• 제목/요약/키워드: High-depth excavation

검색결과 66건 처리시간 0.023초

수리지질학적 과학수사 기법에 의한 도로 터널이 지하수 변화에 미치는 영향 (Influence of Road Tunnel on Groundwater Change Determined Using Forensic Hydrogeological Technique)

  • 윤설민;함세영
    • 한국환경과학회지
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    • 제33권4호
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    • pp.269-277
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    • 2024
  • Scientific forensic techniques are used to verify environmental impact of groundwater pollution, surface water pollution, air pollution, noise, and vibration according to residents' complaints in connection with construction and civil engineering works. In this study, we investigated the contamination of groundwater and the lowering of the groundwater level in an area surrounding a tunnel excavation site for the Andong-Yeongdeok national road, using a forensic hydrogeological technique. We reviewed the groundwater level and water quality of well GW1 in the area surrounding the tunnel excavation site as well as tunnel construction information and then we analyzed the correlations among the obtained data. Before tunnel excavation, the water level of well GW1 was lower than the tunnel elevation. Considering the relationship between the precipitation, tunnel discharge, tunnel depth, and groundwater level of well GW1, the groundwater flowed from the tunnel to well GW1. Moreover, the tunnel discharge and groundwater levels were not related to each other. The pH of well GW1 was 8.4 before tunnel excavation. During excavation, the pH declined to 8.1-8.2 at the beginning, and increased to 8.8 at the end of the excavation. The fluorine concentration in well GW1 was 2.49 mg/L, 1.91-3.22 mg/L, and 1.7-2.67 mg/L, respectively, before, during, and after the excavation. The sulfate ion concentration was very high, over 2,000 mg/L, before and during the excavation; after the excavation, it was between 200 and 323 mg/L. Turbidity was 1.47, 10.5, and 4.51 NTU before, during, and after tunnel excavation, respectively. Therefore, the excavation of this tunnel is not related to the groundwater quality of well GW1.

터널굴착용 와이어쏘 암반절삭 모델 구축 및 절삭성능 향상 연구 (Study on a Wire Saw Rock Cutting Model for Tunnel Excavation and Cutting Performance Improvement)

  • 이진호;안성권;이경찬;방춘석;사공명
    • 대한기계학회논문집A
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    • 제39권10호
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    • pp.1069-1077
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    • 2015
  • 발파를 이용한 터널굴착시, 와이어쏘를 이용하여 심빼기 부분 외곽에 불연속면을 발생시켜 발파진동을 차단함으로써 소음 및 진동을 저감시키고자 하는 방법은 타 방법에 비해 시공이 간편하고 경제적일 것으로 예상된다. 본 논문에서는 터널굴착용 와이어쏘의 절삭 메커니즘을 규명하기 위하여 시간에 따른 절삭 깊이 변화와 절삭 중 암석 내부의 와이어쏘 곡선 형태를 파악할 수 있는 절삭 모델을 구축하고 검증하였다. 구축된 모델을 이용한 시뮬레이션을 통해 터널굴착용 와이어쏘 절삭의 특징을 살펴보고, 와이어쏘 인장력, 와이어쏘 속도, 피드 속도, 천공 깊이 및 천공 직경과 같은 주요 조건들이 절삭 성능에 미치는 영향을 검토하였으며, 이러한 검토 결과를 바탕으로 절삭 성능을 높이기 위한 방안을 제시하였다.

각관 추진 굴착시 궤도노반의 침하경향 실험분석 (Test and analysis of settlement pattern of trackbed during pipe roof excavation)

  • 정관동;엄기영;최찬용;조수익;황인환
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2010년도 춘계학술대회 논문집
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    • pp.895-902
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    • 2010
  • The method in a bid to make better use of limited urban space amidst increasingly expanding urban area have been attempted in various ways. Efficient using underground space is one of the examples. The pipe roof and excavation for underground crossing implemented in this study was the part of evaluation of such attempt. However, the pipe roof method for underground crossing may cause the ground surface to be uplifted or settled down, having effect on structure above the ground. Thus in this study, a laboratory model test designed to evaluate the effect on surface during implementing pipe roof and excavation was carried out. The ground displacement during pipe roof advancing and excavation is usually occurred in a radial shape but as the study focused on trackbed, the evaluation included ground settlement only. Thus, appropriately-scaled model was selected considering domestic geological characteristics and operation characteristics of traditional and high-speed rail trains and the qualitative evaluation of displacement was carried out with a certain ground loss depending on excavation after categorizing trackbed settlement pattern depending on depth of top soil.

