• Title/Summary/Keyword: 운영 중 터널

Search Result 119, Processing Time 0.022 seconds

Water Supply and Reliability Increment by Dams Connection (댐간 연결을 통한 공급량 증대 및 신뢰도 향상)

  • Lee, Gwang-Man;Lee, Seung-Yoon;Lee, Eul-Rae
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2010.05a
    • /
    • pp.317-321
    • /
    • 2010
  • 대부분의 유역에는 다수의 댐이 건설되어 운영되고 있는 것이 일반적이며, 이들 댐 군의 효과를 극대화하기 위하여 연계최적운영 기법의 적용이 일반화 되고 있다. 2000년 수립된 국가장기수 자원계획에서도 이미 4대강 수계의 댐 군의 연계운영 효과로 2011년까지 6억 $m^3$를 반영하고 있다. 또한 프론티어 연구개발사업을 통해 순수한 시스템적인 개선으로 30억 $m^3$의 용수를 추가적으로 확보하는 방안이 오래전부터 진행되어 오고 있다. 이와 같은 방법론의 핵심은 수문기상의 예측정도를 높이고 장단기 강우-유출을 사전 혹은 실시간으로 예측하여 수자원시설물의 기능을 최대화시키는 전략으로 현재와 같이 댐과 같은 수리구조물을 신규로 건설하는데 어려움이 많은 경우 유용한 대안이 될 수 있다. 그러나 수리구조물의 운영에 필요한 많은 변수 중에서 가장 예측이 어려우며 또한 효과를 평가할 수 있는 가장 핵심적인 요소인 수문사상에 대한 정보의 신뢰도에는 한계가 있다. 다시 말하면 현재와 같은 상황에서 수자원시설물의 시스템적인 개선을 통한 편익의 신뢰도가 구조물적인 효과의 신뢰도를 보장하기 어렵다는 것이다. 결국 주어진 여건에서 수자원이용의 효과를 극대화시키기 위해서는 구조적 대안과 시스템적인 기법을 같이 적용할 수밖에 없으며 상호 보완적으로 활용하는 것이 가장 합리적일 것이다. 이와 같은 측면에서 구조적인 댐간 연결은 일정범위까지는 확실한 효과를 담보할 수 있으며 이 또한 시스템적으로도 유용할 것이다. 본 연구에서는 이와 같은 개념을 안동댐과 임하댐이 도수터널로 연결될 경우로 가정하여 예상되는 효과에 대하여 평가하였다. 평가방법은 일간연계모의모형과 일간도수연결모의모형을 개발하여 적용하였으며 무효방류량의 감소정도와 용수공급 증가량과 공급의 신뢰도, 부족량의 크기 등을 비교 평가하였다.

  • PDF

A Study on Linkage of Heterogeneous Alarm Broadcasting System for Fire Situation Propagation (화재상황 전파를 위한 이기종 경보방송시스템 연계 방안 연구)

  • Lee, Seung-Hyung;Ahn, Byung-Dug;Choi, Jong-In;Min, Se-Hong
    • Proceedings of the Korean Society of Broadcast Engineers Conference
    • /
    • 2019.06a
    • /
    • pp.192-193
    • /
    • 2019
  • 최근 우리나라는 대형 산불 화재, 지진 및 복합 재난등 많은 위험에 노출이 되어 있는 상태이다. 대형 초고층 화재 및 산불 발생시 국민들에게 상황을 전달할 수 있는 시스템이 미비하여 신속하고 효과적으로 상황을 전파하고자, 현재 운영중에 있는 재난경보방송시스템과 화재플랫폼을 연계하여 상황을 신속하게 전파하고자 연구하였다. 본 논문에서는 초고층 빌딩화재와 재래시장화재 그리고 터널화재와 산불화재 가능성이 혼재되어 있는 테스트베드를 선정하여 화재 유형별로 전파되는 장소에 맞춰서 대비요령과 안내방송을 전파하는 것을 중점적으로 연구하였다.

  • PDF

Stability Assessment of Underground Limestone Mine Openings by Stability Graph Method (Stability graph method에 의한 석회석 지하채굴 공동의 안정성 평가)

  • Sunwoo Choon;Jung Yong-Bok
    • Tunnel and Underground Space
    • /
    • v.15 no.5 s.58
    • /
    • pp.369-377
    • /
    • 2005
  • The stability of underground openings is a major concern for the safety and productivity of mining operations. Rock mass classification methods provide the basis of many empirical design methods as well as a basis for numerical analysis. Of the many factors which influence the stability of openings, the span of the opening for a given rock mass condition provides an important parameter of design. In this paper, the critical span curves proposed by Lang, the Mathews stability graph method and the modified critical span curve suggested by the authors have been assessed. The modified critical span curve was proposed by using Mathews stability graph method. The modified critical span curve by the author have been used to assess the stability of underground openings in several limestone mines.

