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신현강((주)포스코건설) ; 정혁상(동양대학교) ; 유용선(㈜케미우스코리아) ; 김동훈(제주시 도시건설국 도시계획팀) pp.455-478 https://doi.org/10.9711/KTAJ.2019.21.4.455
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본 논문에서는 고강도 강관을 이용한 강관 보강 그라우팅의 보강 효과 검증을 통해 현장 적용성에 관한 실험적 내용을 다루었다. 기존 강관보강 그라우팅 공법에는 SGT275 (구 STK400) 강관을 일반적으로 적용하고 있으나, 강관 보강 그라우팅이 적용된 터널의 붕락사례를 보면 강관의 과도한 꺾임, 파단 등의 사례가 발생되고 있다. 이러한 사례가 발생하는여러 원인 중 굴착에 따른 터널의 이완하중에 대응하는 강관의 강성 부족이 그 원인이 될 수 있다. 최근 들어 고강도 강관(SGT550)의 개발로 강관의 강도가 증가했으나, 강도 증대를 고려한 보강방안에 대한 연구가 미흡하므로 이에 대한 연구가 필요한 실정이다. 따라서 본 연구에서는 고강도 강관과 일반 강관의 이음 유무, 주입재의 충전 여부 등 다양한 조건에 대해 인장강도 및 휨 전단력 실험을 수행하고, 기존 제시된 설계법을 통해 강관의 강도 차이에 따른 효율적인 현장 적용성에 대한 기초 연구를 수행하였다. 특히, 실제 현장에 고강도 강관과 일반 강관을 시공하고 굴착에 따른 강관의 변위형상과 응력에 대한 계측 결과를 통해 고강도 강관의 보강 효과를 검증하였다. 연구결과 고강도 강관은 휨 강도가 우수하여 보강효과가 우수한 것으로 나타났으며, 강도 증진효과로 인해 아칭효과도 기대된다.

Abstract

In this paper, we conducted experimental investigation on the field applicability through the verification of reinforcement effect of the steel pipe reinforcement grouting using high strength steel pipe. SGT275 (formerly known as STK400) steel pipe is generally applied to the traditional steel pipe reinforcement grouting method. However, the analysis of tunnel collapse cases applying the steel pipe reinforcement grouting shows that there are cases where the excessive bending and breakage of steel pipe occur. One of the reasons causing these collapses is the lack of steel pipe stiffness responding to the loosening load of tunnels caused by excavation. The strength of steel pipe has increased due to the recent development of high strength steel pipe (SGT550). However, since research on the reinforcement method considering strength increase is insufficient, there is a need for research on this. Therefore, in this study, we conducted experiments on the tensile and bending strength based on various conditions between high strength steel pipe, and carried out basic research on effective field application depending on the strength difference of steel pipe through the conventional design method. In particular, we verified the reinforcement effect of high strength steel pipe through the measurement results of deformed shape and stress of steel pipe arising from excavation after constructing high strength steel pipe and general steel pipe at actual sites. The research results show that high strength steel pipe has excellent bending strength and the reinforcement effect of reinforced grouting. Further, it is expected that high strength steel pipe will have an arching effect thanks to strength increase.

추진호(한국시설안전공단) ; 유창균(한국시설안전공단) ; 오영철(시설안전기술공단) ; 이인모(고려대학교) pp.479-499 https://doi.org/10.9711/KTAJ.2019.21.4.479
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공용중인 터널의 조사 및 평가는 시설물안전법의 안전점검 및 정밀안전진단 세부지침(터널)편에 따라 외관조사와 내구성조사를 근거하여 상태평가를 수행하고 있다. 본 연구에서는 종방향균열의 발생요인 파악을 위해 준공 후 10년이 경과되어 최초 정밀안전진단이 실시된 NATM터널 12개에 대해 균열과 라이닝의 두께를 검토하여, 이를 반영한 상태평가 수정사항을 모색하였다. 종방향균열에 대한 굴착지반의 영향을 검토하기 위해 지보패턴, 이를 구성하는 지보재 시공 조건, 라이닝의 재료적 특성, GPR탐사를 통한 라이닝 두께 등을 터널 형상 및 용도에 따라 4개의 그룹으로 나누어 자료를 분석하였다. 균열발생밀도는 숏크리트, 록볼트, 강지보재의 지보재 지지능력에 따라 변화되나 굴착지보패턴에 따른 균열발생과의 연관성은 낮은 것으로 나타났다. 라이닝 재료적인 특징인 물-시멘트비, 시멘트함유량, 강도 등이 균열발생에 영향을 주는 것으로 나타났다. 또한, GPR탐사의 라이닝 두께를 반영한 상태평가에서는 평균 0.03 정도(분포, 0.001~0.071) 의 점수증가를 야기하는 것으로 확인되어 향후 라이닝 두께 부족을 고려하는 현실적인 상태평가 방안에 대한 검토가 필요하다.

