• 제목/요약/키워드: Tunnel monitoring

검색결과 357건 처리시간 0.021초

응력이 공내 변형률에 미치는 영향 (The Effect of Stress on Borehole Deformability)

  • 윤건신
    • 한국지반공학회지:지반
    • /
    • 제14권5호
    • /
    • pp.219-234
    • /
    • 1998
  • 초기수평 응력상태를 모사하여 응력이 변형계수에 미치는 영향을 검토 하기 위하여 암석 시료에 대하여 공내재하 변형 실내시험을 했다. 실험은 수평 응력의 크기, 응력비, 측정지점을 변화 시켜서 변형계수를 측정하였다. 측정결과 응력의 크기가 증가함에 따라 변형계수가 증가하며 최대 최소응력비가 커짐에 따라 변형계수는 최소응력 방향에서는 증가하고, 최대응력 방향에서는 감소하는 경향을 보였다. 이는 측정 위치에서 접선음력의 크기 변화에 따른 것으로 초기응력의 크기, 방향 및 내압의 크기에 따라 응력이 압축, 인장 또는 압축-인장상태로 바뀌기 때문이다. 따라서 변형 계수 측정시 이들의 영향을 분석한 후 결과치를 해석하여야 한다. 이와 같은 해석은 공내재하 변형 측정 결과 뿐만 아니라 내압이 있는 가스 저장 또는 압축터널 설계 및 터널 계측 결과 해석에도 적용 되어야 한다.

  • PDF

Investigation on spanwise coherence of buffeting forces acting on bridges with bluff body decks

  • Zhou, Qi;Zhu, Ledong;Zhao, Chuangliang;Ren, Pengjie
    • Wind and Structures
    • /
    • 제30권2호
    • /
    • pp.181-198
    • /
    • 2020
  • In the traditional buffeting response analysis method, the spanwise incomplete correlation of buffeting forces is always assumed to be same as that of the incident wind turbulence and the action of the signature turbulence is ignored. In this paper, three typical bridge decks usually adopted in the real bridge engineering, a single flat box deck, a central slotted box deck and a two-separated paralleled box deck, were employed as the investigated objects. The wind induced pressure on these bridge decks were measured via a series of wind tunnel pressure tests of the sectional models. The influences of the wind speed in the tests, the angle of attack, the turbulence intensity and the characteristic distance were taken into account and discussed. The spanwise root coherence of buffeting forces was also compared with that of the incidence turbulence. The signature turbulence effect on the spanwise root coherence function was decomposed and explained by a new empirical method with a double-variable model. Finally, the formula of a sum of rational fractions that accounted for the signature turbulence effect was proposed in order to fit the results of the spanwise root coherence function. The results show that, the spanwise root coherence of the drag force agrees with that of incidence turbulence in some range of the reduced frequency but disagree in the mostly reduced frequency. The spanwise root coherence of the lift force and the torsional moment is much larger than that of the incidence turbulence. The influences of the wind speed and the angle of attack are slight, and they can be ignored in the wind tunnel test. The spanwise coherence function often involves several narrow peaks due to the signature turbulence effect in the high reduced frequency zone. The spanwise coherence function is related to the spanwise separation distance and the spanwise integral length scales, and the signature turbulence effect is related to the deck-width-related reduced frequency.

A Kalman filter based algorithm for wind load estimation on high-rise buildings

  • Zhi, Lun-hai;Yu, Pan;Tu, Jian-wei;Chen, Bo;Li, Yong-gui
    • Structural Engineering and Mechanics
    • /
    • 제64권4호
    • /
    • pp.449-459
    • /
    • 2017
  • High-rise buildings are generally sensitive to strong winds. The evaluation of wind loads for the structural design, structural health monitoring (SHM), and vibration control of high-rise buildings is of primary importance. Nevertheless, it is difficult or even infeasible to measure the wind loads on an existing building directly. In this regard, a new inverse method for evaluating wind loads on high-rise buildings is developed in this study based on a discrete-time Kalman filter. The unknown structural responses are identified in conjunction with the wind loads on the basis of limited structural response measurements. The algorithm is applicable for estimating wind loads using different types of wind-induced response. The performance of the method is comprehensively investigated based on wind tunnel testing results of two high-rise buildings with typical external shapes. The stability of the proposed algorithm is evaluated. Furthermore, the effects of crucial factors such as cross-section shapes of building, the wind-induced response type, errors of structural modal parameters, covariance matrix of noise, noise levels in the response measurements and number of vibration modes on the identification accuracy are examined through a detailed parametric study. The research outputs of the proposed study will provide valuable information to enhance our understanding of the effects of wind on high-rise buildings and improve codes of practice.

