• 제목/요약/키워드: elastic rock

검색결과 342건 처리시간 0.024초

Characterization of the brittleness of hard rock at different temperatures using uniaxial compression tests

  • Chen, Guoqing;Li, Tianbin;Wang, Wei;Guo, Fan;Yin, Hongyu
    • Geomechanics and Engineering
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    • 제13권1호
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    • pp.63-77
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    • 2017
  • The failure mechanism of a deep hard rock tunnel under high geostress and high geothermalactivity is extremely complex. Uniaxial compression tests of granite at different temperatures were conducted. The complete stress-strain curves, mechanical parameters and macroscopic failure types of the rock were analyzed in detail. The brittleness index, which represents the possibility of a severe brittleness hazard, is proposed in this paperby comparing the peak stress and the expansion stress. The results show that the temperature range from 20 to $60^{\circ}C$ is able to aggravate the brittle failure of hard rock based on the brittleness index. The closure of internal micro cracks by thermal stress can improve the strength of hard rock and the storage capacity of elastic strain energy. The failure mode ofthe samples changes from shear failure to tensile failure as the temperature increases. In conclusion, the brittle failure mechanism of hard rock under the action of thermal coupling is revealed, and the analysis result offers significant guidance for deep buried tunnels at high temperatures and under high geostress.

Rock physics modeling in sand reservoir through well log analysis, Krishna-Godavari basin, India

  • Singha, Dip Kumar;Chatterjee, Rima
    • Geomechanics and Engineering
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    • 제13권1호
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    • pp.99-117
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    • 2017
  • Rock physics modeling of sandstone reservoir from gas fields of Krishna-Godavari basin represents the link between reservoir parameters and seismic properties. The rock physics diagnostic models such as contact cement, constant cement and friable sand are chosen to characterize reservoir sands of two wells in this basin. Cementation is affected by the grain sorting and cement coating on the surface of the grain. The models show that the reservoir sands in two wells under examination have varying cementation from 2 to more than 6%. Distinct and separate velocity-porosity and elastic moduli-porosity trends are observed for reservoir zones of two wells. A methodology is adopted for generation of Rock Physics Template (RPT) based on fluid replacement modeling for Raghavapuram Shale and Gollapalli Sandstones of Early Cretaceous. The ratio of P-wave velocity to S-wave velocity (Vp/Vs) and P-impedance template, generated for this above formations is able to detect shale, brine sand and gas sand with varying water saturation and porosity from wells in the Endamuru and Suryaraopeta gas fields having same shallow marine depositional characters. This RPT predicted detection of water and gas sands are matched well with conventional neutron-density cross plot analysis.

Capacity-spectrum push-over analysis of rock-lining interaction model for seismic evaluation of tunnels

  • Sina Majidian;Serkan Tapkin;Emre Tercan
    • Earthquakes and Structures
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    • 제26권5호
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    • pp.327-336
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    • 2024
  • Evaluation of tunnel performance in seismic-prone areas demands efficient means of estimating performance at different hazard levels. The present study introduces an innovative push-over analysis approach which employs the standard earthquake spectrum to simulate the performance of a tunnel. The numerical simulation has taken into account the lining and surrounding rock to calculate the rock-tunnel interaction subjected to a static push-over displacement regime. Elastic perfectly plastic models for the lining and hardening strain rock medium were used to portray the development of plastic hinges, nonlinear deformation, and performance of the tunnel structure. Separately using a computational algorithm, the non-linear response spectrum was approximated from the average shear strain of the rock model. A NATM tunnel in Turkey was chosen for parametric study. A seismic performance curve and two performance thresholds are introduced that are based on the proposed nonlinear seismic static loading approach and the formation of plastic hinges. The tunnel model was also subjected to a harmonic excitation with a smooth response spectrum and different amplitudes in the fully-dynamic phase to assess the accuracy of the approach. The parametric study investigated the effects of the lining stiffness and capacity and soil stiffness on the seismic performance of the tunnel.

암반에 전달된 밀장전 발파입력의 획률론적 예측 II - 최대압력 도달시간 예측을 중심으로 - (Probabilistic estimation of fully coupled blasting pressure transmitted to rock mass II - Estimation of rise time -)