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연마재 워터젯 변수에 따른 현무암 및 화강암 절삭성능 비교분석 (Comparative analysis of cutting performance for basalt and granite according to abrasive waterjet parameters)

  • 박준식;차현종;조선아;정주환;오태민
    • 한국터널지하공간학회 논문집
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    • 제24권5호
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    • pp.395-409
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    • 2022
  • 기존 암반 굴착공법이 갖는 한계점을 극복하기 위해 최근 연마재 워터젯 공법을 활용하는 연구가 활발히 진행되고 있다. 연마재 워터젯 암반굴착 공법은 암반에 연속적인 자유면을 형성하여 발파 시 발생하는 진동을 저감하고 굴착효율을 증진시키는 효과가 있다. 그러나 연마재 워터젯 절삭성능은 암반의 물리적 성질에 따라 변화한다. 따라서, 다양한 물리적 성질을 가진 암반이 혼재하는 굴착현장 특성상 효과적인 워터젯 활용을 위해서는 다양한 암종의 절삭성능을 분석하는 것이 필수적이다. 본 연구에서는 현무암과 화강암을 대상으로 수압, 이격거리, 이송속도를 변화시키며 절삭실험을 수행하고 결과를 분석하였다. 실험결과, 현무암은 화강암보다 평균적으로 약 41% 깊게 절삭되고, 절삭 폭은 약 18.5% 좁게 형성되었다. 본 연구결과는 향후 현무암과 같은 강도가 낮고 공극이 큰 암반 굴착현장에서 연마재 워터젯을 적용할 시 유용한 기초자료로 활용될 것으로 기대된다.

고강도 강관파이프 스트러트 흙막이공법 사례연구 (Case Study of Braced Wall System with High-strength Steel Pipe Strut)

  • 신재민;박현영;주진규;신윤석;김광희
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2012년도 춘계 학술논문 발표대회
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    • pp.19-20
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    • 2012
  • According to develop urban area, the depth and floor area of basement tend to become deeper and larger. Excavation work for basement floor work is very important because its cost take 20% of total construction cost. Therefore, many studies of developing retaining wall system have performed for feasibility and safety in deep excavation work. In this study, new supporting system used high-strength pipe for retaining wall is introduced to reduce the construction cost and improve the safety and constructability by analyzing case study.

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연약 파쇄 지반내 터널의 굴착.보강 설계 및 안정성 분석 (Excavation Support Design and Stability Analysis of Shallow Tunnel in Heavily Fractured Rock Mass)

  • 신희순;신중호;박찬;한공창;최영학;최용기
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 봄 학술발표회 논문집
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    • pp.87-92
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    • 2000
  • In excavation of tunnels especially located in shallow depth, it is not rare to meet geological change in excavation progress worse than expected in the initial design stage. This paper present a case study on the re-design of excavation and support system of a shallow tunnel under construction where it meets the unexpected bad geological condition during excavation. The detailed geological investigation shows that the rock mass is heavily weathered and fractured with RMR value less than 20. Considering this geological condition, the design concept is focused on the reinforcement of the ground preceding the excavation of tunnel. Two design patterns, LW-grouting & forepoling with pilot tunnelling method and the steel pipe reinforced grouting method, are suggested. Numerical analysis by FLAC shows that these two patterns give the tunnel and roof ground stable in excavation process while the original design causes severe failure zone around the tunnel and floor heaving. In point of the mechanical stability and the degree of construction, the steel pipe reinforced grouting technique proved to be good for the reinforcement of heavily fractured rock mass in tunnelling. This assessment and design process would be a guide in the construction of tunnels in heavily weathered and fractured rock mass situation.

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A parametric study of settlement and load transfer mechanism of piled raft due to adjacent excavation using 3D finite element analysis

  • Karira, Hemu;Kumar, Aneel;Hussain Ali, Tauha;Mangnejo, Dildar Ali;Mangi, Naeem
    • Geomechanics and Engineering
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    • 제30권2호
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    • pp.169-185
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    • 2022
  • The urbanization and increasing rate of population demands effective means of transportation system (basement and tunnels) as well as high-rise building (resting on piled foundation) for accommodation. Therefore, it unavoidable to construct basements (i.e., excavation) nearby piled foundation. Since the basement excavation inevitably induces soil movement and stress changes in the ground, it may cause differential settlements to nearby piled raft foundation. To understand settlement and load transfer mechanism in the piled raft due to excavation-induced stress release, numerical parametric studies are carried out in this study. The effects of excavation depths (i.e., formation level) relative to piled raft were investigated by simulating the excavation near the pile shaft (i.e., He/Lp=0.67), next to (He/Lp=1.00) and below the pile toe (He/Lp=1.33). In addition, effects of sand density and raft fixity condition were investigated. The computed results have revealed that the induced settlement, tilting, pile lateral movement and load transfer mechanism in the piled raft depends upon the embedded depth of the diaphragm wall. Additional settlement of the piled raft due to excavation can be account for apparent loss of load carrying capacity of the piled raft (ALPC). The highest apparent loss of piled raft capacity ALPC (on the account of induced piled raft settlement) of 50% was calculated in in case of He/Lp = 1.33. Furthermore, the induced settlement decreased with increasing the relative density from 30% to 90%. On the contrary, the tilting of the raft increases in denser ground. The larger bending moment and lateral force was induced at the piled heads in fixed and pinned raft condition.

