• Title/Summary/Keyword: 재굴착

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Analyze of Thermal Resistivity Characteristics for Recycled Aggregates (순환골재의 열저항특성 분석)

  • Kim, Kyoungyul;Hong, Sungyun;Lee, Daesoo
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.11a
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    • pp.164.2-164.2
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    • 2010
  • KEPCO에서는 발전소로부터 생산되는 전력을 각 가정에 공급하기 위하여 전력선을 설치하고 있다. 이 전력선은 지상과 지중에 동시에 설치되고 있으며, 지상에 위치한 전력선을 가공선이라 한다. 지중에 설치된 전력선을 지중선이라 하며, 지중선을 설치하기 위한 공사를 지중화공사라 한다. 전력선은 전력이 통전될 때 일정한 온도 이상의 열이 발생하게 되며 이 열이 신속하게 외부로 빠져나가야지만 전력수송효율이 떨어지지 않게 된다. 지중화공사는 대부분 도로를 재굴착하여 설치하게 되며, 전력선을 설치한 후 주변 되메움재로는 모래를 이용하고 있다.하지만 최근 들어 모래의 수급이 딸리고, 가격이 높아지고 있는 관계로 이의 대체재료가 필요한 실정이다. 이에 본 연구에서는 전력선 되메움재인 모래의 대체재료로 건설폐기물의 일종이었던 순환골재를 이용하기 위하여 열저항특성을 분석하였다. 이미 순환골재는 2005년부터 공공 공사에 의무적으로 사용하도록 규정이 되어 있어 도로 또는 콘크리트 골재로 사용하고 있다. 순환골재를 전력선 되메움재로 사용하기 위해서는 열저항온도(thermal resistivity)가 $120^{\circ}C$-cm/W 이하가 되어야만 전력선 효율이 떨어지지 않기 때문에 이를 만족하는 것이 매우 중요하다. 이를 위해 QTM-500 장비를 이용하여 순환골재의 열저항 특성실험을 시행하였다. 실험의 원활한 수행을 위하여 순환골재의 입도는 5.0mm 이하로 제한하였으며, 인자로는 다짐도와 함수비를 중요한 인자로 선택하였다. 분석결과, 다짐도 및 함수비는 순환골재의 열저항온도에 영향을 미치는 주인자로 나타났으며, 일부 교호작용도 존재하는 것으로 나타났다. 향후 실험결과를 바탕으로 현장 실증실험을 수행할 예정이며, 본 연구결과는 KEPCO의 순환골재 이용기준수립에 활용할 예정이다.

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A Study Of Practical For Eco-Grouting Materials (친환경 그라우팅 재료를 통한 현장 적용성 연구)

  • Moon, Kim-Hak;Jang, Kyung-Jun;Hur, Won;Hur, Hyung-Suk
    • Proceedings of the Korean Geotechical Society Conference
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    • 2010.09a
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    • pp.1253-1257
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    • 2010
  • 그라우팅은 건설공사에서 지반의 갈라진 틈이나 공동, 공극 등에 적절한 충전재를 압력을 이용하여 주입하는 것으로, 굴착공사 시 누수방지와 불안정한 지반의 보강을 위하여 광범위하게 사용되고 있다. 가장 많이 사용되고 있는 그라우팅 주입재의 재료로는 물유리계를 주재료로 사용하는 약액주입공법이 많이 사용되어지고 있다. 기존의 물유리계 재료를 사용할 경우 발생하는 용출현상 및 강도저하를 보완하기 위하여 가소성을 부과한 무기질계 재료ECG(Eco Clean Grouting)를 사용하여, 강도 및 내구성이 우수하고 주입재의 용출 현상이 발생하지 않아 환경오염 문제가 거의 없는 영구적인 차수 및 보강에 적합한지와 친환경적 특성을 확인한다. 본 연구는 가소성 무기질계 재료인 ECG(Eco Clean Grouting)재료를 사용하여 현재 많이 사용되는 재료인 물유리계 재료로 일축압축강도, 체적변화, 내구성 평가, 투수시험, 어독성 시험, 용탈시험등을 수행하여 비교 분석 하였다. 일축압축 시험결과 재령 28일 강도는 ECG가 물유리재료에 비해 크게 발현되었고, 내화학성시험 결과 ECG의 길이변화율이 거의 없는 것으로 내화학성에서 강점을 보였다.