피부관통시 통증을 최소화하는 일회용 자동 모세혈액 채취기구 (Single use Automatic Lancet to Minimize Pain During Skin Puncture)

  • 김현식;김경아;전명희;김태임;정용현;이태수;차은종
    • 대한의용생체공학회:의공학회지
    • /
    • 제23권4호
    • /
    • pp.323-327
    • /
    • 2002
  • 만성 당뇨병 질환자는 일 2회 이상 모세혈액을 채취하여 혈당검사를 행함으로써 자신의 혈당 수준을 지속적으로 관리해야 한다. 모세혈액 채취를 위하여 채혈침으로 빈번하게 피부관통을 행해야 하므로 채혈시 뒤따르는 통증은 대단히 중요한 문제이다. 본 연구에서는 기존의 수동 및 자동 채혈침들이 가지는 통증 유발요인들을 모두 최소화하는 기전을 고안하였다. 경사각을 이루는 taper형 스프링, 채혈침을 일관성있는 방향으로 이동시키는 guiding tunnel, 현존하는 기술로 제조할 수 있는 가장 가는 30G 채혈침을 적용함으로써 통증을 최소화 하였다. 침의 침투 깊이를 피하 2mm로 제한하여 통증을 최소화하는 동시에 출혈량을 감소시켰다. 또한 환자 간 감염 및 이차 감염을 방지하기 위하여 사용이 용이한 재사용 방지기전을 설치하였다. 당뇨질환자. 일반인 및 간호실습생들을 대상으로 한 임상실험 결과 통증 및 사용편의성과 안전성 모두 우수한 것으로 입증되었다. 일회 채혈로 모두 성공적인 혈당검사가 가능하였으며 단순한 구조의 소형화 ·일체화된 일회용 자동채혈침의 형태로 구현하였다 본 연구결과는 혈담검사를 위한 모세혈액 채취시 최적의 방법을 제공하였으며 실용성 또한 우수한 것으로 판단되었다.

EPB tunneling in cohesionless soils: A study on Tabriz Metro settlements

  • Rezaei, Amir H.;Shirzehhagh, Mojtaba;Golpasand, Mohammad R. Baghban
    • Geomechanics and Engineering
    • /
    • 제19권2호
    • /
    • pp.153-165
    • /
    • 2019
  • A case study of monitoring and analysis of surface settlement induced by tunneling of Tabriz metro line 2 (TML2) is presented in this paper. The TML2 single tunnel has been excavated using earth pressure balanced TBM with a cutting-wheel diameter of 9.49 m since 2015. Presented measurements of surface settlements, were collected during the construction of western part of the project (between west depot and S02 station) where the tunnel was being excavated in sand and silt, below the water table and at an average axis depth of about 16 m. Settlement readings were back-analyzed using Gaussian formula, both in longitudinal and transversal directions, in order to estimate volume loss and settlement trough width factor. In addition to settlements, face support and tail grouting pressures were monitored, providing a comprehensive description of the EPB performance. Using the gap model, volume loss prediction was carried out. Also, COB empirical method for determination of the face pressure was employed in order to compare with field monitored data. Likewise, FE simulation was used in various sections employing the code Simulia ABAQUS, to investigate the efficiency of numerical modelling for the estimating of the tunneling induced-surface settlements under such a geotechnical condition. In this regard, the main aspects of a mechanized excavation were simulated. For the studied sections, numerical simulation is not capable of reproducing the high values of in-situ-measured surface settlements, applying Mohr-Coulomb constitutive law for soil. Based on results, for the mentioned case study, the range of estimated volume loss mostly varies from 0.2% to 0.7%, having an average value of 0.45%.

Field test and research on shield cutting pile penetrating cement soil single pile composite foundation

