when small excellent storage facilities are planned in apartment complexes. Method: A large-scale sewage model was built using the SWMM model of the U.S. Environmental Protection Agency, and the impact of flooding in existing downtown areas downstream was analyzed through simulation. The built model included the development zone, the existing downtown area downstream, and the entire river basin that discharges rainwater. Result: As a result of calculating and simulating the minimum excellent reservoir capacity for each apartment block in the study target area, it was found that the immersion of 4,893㎥ based on one hour, 25,815㎥ based on two hours, and 55,528㎥ based on three hours in the downstream urban area. Conclusion: As in this study, large-scale flooding simulation considering the existing downtown area in the downstream shows a significant increase in flooding in the downstream, and if excellent reservoir capacity is planned for each apartment block before development and the construction of excellent reservoirs is recommended.