Abstract

State assessment of an operational tunnel is usually done by performing visual inspection and durability tests by following the detailed guideline for safety inspection (SI) and/ or precision inspection for safety and diagnosis (PISD). In this study, 12 NATM tunnels, which have been operational for more than 10 years, were inspected to figure out the cause of longitudinal cracks for the purpose of modifying the scoring items in the state assessment NATM tunnel related to the longitudinal crack and the thickness of concrete lining. All investigated tunnels were classified into four groups depending on the shape and usage of each tunnel. The causes of longitudinal crack occurrence were analyzed by investigating the correlations between the longitudinal crack and the following four factors: the patterns of ground excavation; construction state of primary support system; characteristics of material properties of the concrete lining; and thickness of lining which was obtained by Ground Penetration Radar (GPR) tests. It was found that influencing factors causing longitudinal cracks in the lining were closely related with the construction condition of the primary support system, i.e. shotcrete, rockbolt, and steel-rib; crack occurrences were not much affected by the excavation patterns. As for the properties of concrete lining materials, occurrence of the longitudinal crack was mostly affected by the following three items: w/c ratio; contents of cement; and strength of lining. When estimating the lining thickness of the concrete lining by GPR tests and taking thickness effect into account in the statement assessment, it was concluded that increase of the index score by an average of 0.03 (ranging from 0.01 up to 0.071) is needed; a more realistic way of state assessment should be proposed in which the increased index score caused by lack of lining thickness should be taken into account.

박승훈(인하대학교) ; 김진섭(한국원자력연구원) ; 김건영(한국원자력연구원) ; 권상기(인하대학교) pp.501-518 https://doi.org/10.9711/KTAJ.2019.21.4.501
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심부 지하환경 조건에서 측정된 암석물성의 사용은 고준위폐기물처분장의 장기 안전성 평가 측면에서 해석의 신뢰성을향상시킬 수 있다. 본 연구는 지하처분연구시설(Korea atomic energy research institute Underground Research Tunnel, KURT)의 화강암(한국원자력연구원, 대전)을 대상으로 고준위폐기물 처분장에서 예상되는 복합환경 조건을 구현한 후암석의 역학적 물성 변화를 측정하였다. 실험은 심지층 처분환경이 모사되도록 열-수리-역학적 복합 환경(Thermo-Hydro- Mechanical, THM)이 조절될 수 있는 실험장치를 제작하였다. 다양한 복합 실험조건(M, HM, TM, THM)을 구현하여일축압축강도와 간접인장강도, 탄성계수, 포와송비 등의 암석물성을 측정한 후 그 결과를 분석하였다. 실험결과, 처분장근계암반 예상 온도범위 내에서는 KURT 화강암의 역학적 물성이 온도의 영향 보다 포화유무에 따른 변화가 더 큰 것을확인할 수 있었다. 또한, 동일한 온도 조건에서 포화 유무에 따른 일축압축시험 결과는 최대 약 20%의 상대적인 차이를보였으며, 간접인장시험 결과는 최대 13%의 차이가 발생하였다. 따라서 처분장의 장기거동에 따른 성능평가 및 안전성예측을 위해서는 기존의 상온 실내시험을 통해 도출된 암석물성을 사용하기보다 심부 지하환경을 반영한 암석의 복합물성을 활용하는 것이 해석의 신뢰도 향상에 기여할 수 있을 것이다.

Abstract

The rock properties measured under in-situ geological condition can be used to increase the reliability in numerical simulations with regard to the long-term performance of a high-level waste repository. In this study, the change in mechanical properties of KURT (Korea atomic energy research institute Underground Research Tunnel) granite was evaluated under the simulated THM (Thermo-Hydro-Mechanical) coupled condition due to a deep geological formation in the disposal repository. The rock properties such as uniaxial compression strength, indirect tensile strength, elastic modulus and Poisson’s ratio were measured under the coupled test conditions (M, HM, TM, THM). It was found that the mechanical properties of KURT granite is more susceptible to the change in saturation rather than temperature within the test condition of this study. The changes in uniaxial compression strength and indirect tensile strength from the rock samples of dried or saturated conditions showed the maximum relative error of about 20% and 13% respectively under the constant temperature condition. Therefore, it is necessary to use the material properties of rock measured under the coupled THM condition as input parameters for the numerical simulation of long-term performance assessment of a disposal repository

