• 제목/요약/키워드: face pressure

검색결과 499건 처리시간 0.032초

Experimental and numerical study on the stability of slurry shield tunneling in circular-gravel layer with different cover-span ratios

  • Liu, Xinrong;Liu, Dongshuang;Xiong, Fei;Han, Yafeng;Liu, Ronghan;Meng, Qingjun;Zhong, Zuliang;Chen, Qiang;Weng, Chengxian;Liu, Wenwu
    • Geomechanics and Engineering
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    • 제28권3호
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    • pp.265-281
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    • 2022
  • A set of slurry shield test system capable of cutter cutting and slurry automatic circulation is used to investigate the deformation characteristics, the evolution characteristics of support resistance and the distribution and evolution process of earth pressure during excavating and collapsing of slurry shield tunneling in circular-gravel layer. The influence of cover-span ratio on surface subsidence, support resistance and failure mode of excavation face is also discussed. Three-dimensional numerical calculations are performed to verify the reliability of the test results. The results show that, with the decrease of the supporting force of the excavation face, the surface subsidence goes through four stages: insensitivity, slow growth, rapid growth and stability. The influence of shield excavation on the axial earth pressure of the front soil is greater than that of the vertical earth pressure. When the support resistance of the excavation face decreases to the critical value, the soil in front of the excavation face collapses. The shape of the collapse is similar to that of a bucket. The ultimate support resistance increase with the increase of the cover-span ratio, however, the angle between the bottom of the collapsed body and the direction of the tunnel excavation axis when the excavation face is damaged increase first and then becomes stable. The surface settlement value and the range of settlement trough decrease with the increase of cover-span ratio. The numerical results are basically consistent with the model test results.

Three-dimensional limit analysis of seismic stability of tunnel faces with quasi-static method

  • Zhang, B.;Wang, X.;Zhang, J.S.;Meng, F.
    • Geomechanics and Engineering
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    • 제13권2호
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    • pp.301-318
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    • 2017
  • Based on the existing research results, a three-dimensional failure mechanism of tunnel face was constructed. The dynamic seismic effect was taken into account on the basis of quasi-static method, and the nonlinear Mohr-Coulomb failure criterion was introduced into the limit analysis by using the tangent technique. The collapse pressure along with the failure scope of tunnel face was obtained through nonlinear limit analysis. Results show that nonlinear coefficient and initial cohesion have a significant impact on the collapse pressure and failure zone. However, horizontal seismic coefficient and vertical seismic proportional coefficient merely affect the collapse pressure and the location of failure surface. And their influences on the volume and height of failure mechanism are not obvious. By virtue of reliability theory, the influences of horizontal and vertical seismic forces on supporting pressure were discussed. Meanwhile, safety factors and supporting pressures with respect to 3 different safety levels are also obtained, which may provide references to seismic design of tunnels.

굴진면 천단 및 수평보강에 따른 굴진면 전후의 종방향 아칭 특성 (Longitudinal Arching Characteristics Around the Face of a Soil-Tunnel with Crown and Face-Reinforcement)

  • 권오엽;최용기;이상덕;김영근
    • 한국지반공학회논문집
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    • 제20권9호
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    • pp.133-144
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    • 2004
  • NATM터널 시공 중 강관이나 FRP관을 이용하여 터널 막장을 선행보강하는 방법은 RPUM이나 UAM 등으로 알려져 있으며, 얕은 터널 및 연약지반내 터널 굴착 시 굴진면의 안정성을 확보해주거나 지반 침하를 감소시켜주는 역할을 한다. 특히 굴진지반이 연약하여 자립이 어려운 경우 최근에는 굴진면 천단뿐 아니라 굴진면 수평보강을 실시하여 굴착에 따른 터널안정을 확보하게 된다. 일반적으로 터널굴착이 진행됨에 따라 굴진면 전후에는 종방향 아칭현상이 발생하며 이는 NATM 터널 지보재 작용원리의 근간이 된다. 따라서 터널 천단과 굴진면 수평보강을 실시하는 경우도 굴진에 따른 종방향 아칭의 관점에서 해석되어야 하나 이에 대한 연구는 현재까지 거의 없는 실정이다. 본 연구에서는 토사터널 굴진면에 RPUM(천단보강)이나 굴진면 수평보강이 실시된 경우, 종방향 아칭특성을 2차원 실내시험을 통해 살펴보았다. 실험결과, 연직토압의 변화를 토대로 한 종방향아칭 영향범위는 무보강의 경우 굴진면 전${\cdot}$후방으로 각각 2.5D와 1.5D(D는 터널직경), 천단보강 및 수평보강의 경우 2.0D와 1.5D, 천단과 수평보강이 동시에 적용된 경우는 2.0D와 1.0D까지로 측정되어 굴진면 보강에 따라 아칭의 영향범위가 감소함을 알 수 있었다. 반면 연직토압의 변화량은 굴진면 보강에 따라 증가하는 것으로 나타나 역학적으로 천단 및 수평보강재가 터널의 안정에 중요한 역할을 하고 있는 것으로 판단된다.

