• 제목/요약/키워드: Rock Strength

검색결과 1,145건 처리시간 0.022초

암석 버력으로 성토한 사면의 안정성 해석 (Stability Analysis of Embankment Slopes Consisting of Rock Fragments)

  • 김치환
    • 터널과지하공간
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    • 제12권2호
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    • pp.83-91
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    • 2002
  • 암석 버력으로 성토한 사면의 역학적 안정성을 한계평형해석법과 유한차분법으로 검토하였다. 암석 버력 성토사면의 높이는 약 40 m이고 사면의 구배는 1:1.5이다. 암석 버력 성토체의 강도정수 중 점착력은 없고, 내부마찰각은 43$^{\circ}$로 가정하고 사면의 안정성을 해석하였다. 한계평형해석 중 Fellenius법과 Bishop법으로 구한 안전율 Fs는 1.4이었다. 또 유한차분법으로 사면의 안전율을 구하기 위해서 강도감소법을 이용하였고 파괴영역을 기준으로 결정한 사면의 안전율 Fs도 역시 약 1.4로 한계평형해석 결과와 동일하였다. 여러 기관에서 사면설계기준으로 적용하는 안전율 1.3과 비교할 때 암석 버력 성토사면은 안정상태로 확인되었다.

Determination of spalling strength of rock by incident waveform

  • Tao, Ming;Zhao, Huatao;Li, Xibing;Ma, Jialu;Du, Kun;Xie, Xiaofeng
    • Geomechanics and Engineering
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    • 제12권1호
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    • pp.1-8
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    • 2017
  • An experimental technique for determining the spalling strength of rock-like materials under a high strain rate is developed. It is observed that the spalling strength of a specimen can be determined by only knowing the wavelength, loading peak value and length of the first spallation of an incident wave under a specific loading waveform. Using this method in combination with a split-Hopkinson pressure bar (SHPB) and other experimental devices, the spalling strength of granite specimens under a high strain rate is tested. Comparisons with other experimental results show that the new measuring method can accurately calculate the dynamic tensile strength of rock materials under a high strain rate.

암반공학-우리나라에서의 과제와 연구주제 (Rock Mechanics-Major Projects and Research Topics in Korea)

  • 정소걸
    • 자원환경지질
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    • 제39권4호
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    • pp.451-471
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    • 2006
  • 암반공학 관련 국책과제로부터 암반공학 분야의 주요 연구과제와 연구 내용을 분석해 본 견과를 요약하면 다음과 같다. $\cdot$ 암반공학은 암석 혹은 현지 암반의 변형, 파괴 그리고 변위에 대한 것을 주 연구 내용으로 하고 있으며, 지질학적인 기초를 요구하는 학문이다. 암반내에 존재하는 불연속면은 지하공간을 포함하는 암반의 거동을 결정하는 가장 중요한 변수이다. $\cdot$ 현장조사와 시험의 기본적인 목적은 암반의 강도 정수의 결정과 현지 암반의 응력 상태를 규명하는데 있으며, 실험실 시험 혹은 현장 시험은 반드시 대상 암반의 역학적 거동을 대표할 수 있도록 수행되어야 한다. $\cdot$ 수치해석의 견과는 그 결과가 비록 정량화되었더라도 정성적인 기준에 의해 평가되는 것이 타당하다. 암반의 변위 거동을 면밀하게 계측하여야 NATM의 기본 개념에 맞는 올바른 터널과 지하공간의 설계와 시공이 가능하며, 암반 사면의 안정성을 분석하는데 있어 역해석에 의해 산정된 강도 정수가 전제되어야 할 것으로 평가된다.

EMI database analysis focusing on relationship between density and mechanical properties of sedimentary rocks