Investigation into influence of sound absorption block on interior noise of high speed train in tunnel (터널 내부 도상 블록형 흡음재의 고속철도차량 내부 소음에 미치는 영향에 대한 고찰)

  • Lee, Sang-heon;Cheong, Cheolung;Lee, Song-June;Kim, Jae-Hwan;Son, Dong-Gi;Sim, Gyu-Cheol
    • The Journal of the Acoustical Society of Korea
    • /
    • v.37 no.4
    • /
    • pp.223-231
    • /
    • 2018
  • Recently, due to various environmental problems, blast tracks in tunnel are replaced with concrete tracks, but they have more adverse effects on noise than blast tracks so that additional noise measures are needed. Among these measures, sound-absorbing blocks start to be used due to its easy and quick installation. However, the performance of sound absorption blocks need to be verified under real environmental and operational conditions. In this paper, interior noise levels in KTX train cruising in Dalseong tunnel are measured before and after the installation of sound-absorbing blocks and the measured data are analyzed and compared. Additionally, noise reduction are estimated by modeling the high speed train, the tunnel and absorption blocks. Measurement devices and methods are used according to ISO 3381 and the equivalent sound pressure levels during the cruising time inside the tunnel are computed. In addition to overall SPLs(Sound Pressure Levels), 1/3-octave-band levels are also analyzed to account for the frequency characteristics of sound absorption and equipment noise in a cabin. In addition, to consider the effects of train cruising speeds and environmental conditions on the measurements, the measured data are corrected by using those measured during the train-passing through the tunnels located before and behind the Dalseong tunnel. Analysis of measured results showed that the maximum noise reduction of 6.8 dB (A) can be achieved for the local region where the sound-absorbing blocks are installed. Finally, through the comparison of predicted 1/3-octave band SPLs for the KTX interior noise with the measurements, the understanding of noise reduction mechanism due to sound-absorbing blocks is enhanced.

The Evaluation of GHG Emissions in Railroad Construction Sector (철도건설의 온실가스 배출량 산정평가)

  • Lee, Jae-Young;Jung, Woo-Sung;Hwang, In-Hwan;Kim, Yong-Ki
    • Journal of the Korean Society for Railway
    • /
    • v.14 no.3
    • /
    • pp.271-275
    • /
    • 2011
  • According to governmental policies for green growth, the increase in the traffic volume of railroad is a representative method to reduce total greenhouse gas (GHG) emitted from transport. Comprehensive assessment for the GHG emission of railroad has been studied to compare the difference of transport modes just in the operating step excluded the construction step. The purpose of this study was to evaluate GHG emissions in railroad construction sector. The targets were some construction works for civil, track, building, and electric system in A line. The GHG emission source of constructing railroad infrastructure was mainly the energy consumption of heavy equipments. As a result, the civil construction sector showed more than 96% of total GHG emissions and its specific GHG emission was 2.191 ton $CO_2e/m$. Also, the specific GHG emissions of civil construction works were of the order: earthworks > tunnels > bridges > station. In future, it will be required to calculate the overall GHG emission of railroad through life cycle approaches including operation, maintenance and disposal step.

Risk Assessment with the Development of CAES (Compressed Air Energy Storage) Underground Storage Cavern (CAES(Compresses Air Energy Storage) 지하 저장 공동 개발에 따른 리스크 사정)

  • Yoon, Yong-Kyun;Seo, Saem-Mul;Choi, Byung-Hee
    • Tunnel and Underground Space
    • /
    • v.23 no.4
    • /
    • pp.319-325
    • /
    • 2013
  • The objective of this study is to assess risks which might occur in connection with the storage of the highly compressed air in underground opening. Risk factors were selected throughout literature survey and analysis for the characteristic of CAES. Large risk factors were categorized in three components; planning and design phase, construction phase, and operation & maintenance phases. Large category was composed of 8 medium risk groups and 24 sub-risks. AHP technique was applied in order to analyze the questionnaires answered by experts and high-risk factors were selected by evaluating the relative importance of risks. AHP analysis showed that the operation & maintenance phases are the highest risk group among three components of large category and the highest risk group of eight medium risk groups is risk associated with the quality and safety. Risk having the highest risk level in 24 sub-risks is evaluated to be a failure of tightness security of inner containment storing compressed air.

Analysis of In-situ Temperature Measurement at Gonjiam Cold Storage Cavern (곤지암 지하암반 저장고 온도계측 결과 분석)

  • Lee Gyu-Sang;Lee Chung-In
    • Tunnel and Underground Space
    • /
    • v.15 no.3 s.56
    • /
    • pp.169-176
    • /
    • 2005
  • The decreasing pattern of underground temperature measured at 'Gonjiam cold storage cavern' during 7 years which was the first commercial scale underground food storage cavern in Korea was analyzed. The variation of energy consumption was discussed by comparing the consumed energy at the initial operation stage with that at later stage, when the temperature distribution reached a stabilized condition. The point to be considered at the design stage was also discussed by comparing the required refrigerator capacity at the initial operation stage with that at later stage. The extra energy to freeze the groundwater contained in pore space was discussed by analyzing the changing pattern of the rock temperature. The variation of measured rock temperature was compared with the estimated temperature using a numerical code, FLAC. The accuracy of the numerical estimation was discussed by comparing the heat flux measured by the operation time of the refrigerator with that estimated numerically.