  • Ma, Shi-ju;Li, Ming-yu;Guo, Yuan-cheng;Safaei, Babak
    • Geomechanics and Engineering
    • /
    • 제23권6호
    • /
    • pp.513-521
    • /
    • 2020
  • In this paper, due to the need for cutting cement-soil group pile composite foundation under the 7-story masonry structure of Zhenghe District and the shield tunnel of Zhengzhou Metro Line 5, a field test was conducted to directly cut cement-soil single pile composite foundation with diameter Ф=500 mm. Research results showed that the load transfer mechanism of composite foundation was not changed before and after shield tunnel cut the pile, and pile body and the soil between piles was still responsible for overburden load. The construction disturbance of shield cutting pile is a complicated mechanical process. The load carried by the original pile body was affected by the disturbance effect of pile cutting construction. Also, the fraction of the load carried by the original pile body was transferred to the soil between the piles and therefore, the bearing capacity of composite foundation was not decreased. Only the fractions of the load carried by pile and the soil between piles were distributed. On-site monitoring results showed that the settlement of pressure-bearing plates produced during shield cutting stage accounted for about 7% of total settlement. After the completion of pile cutting, the settlements of bearing plates generated by shield machine during residual pile composite foundation stage and shield machine tail were far away from residual pile composite foundation stage which accounted for about 15% and 74% of total settlement, respectively. In order to reduce the impact of shield cutting pile construction on the settlement of upper composite foundation, it was recommended to take measures such as optimization of shield construction parameters, radial grouting reinforcement and "clay shock" grouting within the disturbance range of shield cutting pile construction. Before pile cutting, the pile-soil stress ratio n of composite foundation was 2.437. After the shield cut pile is completed, the soil around the lining structure is gradually consolidated and reshaped, and residual pile composite foundation reaches a new state of force balance. This was because the condensation of grouting layer could increase the resistance of remaining pile end and friction resistance of the side of the pile.

TBM 디스크커터의 실시간 하중 계측을 위한 연구현황 (Research Trend of Real-Time Measurement for Acting Force of TBM Disc Cutter)

  • 기경민;김정주;정호영
    • 터널과지하공간
    • /
    • 제33권4호
    • /
    • pp.244-254
    • /
    • 2023
  • TBM에 장착되어 암석을 절삭하는 디스크커터에는 암반을 굴착하는 과정에서 세 방향의 절삭력이 작용한다. 일반적으로 디스크커터의 절삭력은 굴착대상암반의 강도에 따라 증가하는 것으로 알려져 있고, 디스크커터가 여러 원인에 의해 정상적으로 회전이 이루어지지 않는 경우에는 회전력이 급격하게 증가할 수 있다. 따라서 굴착 도중 디스크커터에 작용하는 절삭력은 굴착의 대상이 되는 암반의 상태나 디스크커터의 절삭상태를 나타내는 중요한 정보가 될 수 있다. 이러한 이유로 해외를 중심으로 디스크커터의 작용력을 실시간으로 측정하기 위한 기술의 개발이 이루어지고 있으며, 본 연구에서는 현재까지 해외의 문헌을 통해 보고되고 있는 TBM 디스크커터의 하중계측에 관한 연구현황에 대하여 소개하고자 하였다. 향후 국내에서도 유사한 기술의 개발이 이루어지는 경우에 유용한 참고자료가 될 수 있을 것으로 판단된다.

대심도 복층터널 초기화재 진압을 위한 자동모니터 소화설비의 적용성 연구 (The study on application of automatic monitor system for initial fire suppression in double-deck tunnel)

  • 유용호;박상헌;한상주;박진욱
    • 한국터널지하공간학회 논문집
    • /
    • 제18권5호
    • /
    • pp.419-429
    • /
    • 2016
  • 국내 도심지 지상교통의 대규모 혼잡으로 발생되는 경제적인 손실을 해소하기 위해 지하 40 m 이상의 대심도 지하도로가 계획되고 있으며, 안전한 장대 지하도로 구축을 위해 국내 지침에 의거하여 1등급 방재시설이 적용되어야 한다. 이러한 방재시설의 일환으로 화재발생시 터널내의 화재확산 방지 및 구조물 붕괴 방지 역할을 하는 물분무 설비가 있으나, 현실적으로 많은 기능적, 기술적인 측면에서 문제점이 발생되어 개선방안이 필요한 실정이다. 국내외적으로 화재초기진압을 위한 자동모니터 소화설비가 다양한 분야에 적용되고 있으며, 최근에는 도로/철도터널분야에 적용을 위한 이론적/실험적인 연구를 통한 개발 및 상용화가 추진되고 있다. 이러한 자동화 소화설비의 우수한 화재진압성능을 바탕으로 현재 적용되고 있는 물분무 시스템에 대한 기술적/경제적 비교분석을 실시하였으며, 화재진압성능 뿐만 아니라 경제적인 측면에서도 우수하다는 분석이 도출되었다. 하지만 본 시스템의 상용화, 제품화를 위해서는 국내 터널의 특성을 반영한 다양한 연구개발이 필요하며, 본 시스템에 따른 제도적인 개선을 통하여 활성화 된다면 독자적인 원천기술개발을 통한 선진화 방재기술 강국으로 도약하기를 기대한다.