  • Burkhardt, Michael;Kim, Eunhye;Nelson, Priscilla P.
    • Geomechanics and Engineering
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    • 제14권5호
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    • pp.491-498
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    • 2018
  • The Earth Mechanics Institute (EMI) was established at the Colorado School of Mines (CSM) in 1974 to develop innovations in rock mechanics research and education. During the last four decades, extensive rock mechanics research has been conducted at the EMI. Results from uniaxial compressive strength (UCS), Brazilian tensile strength (BTS), point load index (PLI), punch penetration (PP), and many other types of tests have been recorded in a database that has been unexamined for research purposes. The EMI database includes over 20,000 tests from over 1,000 different projects including mining and underground construction, and analysis of this database to identify relationships has been started with preliminary results reported here. Overall, statistically significant correlations are identified between bulk density and mechanical strength properties through UCS, BTS, PLI, and PP testing of sedimentary, igneous, and metamorphic rocks. In this paper, bulk density is considered as a surrogate metric that reflects both mineralogy and porosity. From this analysis, sedimentary rocks show the strongest correlation between the UCS and bulk density, whereas metamorphic rocks exhibit the strongest correlation between UCS and PP. Data trends in the EMI database also reveal a linear relationship between UCS and BTS tests. For the singular case of rock coral, the database permits correlations between bulk density of the core versus the deposition depth and porosity. The EMI database will continue under analysis, and will provide additional insightful and comprehensive understanding of the variation and predictability of rock mechanical strength properties and density. This knowledge will contribute significantly toward the increasingly safe and cost-effective geostructures and construction.

단일 록 앵커(Rock Anchor) 인발시험에 관한 연구 (The Experimental Study on the Uplift Capacity Test of Circular Anchors in Rock Mass)

  • 이경진;나환선;박동수;김강식;김우범
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1999년도 가을 학술발표회 논문집
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    • pp.3-10
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    • 1999
  • There is an increasing demand for using rock anchors as foundations in many geotechnical engineering structures such as transmission towers, dams, etc. For investigate the behavior and strength of rock anchors, in-situ pull-out tests were carried out. From the tests, various forms of failure of rock anchors were observed. Ultimate capacity of each failure modes of 1) Tendon failure, 2) Interface failure(tendon-grout interface, sheath-grout interface and grout-rock interface), 3) Combined interface failure, was obtained by varying the parameters such as diameter and length of tendon, grout strength, and quality of rock.

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핵석을 포함하는 토층의 파괴강도 특성연구 ((A study failure-strength characteristics of soil layer contained Corestone))

  • 이수곤;금동헌
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.711-716
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    • 2002
  • When judging the ground by core-logging, depth of coring might be stopped by coming into view of the moderately weathered rock and also considered as bedrock line. However, highly weathered rock may appear again, if coring more, because there are core-stones in the residual soil and highly weathered rock by the effect of hydraulic-thermal differentiation and does the irregular rock weathering or metamorphic rock region. Therefore, there are room for misunderstanding of diagnosing the moderately weathered rock. Even though the irregular ground where the corestones were come out will show clear geotechnical differences between the ground and the gradually weathered bedrock, nowadays, the construction sites do not take into account the characteristic of core-stone region. In conclusion, to study the failure-strength characteristics of soil layers containing core-stones, we made artificial core-stones and varied percentage of corestones, and measured cohesion and friction factors to adjust them to construction sites containing corestones such as slope, tunnel, and underground.

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Simple Evaluation Method of Uplift Resistance for Frictional Shallow Anchors in Rock

  • Kim, Daehong;Lee, Seungho
    • 한국지반환경공학회 논문집
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    • 제23권1호
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    • pp.15-23
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    • 2022
  • This paper presents the results of full-scale load tests performed frictional anchors to various lengths at several sites in Korea. Various rock types were tested, ranging from highly weathered shale to sound gneiss. In many tests, rock failure was reached and the ultimate loads were recorded along with observations of the shape and extent of the failure surface. Laboratory tests were also conducted to investigate the influence of the corrosion protection sheath on the bond strength. Based on test results, the main parameters governing the uplift capacity of the rock anchor system were determined. By evaluation of the ultimate uplift capacity of anchor foundations in a wide range of in situ rock masses, rock classification suitable for structural foundation was developed. Finally, a very simple and economical design procedure is proposed for rock anchor foundations subjected to uplift tensile loads.