Numerical Study of Structural Behavior of Underground Silo Structures for Low-and-Intermediate-level Radioactive Waste Disposal Facility (중저준위 방폐물 처분 사일로 구조물의 구조거동 수치해석 연구)

  • Kim, Sun-Hoon;Kim, Kwang-Jin
    • Journal of the Computational Structural Engineering Institute of Korea
    • /
    • v.35 no.3
    • /
    • pp.183-190
    • /
    • 2022
  • The construction of an underground silo structure was the first stage of erecting the Gyeongju low-and-intermediate-level radioactive waste disposal facility. The facility, completed in 2014, has a scale of 100 000 drums and is currently in operation. The underground silo structure, 25 and 50 m in diameter and height, respectively, consists of cylindrical (for storing waste packages) and dome parts. The dome is divided into lower (connected to the operation tunnel) and upper parts. The wall of the underground silo structure is an approximately 1-m-thick reinforced concrete liner. In this study, finite element analysis was performed for each phase of the construction sequence and operation of the underground silo structure. Two-dimensional axial symmetric finite element analysis was implemented using the SMAP-3D program. Three-dimensional finite element analysis was also performed to examine the reliability of the two-dimensional axial symmetric finite element model. The structural behavior of the underground silo structure was predicted, and its structural safety was examined.

Study on Influencing Factors of Traffic Accidents in Urban Tunnel Using Quantification Theory (In Busan Metropolitan City) (수량화 이론을 이용한 도시부 터널 내 교통사고 영향요인에 관한 연구 - 부산광역시를 중심으로 -)

  • Lim, Chang Sik;Choi, Yang Won
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.35 no.1
    • /
    • pp.173-185
    • /
    • 2015
  • This study aims to investigate the characteristics and types of car accidents and establish a prediction model by analyzing 456 car accidents having occurred in the 11 tunnels in Busan, through statistical analysis techniques. The results of this study can be summarized as below. As a result of analyzing the characteristics of car accidents, it was found that 64.9% of all the car accidents took place in the tunnels between 08:00 and 18:00, which was higher than 45.8 to 46.1% of the car accidents in common roads. As a result of analyzing the types of car accidents, the car-to-car accident type was the majority, and the sole-car accident type in the tunnels was relatively high, compared to that in common roads. Besides, people at the age between 21 and 40 were most involved in car accidents, and in the vehicle type of the first party to car accidents, trucks showed a high proportion, and in the cloud cover, rainy days or cloudy days showed a high proportion unlike clear days. As a result of analyzing the principal components of car accident influence factors, it was found that the first principal components were road, tunnel structure and traffic flow-related factors, the second principal components lighting facility and road structure-related factors, the third principal factors stand-by and lighting facility-related factors, the fourth principal components human and time series-related factors, the fifth principal components human-related factors, the sixth principal components vehicle and traffic flow-related factors, and the seventh principal components meteorological factors. As a result of classifying car accident spots, there were 5 optimized groups classified, and as a result of analyzing each group based on Quantification Theory Type I, it was found that the first group showed low explanation power for the prediction model, while the fourth group showed a middle explanation power and the second, third and fifth groups showed high explanation power for the prediction model. Out of all the items(principal components) over 0.2(a weak correlation) in the partial correlation coefficient absolute value of the prediction model, this study analyzed variables including road environment variables. As a result, main examination items were summarized as proper traffic flow processing, cross-section composition(the width of a road), tunnel structure(the length of a tunnel), the lineal of a road, ventilation facilities and lighting facilities.

Drainage system for leakage treatment of cement concrete structure in underground (콘크리트 지하구조물 누수 처리를 위한 유도배수시스템)

  • Kim, Dong-Gyou
    • Journal of Korean Tunnelling and Underground Space Association
    • /
    • v.21 no.4
    • /
    • pp.573-585
    • /
    • 2019
  • The objective of this study is to propose the drainage system that has been improved the workability, waterproofing and drainage performance to treat the leakage from the cement concrete structures in underground. It is improved that the pipe for conveying ground leak in the existing drainage system had the problem in workability and waterproof. The drainage systems with the improved pipe for conveying ground leak were constructed in conventional concrete lining tunnels to evaluate the workability, waterproofing and drainage. The waterproof and the drainage performance of the drainage system was evaluated by injecting 1,000 ml of red water in the back of the drainage system at 3 weeks, 6 weeks, 9 weeks, 11 weeks, 14 weeks, 17 weeks and 23 weeks. During 6 months of field performance test, the average daily temperature of the tunnel site was measured from $-12.4^{\circ}C$ to $19.7^{\circ}C$. The daily minimum temperature was $-17.2^{\circ}C$ and the daily maximum temperature was $26.7^{\circ}C$. There was no problem in waterproof and drainage performance on the pipe for conveying ground leak and the drainage system during 6 months for field performance test. It is concluded that the improved drainage system can be applied to various cement concrete underground structures where leakage occurs, and has little seasonal effect.