대체적 감가상각기법을 활용한 도로자산의 가치 평가 : 국도 1호선을 중심으로 (Evaluation of Road Asset Value using Alternative Depreciation methods : Focusing on National Highway No.1)

  • 도명식;박성환;최승현
    • 한국도로학회논문집
    • /
    • 제19권3호
    • /
    • pp.19-30
    • /
    • 2017
  • PURPOSES : This study proposes the road asset valuation approach using alternative depreciation methods. It has become necessary to have asset management system according to the adoption of accrual basis accounting for governmental financial reporting and the amendment of the road act. Therefore, it is very important to analyze the effect of depreciation methods on road asset value as a basic research for road asset management system. METHODS : The Ministry of Strategy and Finance (MOSF) has mainly performed road asset valuation based on Write down Replacement Cost and Straight Line depreciation method. This study suggests some appropriate asset valuation methods for road assets through case analysis using three depreciation methods: Consumption-based depreciation method, Condition-based depreciation method, and Straight Line depreciation method. A road asset valuation data of national highway route 1 (year 2014) is used to analyze the effect of three depreciation methods on the road asset value. Road assets include land and structures (pavement, bridge, and tunnel). This study mainly focuses on structures such as bridges and tunnels, because according to governmental accounting standards, land and road pavement assets do not depreciate. RESULTS : The main results of this study are as follows. Firstly, overall asset value of national highway route 1 was estimated at 6.97 trillion KRW when MOSF's method (straight-line depreciation method) is applied. Secondly, asset value was estimated at 4.85 trillion KRW on application of consumption-based depreciation method. Thirdly, asset value was estimated at 4.37 trillion KRW when condition-based depreciation method is applied. Therefore, either consumption-based or condition-based depreciation methods would be more appropriate than straight-line depreciation method if we can use the condition data of road assets including land that are available in real time. CONCLUSIONS : Since road assets such as pavements, bridges, and tunnels have various patterns of deterioration and condition monitoring period, it is necessary to consider a specific valuation method according to the condition of each road asset. Firstly, even though road pavements do not depreciate, asset valuation through condition-based depreciation method would be more appropriate when requirements for application of non-depreciation approach are not satisfied. Since bridge and tunnel facilities show various patterns of deterioration and condition monitoring period by type and condition level, consumption-based depreciation method based on deterioration model would be appropriate. Therefore, it is necessary to have a reasonable asset management system to apply condition-based depreciation method and a periodic condition investigation to manage road assets well.

기존 지하철 터널 운영 중 대피선 건설 시공 리스크 분석 (Risk analysis for sidetrack construction during subway tunnel operation)

  • 전종훈;정희영;고성일;윤희택;이나현;최항석
    • 한국터널지하공간학회 논문집
    • /
    • 제22권4호
    • /
    • pp.401-417
    • /
    • 2020
  • 증가하는 도심지 전철 급행화의 요구에 따라, 완행과 급행철도를 동시에 운영할 수 있도록 하는 부본선의 건설이 필요하다. 그러나 기존 대피선 설치 방안은 열차의 운행을 차단한다는 점에서 긴 공사기간이 필요할 뿐만 아니라 막대한 경제적 손실을 발생시키는 문제점이 있다. 이를 개선하고자 기존 지하철 터널 운영 중이라는 특수한 상황에서의 대피선 설치 방안 연구가 필요하며 대피선 건설방안 적용에 따른 시공 리스크 분석 또한 요구된다. 따라서 본 논문에서는 지하철 4호선 과천정부청사역을 가상의 대피선 건설 대상역으로 선정하여 최적의 대피선 건설방안을 도출하였으며, 기존 지하철 터널운영 중 대피선 건설 예비 설계단계 시 발생 가능한 리스크 사건에 대한 리스크 식별 및 대응계획 수립, 리스크 평가, 리스크 통제 및 관리의 일련의 리스크 관리 프로세스를 수행하였다. 총 8가지의 발생 가능한 리스크 사건과 리스크 저감 대책을 선정하였으며 5단계의 리스크 사건 발생확률 및 영향도 기준을 활용한 리스크 평가 매트릭스를 구축하여 리스크 및 잔류 리스크 평가를 수행하였다. 리스크 평가 결과를 바탕으로 각 리스크 사건의 평가 점수와 리스크 저감 대책공법의 저감효과를 확인하였다.