암석의 절리면 거칠기 정량화 기법 개발을 통한 절리면 전단강도 특성 분석 (Analysis fo the Rock Joint Strength Characteristics Using New Rock Joint Roughness Quantification Method)

  • 이인모;홍은수;배석일;이석원
    • 한국지반공학회논문집
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    • 제18권4호
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    • pp.229-238
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    • 2002
  • 본 연구에서는 절리면 거칠기를 정량적으로 산출하기 위하여 표면 거칠기 계수, Rs를 이용한 측정방법을 제안하고, 이를 바탕으로 절리면 거칠기가 절리면 전단강도에 미치는 영향을 제시하였다. 제시된 Rs를 이용하여 새로운 절리면 전단강도 모델을 제안하였다. 연구 결과, 표면 거칠기 계수인 Rs는 암반의 절리면 거칠기를 정량적으로 표현할 수 있는 유용한 방법이 될 수 있음을 알 수 있었다. Rs에 의한 암코아 규모의 절리면 거칠기 측정에는 최대 측정간격으로 2mm, 최소 측정 길이로 5cm가 적당하나, 이를 대규모의 현장 절리면에 확대 적용하기 위해서는 변동규모(scale of fluctuation), $\delta_u$를 도입하여야 한다. 절리면 거칠기가 작은 경우, 전단강도는 절리면에서의 미끄러짐으로 유발되었으나, 거친 절리면에서의 전단강도는 거칠기의 일부분이 파괴됨으로 인하여 발생됨을 알 수 있었다.

국내 화강암의 지반공학적 특성 및 암반분류법과의 상관성에 관한 연구 (Study on the Geotechnical Characteristics of Granite in Korea and their Correlation with Rock Classification Method)

  • 선우춘;류동우;김형목;김기석
    • 터널과지하공간
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    • 제21권3호
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    • pp.205-215
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    • 2011
  • 본 논문은 국내 여러 지역에서 수행된 도로, 철도 및 기타 토목공사를 위한 설계과정에서 이루어진 현지조사 및 시추공을 이용한 현장시험과 실내시험 및 암반평가가 이루어진 화강암의 자료들을 대상으로 물성 및 암반분류방법간의 상관관계에 대해 분석을 실시하였다. 실험실과 현지에서 측정된 화강암의 물성 중에 단위중량, 압축강도, 인장강도, 탄성파속도, 점착력 및 마찰각 그리고 탄성계수 및 변형계수에 대해 분석을 실시하였다. 이들 물성 중에서 압축강도와 각 요소들 사이의 상관관계에 대해서도 검토하였다. 국내 화강암을 대상으로 조사된 RQD, RMR 과 Q 시스템의 암반분류법간의 상관관계에 대해서도 분석을 실시하였고, 기존의 암반분류법간의 상관관계를 보다 간편화하여 상관관계식을 유도하였다. 그리고 현장에서 시추코어를 대상으로 측정된 RQD와 압축강도 값으로부터 RMR 값을 유도하였으며 또한 RMR값을 이용하여 현지암반 탄성계수를 유추하였다.

Simulation of the fracture of heterogeneous rock masses based on the enriched numerical manifold method

  • Yuan Wang;Xinyu Liu;Lingfeng Zhou;Qi Dong
    • Geomechanics and Engineering
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    • 제34권6호
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    • pp.683-696
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    • 2023
  • The destruction and fracture of rock masses are crucial components in engineering and there is an increasing demand for the study of the influence of rock mass heterogeneity on the safety of engineering projects. The numerical manifold method (NMM) has a unified solution format for continuous and discontinuous problems. In most NMM studies, material homogeneity has been assumed and despite this simplification, fracture mechanics remain complex and simulations are inefficient because of the complicated topology updating operations that are needed after crack propagation. These operations become computationally expensive especially in the cases of heterogeneous materials. In this study, a heterogeneous model algorithm based on stochastic theory was developed and introduced into the NMM. A new fracture algorithm was developed to simulate the rupture zone. The algorithm was validated for the examples of the four-point shear beam and semi-circular bend. Results show that the algorithm can efficiently simulate the rupture zone of heterogeneous rock masses. Heterogeneity has a powerful effect on the macroscopic failure characteristics and uniaxial compressive strength of rock masses. The peak strength of homogeneous material (with heterogeneity or standard deviation of 0) is 2.4 times that of heterogeneous material (with heterogeneity of 11.0). Moreover, the local distribution of parameter values can affect the configuration of rupture zones in rock masses. The local distribution also influences the peak value on the stress-strain curve and the residual strength. The post-peak stress-strain curve envelope from 60 random calculations can be used as an estimate of the strength of engineering rock masses.