나유성(동국대학교) ; 김명인(동국대학교) ; 김범주(동국대학교) pp.519-534 https://doi.org/10.9711/KTAJ.2019.21.4.519
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최근 국내 터널공사에서 낙반사고의 위험성이 낮고 진동과 소음이 적은 쉴드 TBM을이용한 기계화 터널공법이 많이 적용되는 추세이며, 이러한 쉴드 TBM으로 터널 굴착시 적절한 굴착속도를 설계하는 것이 무엇보다 중요하다. 본 연구에서는 ○○~○○ 고속철도 쉴드 TBM 공사구간에 대하여 지반조사 결과와 TBM 굴진데이터를 분석하고 이를 기존 연구자들에 의해 제안된경험적 굴착속도 예측방법에 적용하였다. 또한, 현장 굴진데이터 중 커터 당 추력과 지반 일축압축강도와의 상관관계를분석하고 이를 통해 TBM 터널 설계 시 커터 당 추력과 일축압축강도를 변수로 굴착속도를 예측할 수 있는 간편 모델을도출하였다. 기존 해외의 여러 굴착속도 예측 모델들을 해당 TBM 현장에 적용한 결과 예측치와 측정된 굴착속도는 약50~500%의 비교적 큰 오차를 보인 반면, 본 연구에서 도출된 굴착속도 예측모델은 평균 약 15%의 오차율을 나타내어추후 유사한 지반조건을 가진 쉴드 TBM 현장에 대해서 적용성이 높을 수 있을 것으로 기대한다.

Abstract

Mechanized tunneling methods, including shield TBM, have been increasingly used for tunnel construction because of their relatively low vibration and noise levels as well as low risk of rock-falling accidents. In the excavation using the shield TBM, it is important to design penetration rate appropriately. In present study, both subsurface investigation data and shield TBM excavation data, produced for and during ○○~○○ high-speed railway construction, were analyzed and used to compare with shield TBM penetration rates calculated using existing penetrating rate prediction models proposed by several foreign researchers. The correlation between thrust force per disk cutter and uniaxial compressive strength was also examined and, based on the correlation analysis, a simple prediction model for penetration rate was derived. The prediction results using the existing prediction models showed approximately error rates of 50~500%, whereas the results from the simple model proposed from this study showed an error rate of 15% in average. It may be said, therefore, that the proposed model has higher applicability for shield TBM construction in similar ground conditions.

이강주(창원대학교) pp.535-543 https://doi.org/10.9711/KTAJ.2019.21.4.535
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본 연구는 지하공간에서 천창이 갖는 실증적인 의미를 고찰하였다. 이를 위해 기술성능, 기능성능, 행태성능으로 구성된29개의 설문문항을 도출하였다. 또한, 천창이 있는 지하가와 천창이 없는 지하가와의 비교를 통해 천창의 의미가 분명하게 드러날 것이라는 가정 하에, 일본의 지하가 중 천창이 설치된 3개의 지하가와 천창이 없는 3개의 지하가를 연구의 분석대상으로 선정하였다. 설문조사 결과를 바탕으로 본 연구에서는 기술통계분석과 빈도분석을 실시하였고 각각의 차이분석을 위하여 독립표본 T-검정을 실시하였으며 개선우선순위 도출을 위하여 상관분석을 실시하였다. 분석 결과, 지하상업공간에서 천창은 내부에서의 시간감과 이미지성에서 그 효과가 확실한 것으로 나타났다. 또한 지하상업공간의 질적인 측면에서도 중요한 순기능을 발휘하는 것으로 분석되었다. 마지막으로 천창이 없는 3개 지하가에 대한 개선순위는표지/안내도, 공간의 다양성, 유지관리, 휴게공간, 바닥디자인 등의 순서로 도출되었다. 천창이 있는 3개 지하가에 대한개선순위는 휴게공간, 공간의 다양성, 온습도, 공기, 유지관리 등의 순서로 도출되었다.

Abstract

This study examined the empirical meaning of skylight in underground space, and for this purpose, 29 questions were drawn, consisting of technical performance, functional performance, and behavioral performance. In addition, under the assumption that the meaning of the skylight will be clearly revealed through the comparison between the underground streets with and without the skylight, three underground streets with the skylight and three underground streets without the skylight of Japan were selected as the subjects of the study. Based on the results of the survey, descriptive statistical analysis and frequency analysis were conducted, and an independent sample T-test was conducted for each analysis, and correlation analysis was conducted to derive improvement priority. As a result of the analysis, it was found that skylight had a certain effect on the sense of time and imageability inside the underground commercial space. In addition, it was analyzed that skylight exerted important function in the qualitative aspect of underground commercial space. Lastly, the improvement rankings for three underground streets without skylight were derived in the order of sign/guide map, space diversity, maintenance, rest space, and floor design.The improvement rankings for three underground streets with skylight were drawn in order of resting space, diversity of space, temperature and humidity, air, and maintenance.