  • 박봉기;이인모;김상균;이상돈;조국환
    • 한국터널지하공간학회 논문집
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    • 제6권1호
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    • pp.25-40
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    • 2004
  • 밀장전한 암반발파공에서 화약폭발로 전파되는 초음속 충격파는 암반중에 전파되면서 차자로 저음속 충격파, 소성파, 탄성파로 변화된다. 이 연구는 발파압력파의 최대압력 도달시간 산정에 중점을 두었고 연계된 논문 I (the companion paper)에서는 최대 발파업력 산정에 중점을 두었다. 이 연구에서 최대압력 도달시간을 화약밀도, 단열지수, 폭광파속도, 감쇠지수, 동적항복강도, 소성파속도, 암반밀도, 탄성파속도, Hugoniot 상수의 함수식으로 유도하였다 최대합력 도달시간에 대한 매개변수분석 결과 암반특성치가 화약특성치보다 더 크게 영향을 미쳤다. 최대압력 도달시간의 확률분포는 화약과 암반 특성치의 확률분포로부터 Rosenblueth 확률모델로 조합하여 산출되었다. 화약과 암반특성의 불확정성이 발파진동의 불확정성에 미치는 영향을 수치해석으로 분석하였다. 불확정성 분석결괴 화약특성보다 암반특성의 불확정성이 발파진동에 더 크게 영향을 미쳤다. 수치해석 분석결괴 최대 발파양력과 최대양력 도달시간의 바인 하중재하율이 발파진동에 큰 영향을 미쳤다. 또한 화약특성보다 암반특성이 하중재하율에 더 크게 영향을 미쳤다.

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유한차분해석과 개별요소해석을 이용한 암반에 근입된 현장타설말뚝의 선단지지력 연구 (A Study on the Ultimate Point Resistance of Rock Socketed Drilled Shafts Using FLAC3D and UDEC)

  • 이재환;조후연;유광호;정상섬
    • 한국지반공학회논문집
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    • 제28권1호
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    • pp.29-39
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    • 2012
  • 본 연구에서는 암반근입 현장타설말뚝의 선단지지력에 영향을 미치는 주요 영향인자들과 이들 영향인자에 따른 선단지지력의 변화특성을 수치해석을 통하여 분석하였다. 수치해석은 일반적으로 널리 사용되는 연속체해석 중 유한차분해석(FDM)과 암반에 존재하는 불연속면(절리, 단층 등)의 특성을 고려할 수 있는 불연속체해석 중 개별요소해석(DEM)을 병행함으로서 해석의 정확도를 높였다. 그 결과, 암반에 근입된 현장타설말뚝의 선단지지력($q_{max}$)은 암반의 탄성계수($E_m$), 불연속면의 간격($S_j$)에 비례하여 증가하였으며, 말뚝의 직경(D)에는 반비례하는 것을 확인할 수 있었다. 또한 불연속면의 경사($i_j$)에 대해서는 불연속면의 경사($i_j$)가 $0^{\circ}$ < $i_j$ < $60^{\circ}$일 때의 선단지지력은 그 외 경사의 선단지지력에 비해 최대 약 50%까지 감소하였으며 이는 말뚝으로부터 전해진 하중에 의하여 말뚝하부 암반 자체 보다 암반의 불연속면에서 먼저 전단파괴가 발생하였기 때문인 것으로 판단된다. 불연속면의 경사($i_j$)가 불연속면의 내부마찰각(${\phi}_j$)과 근접할 때 선단지지력이 최소치에 가까운 것으로 나타났으며, 따라서 불연속면의 경사가 일반적인 암반 및 암반 불연속면 내부마찰각의 범위인 $20^{\circ}{\sim}40^{\circ}$에 존재할 때는 선단지지력의 산정 시 반드시 불연속면 경사의 영향을 고려해야하는 것으로 나타났다.

동적 초미소 경도법에 의한 심도별 대전화강암 내 광물들의 역학적 특성 (Mechanical Properties of Minerals in Daejeon Granite According to Depths by Dynamic Ultra-micro Hardness)

  • 최정해;신주호;장형두;강성승
    • 터널과지하공간
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    • 제27권3호
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    • pp.172-184
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    • 2017
  • 동적 초미소 경도법의 압입시험, 하중-비하중 시험, 그리고 반복시험을 이용하여 심도별 대전화강암 내 광물들의 경도와 역학적 특성을 살펴보았다. 시험 결과 세 개 구간(Group-1, -2, -3)으로 광물 집단의 분류가 가능하였다. Martens 경도값은 세 가지 시험법 모두에서 41 m와 223 m 심도에 따른 차이가 크지 않았다. 그럼에도 불구하고, 그 크기는 반복시험<하중-비하중 시험<압입시험 순으로 나타났다. 광물 집단별 평균 Martens 경도, 탄성계수, indentation work 등을 고려해 볼때, 그들의 경계는 비교적 뚜렷하게 나타났다. 결론적으로 동적 초미소 경도법의 세 가지 형태 시험법을 이용함으로써 광물들에 대한 비교적 정확한 경도값을 얻을 수 있었다. 또한 하중-비하중 시험과 반복시험으로부터는 광물들의 탄성계수와 광물들의 탄성적-소성적 성질 특성 파악도 가능하였다.

