• 제목/요약/키워드: Rock damage

검색결과 436건 처리시간 0.022초

발파굴착의 암반손상이 터널안정성에 미치는 영향분석 (Effect of Rock Damage Induced by Blasting on Tunnel Stability)

  • 이인모;윤현진;김동현;이상돈;박봉기
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.681-688
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    • 2003
  • Rock damage induced by blasting can not be avoided during tunnel construction and may affect tunnel stability. But the mutual interaction between tunnel blasting design and tunnel stability design is generally not considered. Therefore this study propose a methodology to take into considration the results of the blasting damage in tunnel stability design. Rock damage is evaluated by dynamic numerical analysis for the most common blasting pattern adopted in road tunnel. Damage zone is determined by using the continuum damage model which is expressed as a function of volumetric strain. And the damage effect is taken into account by the damaged rock stiffness and the damaged failure criteria in tunnel stability assessment. The extend of plastic zone and deformation increase compared to the case of not considering blast-induced rock damage.

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Study on correlation of acoustic emission and plastic strain based on coal-rock damage theory

  • Jin, Peijian;Wang, Enyuan;Song, Dazhao
    • Geomechanics and Engineering
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    • 제12권4호
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    • pp.627-637
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    • 2017
  • The high positive correlation between plastic strain of loaded coal-rock and AE (acoustic emission) characteristic parameter was studied and proved through AE experiment during coal-rock uniaxial compression process. The results show that plastic strain in the whole process of uniaxial compression can be gained through the experiment. Moreover, coal-rock loaded process can be divided into four phases through analyzing the change of the plastic strain curve : pressure consolidation phase, apparent linear elastic phase, accelerated deformation phase, rupture and development phase, which corresponds to conventional elastic-plastic change law of loaded coal-rock. The theoretical curve of damage constitutive model is in high agreement with the experimental curve. So the damage evolution law of coal rock damage can be indicated by both acoustic emission and plastic strain. The results have great academic and realistic significance for further study of both AE signal characteristics during loaded coal-rock damaged process and the forecasting of coal-rock dynamic disasters.

Incompatible deformation and damage evolution of mixed strata specimens containing a circular hole

  • Yang, Shuo;Li, Yuanhai;Chen, Miao;Liu, Jinshan
    • Geomechanics and Engineering
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    • 제20권5호
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    • pp.461-474
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    • 2020
  • Analysing the incompatible deformation and damage evolution around the tunnels in mixed strata is significant for evaluating the tunnel stability, as well as the interaction between the support system and the surrounding rock mass. To investigate this issue, confined compression tests were conducted on upper-soft and lower-hard strata specimens containing a circular hole using a rock testing system, the physical mechanical properties were then investigated. Then, the incompatible deformation and failure modes of the specimens were analysed based on the digital speckle correlation method (DSCM) and Acoustic Emission (AE) data. Finally, numerical simulations were conducted to explore the damage evolution of the mixed strata. The results indicate that at low inclination angles, the deformation and v-shaped notches inside the hole are controlled by the structure plane. Progressive spalling failure occurs at the sidewalls along the structure plane in soft rock. But the transmission of the loading force between the soft rock and hard rock are different in local. At high inclination angles, v-shaped notches are approximately perpendicular to the structure plane, and the soft and hard rock bear common loads. Incompatible deformation between the soft rock and hard rock controls the failure process. At inclination angles of 0°, 30° and 90°, incompatible deformations are closely related to rock damage. At 60°, incompatible deformations and rock damage are discordant due that the soft rock and hard rock alternately bears the major loads during the failure process. The failure trend and modes of the numerical results agree very well with those observed in the experimental results. As the inclination angles increase, the proportion of the shear or tensile damage exhibits a nonlinear increase or decrease, suggesting that the inclination angle of mixed strata may promote shear damage and restrain tensile damage.