이효범(고려대학교) ; 신다한() ; 김대영(현대건설(주) 기술연구소) ; 신영진(현대건설) ; 최항석(고려대학교) pp.545-560 https://doi.org/10.9711/KTAJ.2019.21.4.545
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Abstract

During EPB TBM tunnelling, an appropriate application of additives such as foam and polymer is an essential factor to secure the stability of TBM as well as tunnelling performance. From the ’90s, there have been many studies on the optimal injection of additives worldwidely contrary to the domestic situation. Therefore, in this paper, the foam, which is widely adopted for soil conditioning, was selected as an additive in order to investigate the effect of foam injection on TBM performance through a series of laboratory excavation tests. The excavation experiments were carried out on artificial sandy soil specimens with consideration of the variance of FIR (Foam Injection Ratio), FER (Foam Expansion Ratio) and Cf (Surfactant Concentration), which indicate the amount and quality of the foam. During the tests, torque values were measured, and the workability of conditioned soil was evaluated by comparing the slump values of muck after each experiment. In addition, a weight loss of the replaceable aluminum cutter bits installed on the blade was measured to estimate the degree of abrasion. Finally, the foam injection ratio for the optimal TBM excavation for the typical soil specimen was determined by comparing the measured torque, slump value and abrasion. Note that the foam injection conditions satisfying the appropriate level of machine load, mechanical wear and workability are essential in the EPB TBM operational design.

김해만(고려대학교) ; 이인모(고려대학교) ; 홍창호(한국과학기술원) pp.561-571 https://doi.org/10.9711/KTAJ.2019.21.4.561
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NATM 공법을 이용한 터널굴착 시 발파공 천공 및 장약 작업은 전체 터널 굴착 시간의30% 이상을 차지하는 중요한 과정이다. 최근에는 이 공정을 활용하여 천공작업 도중 얻어지는 타격압, 천공속도 등을 바탕으로 터널 굴착면 전방의 지반상태, RMR 등을 예측하는 연구들이 진행되어 왔다. 하지만 선행 연구들은 대부분 화강암으로 대표되는 화성암질 지반에 대해서만 수행되어왔다. 본 연구에서는 유사한 RMR의 범위를 가지는 화성암의 천공속도를 퇴적암(특히, 역암, 사암 및 셰일)의 천공속도와 비교/분석하였으며, 유사한 RMR 값을 가지는 암이라 하더라도 암질 종류에 따라서 천공속도가 크게 달라질 수 있음을 확인하였다. 퇴적암에서의 천공속도가 화성암에서의 속도보다 더 빨랐으며, 또한 화성암의 경우 천공속도와 RMR등급에 따른 천공속도의 차이는 거의 없는 것에 반하여, 퇴적암의 경우는 RMR등급이 낮아질수록 천공속도는 증가함을 알수 있었다.

Abstract

Drilling and charging of the blast holes during NATM tunneling works take more than 30% of construction time among the whole tunneling work process. Prediction of ground condition ahead of tunnel face has been studied by several researchers by correlating percussion pressure and drilling speed during tunneling work with the ground condition and/or RMR values. However, most of the previous researches were conducted in the granite rock condition which is the most representative igneous rock in the Korean peninsula. In this study, drilling speeds in igneous rocks were analyzed and compared with those in sedimentary rocks (most dominantly composed of conglomerates, sandstones, and shales) under the similar RMR ranges; it was identified that the drilling speed is pretty much affected by rock types even in a similar RMR range. Under the similar RMR values, the drilling speed was faster in sedimentary rocks compared with that in igneous rock. Moreover, while the drilling speed was not much affected by change of the RMR values in igneous rocks, it became faster in sedimentary rocks as the RMR values got lower.

김동규(한국건설기술연구원) pp.573-585 https://doi.org/10.9711/KTAJ.2019.21.4.573
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초록

Abstract

The objective of this study is to propose the drainage system that has been improved the workability, waterproofing and drainage performance to treat the leakage from the cement concrete structures in underground. It is improved that the pipe for conveying ground leak in the existing drainage system had the problem in workability and waterproof. The drainage systems with the improved pipe for conveying ground leak were constructed in conventional concrete lining tunnels to evaluate the workability, waterproofing and drainage. The waterproof and the drainage performance of the drainage system was evaluated by injecting 1,000 ml of red water in the back of the drainage system at 3 weeks, 6 weeks, 9 weeks, 11 weeks, 14 weeks, 17 weeks and 23 weeks. During 6 months of field performance test, the average daily temperature of the tunnel site was measured from -12.4°C to 19.7°C. The daily minimum temperature was -17.2°C and the daily maximum temperature was 26.7°C. There was no problem in waterproof and drainage performance on the pipe for conveying ground leak and the drainage system during 6 months for field performance test. It is concluded that the improved drainage system can be applied to various cement concrete underground structures where leakage occurs, and has little seasonal effect.

(사)한국터널지하공간학회