한국의 대심도 암반 굴착 위험도 산정을 위한 인자 분석 (Analysis of Geological Factors for Risk Assessment in Deep Rock Excavation in South Korea)

  • 임명혁;이하나
    • 터널과지하공간
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    • 제31권4호
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    • pp.211-220
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    • 2021
  • 한국의 대심도 (>40m 깊이) 터널 공사 시에 터널 붕괴 사고가 종종 일어나고 있으며, 도심지 지하공간의 얕은 심도에 인공적으로 조성된 지반에는 자연 공동뿐만 아니라 상수도관, 하수도관, 전력구 및 지하철 건설로 인한 인위적인 공동들이 복잡하게 분포되어 있다. 대심도 터널 굴착을 위해서는 이러한 다공질의 특성을 보이는 다양한 지반의 특성 및 지질구조가 지반의 안전에 미치는 영향을 이해하여야 한다. 본 연구는 국내외 사례를 바탕으로 한국의 대심도 굴착에서 암반의 위험 산정을 위한 위험 인자를 분석하였다. 연구결과, 대심도 터널 굴착시 지반의 안정성에 영향을 주는 총 7개의 카테고리들과 총 38개의 인자들이 도출되었다. 가중치가 상대적으로 높은 인자들은 단층 및 단층점토, 차응력, 암종, 지하수 및 머드 유입, 암석의 일축압축강도, 터널 단면의 크기, 터널 상부 암반의 두께, 카르스트 및 계곡지형, 습곡, 석회암의 협재, 지하수위 변동, 터널 심도, 암맥, RQD, 절리 특성, 이방성, 암반파열(rockburst) 등으로 나타났다.

초고압수에 의한 화강석절삭에 대한 연구 (A study on the slot cutting in granite by high speed water jet)

  • 선우춘;최병희
    • 터널과지하공간
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    • 제4권2호
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    • pp.92-101
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    • 1994
  • Water jet has been employed in extraacton of minerals for many years but the applications of low pressure jent s ar emodfined to some fields. With increasing strength of equipment it is possible to consider the use of high speed water jets for cutting hard rock. The high speed water jet technology is applied to various engineering fiels such as precessing rocks, quarrying rocks, mechanical fracturing as wel as rock excavation under the sea. For slot cutting in rocks with high speed water jets it is necessary to establish the empirical formula for estiamation of the cutting depth. The cutting depth is influenced by cutting parameters such as driving pressure, traverse speed, standoff distance, and shape and diameter of nozzel. Tests were carried out with a variety of cutting parameters on three types of granite. Nozzle pressures ranged from 1,200 to 2,800 bar, traverse speeds from 0.45 to 10.38 cm/min, standoff distances from 4.5 to 13.5 mm, and three types of nozzle diameter were used.

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Investigation of effects of twin excavations effects on stability of a 20-storey building in sand: 3D finite element approach

  • Hemu Karira;Dildar Ali Mangnejo;Aneel Kumar;Tauha Hussain Ali;Syed Naveed Raza Shah
    • Geomechanics and Engineering
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    • 제32권4호
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    • pp.427-443
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    • 2023
  • Across the globe, rapid urbanization demands the construction of basements for car parking and sub way station within the vicinity of high-rise buildings supported on piled raft foundations. As a consequence, ground movements caused by such excavations could interfere with the serviceability of the building and the piled raft as well. Hence, the prediction of the building responses to the adjacent excavations is of utmost importance. This study used three-dimensional numerical modelling to capture the effects of twin excavations (final depth of each excavation, He=24 m) on a 20-storey building resting on (4×4) piled raft. Because the considered structure, pile foundation, and soil deposit are three-dimensional in nature, the adopted three-dimensional numerical modelling can provide a more realistic simulation to capture responses of the system. The hypoplastic constitutive model was used to capture soil behaviour. The concrete damaged plasticity (CDP) model was used to capture the cracking behaviour in the concrete beams, columns and piles. The computed results revealed that the first excavation- induced substantial differential settlement (i.e., tilting) in the adjacent high-rise building while second excavation caused the building tilt back with smaller rate. As a result, the building remains tilted towards the first excavation with final value of tilting of 0.28%. Consequently, the most severe tensile cracking damage at the bottom of two middle columns. At the end of twin excavations, the building load resisted by the raft reduced to half of that the load before the excavations. The reduced load transferred to the piles resulting in increment of the axial load along the entire length of piles.