터발파압력에 기인한 이방성 암반손상의 수치해석적 분석 (Numerical analysis of blast-induced anisotropic rock damage)

  • 박봉기;조국환;이인모
    • 한국터널지하공간학회 논문집
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    • 제6권4호
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    • pp.291-302
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    • 2004
  • 발파압력이 발파공 주위 암반에 발생시키는 암반손상을 연속체 손상역학과 사용자 부프로그램을 이용한 수치해석을 통하여 분석하였다. 암반의 이방성 특성을 적용한 이방성 발파압력을 산출하였으며, 이를 이용하여 이방성 암반손상을 분석하였다. 또한 등방성 암반손상에 대해서도 분석하였다. 자연 암반이 가지고 있는 초기손상을 함께 고려하여 암반손상을 분석하였다. 등방성 암반손상의 매개변수 분석결과, 발파압력과 탄성계수가 암반손상에 가장 크게 영향을 미쳤다. 또한 이방성 암반손상의 매개변수 분석결과, 발파압력이 이방성 암반손상에 가장 크게 영향을 미쳤으나 탄생계수는 이방성 암반손상에 크게 영향을 미치지 않음을 알 수 있었다. 등방성과 이방성 암반손상을 등방성 암반손상과 비교한 결과, 이방성 암반의 수평방향 암반손상이 약 34% 증가 하였고 수직방향은 12% 감소하는 결과를 얻을 수 있었다. 등방성 암반에 대한 밀장전 조건과 디커플링장전 조건하에 발파로 인한 암반손상을 비교한 결과, 밀장전 조건의 암반손상이 디커플링장전 조건보다 약30배 정도 크게 나타났으며, 밀장전 조건의 발파압력은 디커플링장전 조건보다 10배 이상 큼을 알 수 있었다.

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굴착선 주변공 발파의 암반손상을 고려한 터널 안정성 검토 (Tunnel Stability Assessment Considering Rock Damage from Blasting Near to Excavation Line)

  • 이인모;윤현진;이형주;이상돈;박봉기
    • 한국지반공학회논문집
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    • 제19권4호
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    • pp.167-178
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    • 2003
  • 발파설계가 터널 굴착 시 암반손상 및 여굴에 미치는 영향을 분석하고 암반손상 및 여굴이 터널 안정성에 미치는 영향을 분석함으로서 발파설계가 터널 지보설계에 미치는 영향을 연구하였다. 도로터널의 일반적인 발파패턴에 대해 동적발파 수치해석을 시행하고 연속체 손상역학(continuum damage mechanics)의 손상변수(damage variable)를 이용하여 여굴과 암반손상 정도를 분석함으로서 터널 굴착면 주위의 암반손상 정도와 영역을 구분하였다. 또한 발파하중 같은 동적하중이 암반내를 전파할 때 변화하는 암반의 동적파괴기준에 대한 연구를 수행하였다. 발파 암반손상 영향을 터널 안정성 해석에 반영하기 위하여 손상된 암반강성과 파괴기준을 적용하였다. 손상된 암반강성은 손상역학의 강도감소 모델을 이용하여 감소시켰다. 손상된 암반의 파괴기준은 암반강성과 지질강도지수의 관계식에서 도출한 손상된 지질강도지수(GSI$GSI_d$)를 적용함으로서 산출한 수정 Hoek-Brown 파괴기준을 적용하였다. 암반손상을 고려하여 터널안정성을 해석한 결과, 암반손상을 고려하지 않는 경우와 비교하여 소성영역 범위가 확대되고 변위량이 증가하였다. 이는 발파암반손상을 고려하지 않고 터널설계를 하는 경우 단기적 혹은 장기적으로 터널안정성이 위협받을 수 있음을 나타내었다.

A plastic strain based statistical damage model for brittle to ductile behaviour of rocks

  • Zhou, Changtai;Zhang, Kai;Wang, Haibo;Xu, Yongxiang
    • Geomechanics and Engineering
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    • 제21권4호
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    • pp.349-356
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    • 2020
  • Rock brittleness, which is closely related to the failure modes, plays a significant role in the design and construction of many rock engineering applications. However, the brittle-ductile failure transition is mostly ignored by the current statistical damage constitutive model, which may misestimate the failure strength and failure behaviours of intact rock. In this study, a new statistical damage model considering rock brittleness is proposed for brittle to ductile behaviour of rocks using brittleness index (BI). Firstly, the statistical constitutive damage model is reviewed and a new statistical damage model considering failure mode transition is developed by introducing rock brittleness parameter-BI. Then the corresponding damage distribution parameters, shape parameter m and scale parameter F0, are expressed in terms of BI. The shape parameter m has a positive relationship with BI while the scale parameter F0 depends on both BI and εe. Finally, the robustness and correctness of the proposed damage model is validated using a set of experimental data with various confining pressure.