Stiffness effect of testing machine indenter on energy evolution of rock under uniaxial compression

  • Tan, Yunliang;Ma, Qing;Wang, Cunwen;Liu, Xuesheng
    • Geomechanics and Engineering
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    • 제30권4호
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    • pp.345-352
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    • 2022
  • When rock burst occurs, the damaged coal, rock and other fragments can be ejected to the roadway at a speed of up to 10 m/s. It is extremely harmful to personnel and mining equipment, and seriously affects the mining activities. In order to study the energy evolution characteristics, especially kinetic energy, in the process of rock mass failure, this paper first analyzes the energy changes of the rock in different stages under uniaxial compression. The formula of the kinetic energy of rock sample considering the energy from the indenter of the testing machine is obtained. Then, the uniaxial compression tests with different stiffness ratios of the indenter and rock sample are simulated by numerical simulation. The kinetic energy Ud, elastic strain energy Ue, friction energy Uf, total input energy U and surface energy Uθ of crack cracking are analyzed. The results show that: The stiffness ratio has influence on the peak strength, peak strain, Ud, Ue, Uθ, Uf and U of rock samples. The variation trends of strength, strain and energy with stiffness are different. And when the stiffness ratio increases to a certain value, if the stiffness of the indenter continues to increase, it will have no longer effect on the rock sample.

Experimental investigation of predicting rockburst using Bayesian model

  • Wang, Chunlai;Chuai, Xiaosheng;Shi, Feng;Gao, Ansen;Bao, Tiancai
    • Geomechanics and Engineering
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    • 제15권6호
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    • pp.1153-1160
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    • 2018
  • Rockbursts, catastrophic events involving the violent release of elastic energy stored in rock features, remain a worldwide challenge for geoengineering. Especially at deep-mining sites, rockbursts can occur in hard, high-stress, brittle rock zones, and the associated risk depends on such factors as mining activity and the stress on surrounding rocks. Rockbursts are often sudden and destructive, but there is still no unified standard for predicting them. Based on previous studies, a new Bayesian multi-index model was introduced to predict and evaluate rockbursts. In this method, the rock strength index, energy release index, and surrounding rock stress are the basic factors. Values from 18 rock samples were obtained, and the potential rockburst risks were evaluated. The rockburst tendencies of the samples were modelled using three existing methods. The results were compared with those obtained by the new Bayesian model, which was observed to predict rockbursts more effectively than the current methods.

침투류에 의한 암석시료의 함수 저감거동 연구 (III) (A Study on Decreasing Behavior of Strength & Elastic Parameters due to Water Infiltration in Rock Cores (III))

  • 조홍제;문종규;정일수
    • 한국지반공학회논문집
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    • 제29권1호
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    • pp.149-159
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    • 2013
  • 본고는 암석 코아에 함수비가 증가함에 따라 포아송비 거동형태를 구명하기 위하여 일축압축강도시험을 시행하였다. 현장에서 출토빈도가 높은 퇴적암, 화성암 및 변성암 시료 307개를 대상으로 포아송비의 함수거동을 관찰하였다. 포아송비는 암석의 역학적, 물리적 parameter와는 상관성이 전혀 표출되지 않는 독립적인 거동을 하고 있다. 포아송비의 함수거동은 감소, 증가 및 자유거동을 표출하고 있다. 감소거동을 나타내는 시료는 전체의 약 70%이상이며 이것은 포아송비의 함수거동 중 절대적으로 우세한 것이다. 포아송비는 독립거동을 하기 때문에 간접적인 방법으로는 추정이 불가능하다. 따라서 설계, 시공 및 감리과정에서 현장암에 대한 실험 결과를 적용하여야 할 것이다.

Cementing failure of the casing-cement-rock interfaces during hydraulic fracturing

  • Zhu, Hai Y.;Deng, Jin G.;Zhao, Jun;Zhao, Hu;Liu, Hai L.;Wang, Teng
    • Computers and Concrete
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    • 제14권1호
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    • pp.91-107
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    • 2014
  • Using the principle of damage mechanics, zero-thickness pore pressure cohesive elements (PPCE) are used to simulate the casing-cement interface (CCI) and cement-rock interface (CRI). The traction-separation law describes the emergence and propagation of the PPCE. Mohr-coulomb criteria determines the elastic and plastic condition of cement sheath and rock. The finite element model (FEM) of delamination fractures emergence and propagation along the casing-cement-rock (CCR) interfaces during hydraulic fracturing is established, and the emergence and propagation of fractures along the wellbore axial and circumferential direction are simulated. Regadless of the perforation angle (the angle between the perforation and the max. horizontal principle stress), mirco-annulus will be produced alonge the wellbore circumferential direction when the cementation strength of the CCI and the CRI is less than the rock tensile strength; the delamination fractures are hard to propagate along the horizontal wellbore axial direction; emergence and propagation of delamination fractures are most likely produced on the shallow formation when the in-situ stresses are lower; the failure mode of cement sheath in the deep well is mainly interfaces seperation and body damange caused by cement expansion and contraction, or pressure testing and well shut-in operations.