코닝 조합이 물결 프로파일이 가공된 미케니컬 페이스 실의 작동 성능에 미치는 영향 (Effect of Coning Combinations on Working Performances of Wavy Mechanical Face Seal)

  • 김동욱;진성식;김준호;김경웅
    • Tribology and Lubricants
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    • 제28권2호
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    • pp.70-80
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    • 2012
  • Non-contact type mechanical face seals installed in mechanical systems prevent leakage of working fluid using thin working fluid film between stator and rotor. For that purpose, various kinds of surface profiles, grooves and conings have been applied on seal surfaces of stator and rotor to generate hydrodynamic and hydrostatic pressure. The thickness distribution of working fluid film is one of important factors which affect the working performances of mechanical face seal, and it is strongly affected by the surface height profiles of stator and rotor. Therefore, appropriate design of surface height profiles of stator and rotor is necessary to optimize the working performances and life of mechanical face seal. In this study, numerical analysis using finite volume method was conducted to estimate the working performances of wavy mechanical face seals which have 36 coning combinations. As results, minimum thickness of working fluid film, leakage volume of working fluid and friction torque in static equilibrium condition of mechanical face seal, and stiffness of working fluid film were obtained. The results show that the working performances of mechanical face seal were affected by the coning combinations which can change the thickness distribution of working fluid film and pressure distribution in sealing region of mechanical face seal.

Blow-out pressure of tunnels excavated in Hoek-Brown rock masses

  • Alireza Seghateh Mojtahedi;Meysam Imani;Ahmad Fahimifar
    • Geomechanics and Engineering
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    • 제37권4호
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    • pp.323-339
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    • 2024
  • If the pressure exerted on the face of a tunnel excavated by TBM exceeds a threshold, it leads to failure of the soil or rock masses ahead of the tunnel face, which results in heaving the ground surface. In the current research, the upper bound method of limit analysis was employed to calculate the blow-out pressure of tunnels excavated in rock masses obeying the Hoek-Brown nonlinear criterion. The results of the proposed method were compared with three-dimensional finite element models, as well as the available methods in the literature. The results show that when σci, mi, and GSI increase, the blow-out pressure increases as well. By doubling the tunnel diameter, the blow-out pressure reduces up to 54.6%. Also, by doubling the height of the tunnel cover and the surcharge pressure exerted on the ground surface above the tunnel, the blow-out pressure increased up to 74.9% and 5.4%, respectively. With 35% increase in the unit weight of the rock mass surrounding the tunnel, the blow-out pressure increases in the range of 14.8% to 19.6%. The results of the present study were provided in simple design graphs that can easily be used in practical applications in order to obtain the blow-out pressure.

Visualization analysis of the progressive failure mechanism of tunnel face in transparent clay

  • Lei, Huayang;Zhai, Saibei;Liu, Yingnan;Jia, Rui
    • Geomechanics and Engineering
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    • 제29권2호
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    • pp.193-205
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    • 2022
  • The face stability of shield tunnelling is the most important control index for safety risk management. Based on the reliability of the transparent clay (TC) model test, a series of TC model tests under different buried depth were conducted to investigate the progressive failure mechanism of tunnel face. The support pressure was divided into the rapid descent stage, the slow descent stage and the basically stable stage with company of the local failure and integral failure in the internal of the soil during the failure process. The relationship between the support pressure and the soil movement characteristics of each failure stage was defined. The failure occurred from the soil in front of the tunnel face and propagated as the slip zone and the loose zone. The fitted formulas were proposed for the calculation of the failure process. The failure mode in clay was specified as the basin shape with an inverted trapezoid shape for shallow buried and appeared as the basin shape with a teardrop-like shape in deep case. The implications of these findings could help in the safety risk management of the underground construction.

금속 섬유 필터층을 이용한 미세 분진 집진 성능 관찰 (Examination of Dust Trapping Mechanism in a Metal Fiber Filter-bed)

  • 이경미;조영민
    • 한국대기환경학회지
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    • 제20권3호
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    • pp.361-369
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    • 2004
  • A metal fiber bed has seldom been applied to the practical filtration process despite its excellent mechanical and chemical stability. The filter-bed used in this work was highly porous with open structure, of which apparent porosity was 80 ∼ 90%. Although pressure loss across the filter-bed was very low, separation efficiency was found to be quite high. This paper focuses on the basic filtration mechanisms of a metal filter-bed and a thin ceramic filter from fly ash for reference. The experimental parameters were face velocity, dust loading and porosity of filter-bed. Pressure drop increased with increasing face velocity and dust feeding load for both filters. It also showed that dust particles deposited in the deep flow path, finally resulting in clogging the pore channels. It thereby indicates that the dominating mechanism of the metal filter-bed would be depth filtration. Meanwhile, the thin fly ash composite filters trapped the aerated dust mainly on the surface of the filter medium, so that the instantaneously formed dust layer might cause a steep increase of pressure drop across the filtration system.