FRACOD를 이용한 취성 암석의 손상 및 파괴에 대한 경계요소 해석 (A Boundary Element Analysis for Damage and Failure Process of Brittle Rock using ERACOD)

  • 이희석
    • 터널과지하공간
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    • 제14권4호
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    • pp.248-260
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    • 2004
  • 응력 증가에 의한 취성 암석의 손상은 미세균열의 개시로부터 시작하여 각 개별 균열들의 전파 및 결합에 의해 거시적인 파괴면을 발생시킨다. 전통적으로 암반의 손상 및 파괴현상을 설명하기 위해 거시적인 파괴 기준이나 탄소성 모델과 같은 연속체적인 접근법이 주류를 이루어왔다. 하지만 개별적인 균열들의 개시와 전락 과정을 명시적으로 고려할 수 있다면 현상론적인 관점에서 보다 실제에 가까운 암석 손상 및 파괴 과정을 재현할 수 있을 것이다. 본 연구에서는 암석의 균열 진전 모델링을 위해 개발된 경계요소 코드인 FRACOD를 이용하여 암석의 손상 및 파괴 과정을 모사한 결과를 제시한다. 수치일축압축시험을 통해 개발된 모델의 적정성을 검증하고 암반의 치수효과를 고려한 현실적인 암석 파괴 과정을 재현하였다. 또한 이러한 접근법의 적용 사례로서, 실제 굴착이 진행중인 심부 수갱 암반 주변에서 심도와 암반 특성에 따라 균열 진전과 이에 따른 암반 손상의 범위를 예측한 결과를 제시하였다. 이 접근법은 취성도가 큰 암반에서 발생하는 안정성 문제에 대한 공학적인 해법을 찾는데 기여를 할 수 있을 것으로 기대된다.

A new approach for quantitative damage assessment of in-situ rock mass by acoustic emission

  • Kim, Jin-Seop;Kim, Geon-Young;Baik, Min-Hoon;Finsterle, Stefan;Cho, Gye-Chun
    • Geomechanics and Engineering
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    • 제18권1호
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    • pp.11-20
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    • 2019
  • The purpose of this study was to propose a new approach for quantifying in situ rock mass damage, which would include a degree-of-damage and the degraded strength of a rock mass, along with its prediction based on real-time Acoustic Emission (AE) observations. The basic approach for quantifying in-situ rock mass damage is to derive the normalized value of measured AE energy with the maximum AE energy, called the degree-of-damage in this study. With regard to estimation of the AE energy, an AE crack source location algorithm of the Wigner-Ville Distribution combined with Biot's wave dispersion model, was applied for more reliable AE crack source localization in a rock mass. In situ AE wave attenuation was also taken into account for AE energy correction in accordance with the propagation distance of an AE wave. To infer the maximum AE energy, fractal theory was used for scale-independent AE energy estimation. In addition, the Weibull model was also applied to determine statistically the AE crack size under a jointed rock mass. Subsequently, the proposed methodology was calibrated using an in situ test carried out in the Underground Research Tunnel at the Korea Atomic Energy Research Institute. This was done under a condition of controlled incremental cyclic loading, which had been performed as part of a preceding study. It was found that the inferred degree-of-damage agreed quite well with the results from the in situ test. The methodology proposed in this study can be regarded as a reasonable approach for quantifying rock mass damage.

Experimental investigation on multi-parameter classification predicting degradation model for rock failure using Bayesian method

  • Wang, Chunlai;Li, Changfeng;Chen, Zeng;Liao, Zefeng;Zhao, Guangming;Shi, Feng;Yu, Weijian
    • Geomechanics and Engineering
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    • 제20권2호
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    • pp.113-120
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    • 2020
  • Rock damage is the main cause of accidents in underground engineering. It is difficult to predict rock damage accurately by using only one parameter. In this study, a rock failure prediction model was established by using stress, energy, and damage. The prediction level was divided into three levels according to the ratio of the damage threshold stress to the peak stress. A classification predicting model was established, including the stress, energy, damage and AE impact rate using Bayesian method. Results show that the model is good practicability and effectiveness in predicting the degree of rock failure. On the basis of this, a multi-parameter classification predicting deterioration model of rock failure was established. The results provide a new idea for classifying and predicting rockburst.

사면 안정성 요인에 대한 발파패턴의 영향 (The effect of blasting patterns on cut slope stability factors)

  • 김수로;이학규;장범수;신창건;안상로
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2004년도 춘계학술발표회
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    • pp.614-621
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    • 2004
  • Blasting is a technique for rock excavation: For instance, a rock cutting in a mountain side to prepare a base for a road. The blasting damage affect the rock slope stability. Therefore control blasting must be used. In this study, cutting cases of Sixty-nine rock blasts were investigated. Blasting damage patterns in rock slope and reinforcement methods are studied.

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