정면 밀링 가공에서의 비절삭 저항 모델링 및 절삭력 예측 (Modeling of the Specific Cutting Pressure and Prediction of the Cutting Forces in Face Milling)

  • 김국원;주정훈;이우영;최성주
    • 한국공작기계학회논문집
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    • 제17권5호
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    • pp.116-122
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    • 2008
  • In order to establish automation or optimization of the machining process, predictions of the forces in machining are often needed. A new model fur farces in milling with the experimental model based on the specific cutting pressure and the Oxley's predictive machining theory has been developed and is presented in this paper. The specific cutting pressure is calculated according to the definition of the 3 dimensional cutting forces suggested by Oxley and some preliminary milling experiments. Using the model, the average cutting forces and force variation against cutter rotation in milling can be predicted. Milling experimental tests are conducted to verify the model and the predictive results agree well with the experimental results.

각질층 환경변화에 따른 얼굴과 하박내측 피부의 탄력 특성 비교연구 (Study on Skin Elasticity Property between Face and Forearm according to the Environmental Change of Stratum Corneum)

  • 장민열
    • 대한화장품학회지
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    • 제44권4호
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    • pp.455-463
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    • 2018
  • 피부의 탄성은 주로 콜라겐, 탄력섬유 등이 풍부한 진피의 영향을 받는다. 하지만, 피부의 가장 바깥층인 각질층의 변화가 피부의 기계적인 특성에 어떠한 영향을 미치는지에 대해선 아직 명확하게 밝혀지지 않고 있다. 이에 본 연구에서는 새롭게 디자인한 시험방법을 통해 피부 깊이별 탄성 특성과 수화과정을 통한 각질층 변화가 피부 탄성 특성에 어떻게 영향을 주는지를 알아보았다. 또한 이 방법을 이용해 얼굴피부와 하박내측 피부의 특성을 비교 평가하였다. 25-40세 연령의 건강한 성인 10명을 대상으로, 피부 깊이별 탄성 특성을 연구하기 위해 $Cutometer^{(R)}$의 음압을 다양하게 설정하여 얼굴피부와 하박내측 피부의 탄성 특성을 측정하여 비교 평가하였다. 음압은 100, 200, 300, 450 mbar로 구분하여 측정하였다. 또한 충분한 수화과정을 통해 각질층의 변화를 유도하고, 다양한 음압 조건에서 피부 탄성 특성을 측정하였다. 그 결과, 음압 조건을 달리함에 따라 피부 깊이에 따른 탄성 특성 측정이 가능함을 확인하였다. 그리고 하박내측 피부의 R7 값은 모든 음압조건에서 얼굴피부보다 통계적으로 유의하게 높았다(p < 0.05). 또한 수화과정에 의한 각질층의 변화는 피부탄성 특성에 영향을 줄 수 있음을 확인하였다. 특히 얼굴피부의 R7 값은 300 mbar 음압조건에서 수화전 상태의 피부에 비해 통계적으로 유의하게 변화하였다(p < 0.05). 그리고 전체적으로 얼굴피부가 하박내측 피부보다 수화과정에 더 크게 영향을 받고 있음을 알 수 있었다. 이러한 결과는 다양한 음압조건과 피부 수화 과정을 활용한다면, 각질층 및 표피층의 변화를 고려한 피부탄력특성을 평가할 수 있는 유용한 시험법이 될 것으로 사료된다.

3차원 유한요소해석을 통한 shield TBM 터널 근접시공에 의한 인접 단독말뚝의 거동에 대한 연구 (A study on the behaviour of pre-existing single piles to adjacent shield TBM tunnelling from three-dimensional finite element analyses)

  • 전영진;전승찬;전상준;이철주
    • 한국터널지하공간학회 논문집
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    • 제22권1호
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    • pp.23-46
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    • 2020
  • 본 연구에서는 터널 근접 시공으로 인한 기 존재 단독말뚝의 공학적 거동을 파악하기 위하여 터널로부터 말뚝선단의 이격거리와 막장압의 변화를 고려한 3차원 유한요소해석을 수행하였다. 수치해석에서는 터널 막장압을 고려하여 말뚝의 거동을 분석하였으며, 터널굴착으로 유발되는 지반침하, 말뚝두부침하, 말뚝축력 및 말뚝-지반 사이의 경계면에서 발생하는 전단응력을 고찰하였다. 말뚝이 터널 크라운(crown) 바로 상부에 위치하고 말뚝선단까지의 수직 이격거리가 0.25D (여기서, D는 터널직경)인 경우 초기 응력의 50%에 해당하는 막장압을 적용할 경우 25%의 막장압을 적용한 것과 비교한 결과 말뚝두부의 침하가 약 38% 감소하였다. 또한, 막장압의 크기가 작을수록 지반침하, 말뚝의 축력 및 말뚝-지반 사이에서 발생하는 전단응력이 증가하며, 말뚝이 터널굴착 영향권 밖에 존재할 경우 말뚝에는 압축력 형태의 축력이 발생하였다. 따라서 막장압의 크기 및 터널-말뚝선단의 상대위치는 지반 침하와 말뚝 침하에 큰 영향을 미치는 것으로 분석되었다. 본 연구에서 수행된 연구결과의 경우 기존에 보고된 연구결과를 바탕으로 비교분석을 실시하였으며, 터널굴착으로 인한 말뚝의 거동을 심도 있게 분석하였다.