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Field Experiments on the Cutoff Grouting Around Waterway Tunnel (도수터널의 차수 그라우팅 현장시험)

  • 김덕근;김교원
    • The Journal of Engineering Geology
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    • v.11 no.1
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    • pp.81-99
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    • 2001
  • In order to clarify an effect of the cutoff grouting, a series of field experiments were performed during construction of the waterway tunnel from the River Gilancheon(Andong) to the Youngcheon dam. The experiments were conducted in three different ways based on the grouting time in the construction sequence, i.e., the pre-grouting, after-grouting and consolidation grouting tests. And those were also planned to compare the efficiency of grouting in relation to the material types of grout, base rock types and other geologic factors such as discontinuities, depth and direction of grouting holes, and number of grouting stages. Among the materials of grout employed in the experiments, such as a common Portland cement, a micro-cement, a micro-cement with sodium silicate, and a urethane, the urethane was the most effective as the cutoff grouting. And for the same grout material, the pre-grouting was more effective to cutoff the water inflow comparing to the after-grouting and the consolidation grouting. For the rock types, the grouting efficiency in the sedimentary rocks as a base rock was less than the other rocks such as granite and volcanic rocks, which is believed due to the smaller separation of joints and the abundance of infilling materials in the joints developed in the sedimentary rocks. There was no direct relationship between the total RMR value of the rock mass and the grouting efficiency, however, the joint separation which is one of the RMR criteria is believed to have positive relation to the grouting efficiency. And the direction of the grouting holes might not so much affect on the grouting efficiency while increasing the number of grouting stage showed the better results.

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Analysis on the behavior of shield TBM cable tunnel: The effect of the distance of backfill grout injection from the end of skin plate (뒷채움 주입 거리에 따른 전력구 쉴드 TBM 터널의 거동 특성 분석)

  • Cho, Won-Sub;Song, Ki-Il;Ryu, Hee-Hwan
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.16 no.2
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    • pp.213-224
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    • 2014
  • Recently, tunnelling with TBM is getting popular for the construction of cable tunnel in urban area. Mechanized tunnelling method using shield TBM has various advantages such as minimization of ground settlement and prevention of vibration induced by blasting that should be accompanied by conventional tunnelling. In Korea, earth pressure balance (EPB) type shield TBM has been mainly used. Despite the popularity of EPB shield TBM for cable tunnel construction, study on the mechanical behavior of cable tunnel driven by shield TBM is insufficient. Especially, the effect of backfill grout injection on the behavior of cable tunnel driven by shield TBM is investigated in this study. Tunnelling with shield TBM is simulated using 3D FEM. The distance of backfill grout injection from the end of shield skin varies. Sectional forces such as axial force, shear force and bending moment are monitored. Vertical displacement at the ground surface is measured. Futhermore, the relation between volume loss and the distance of backfill grout injection from the end of skin plate is derived. Based on the stability analysis with the results obtained from the numerical analysis, the most appropriate injection distance can be obtained.

The Inflence of Excavation Damaged Zone around an Underground Research Tunnel in KAERI (한국원자력연구원 내 지하처분연구시설 주변의 암반 손상대 영향 평가)

  • Kwon, S.;Kim, J.S.;Cho, W.J.
    • Explosives and Blasting
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    • v.26 no.2
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    • pp.11-19
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    • 2008
  • The development of an excavation damaged zone, EDZ, due to the blasting impact and stress redistribution after excavation, can influence on the long tenn stability, economy, and safety of the underground excavation. In this study, the size and characteristics of an EDZ around an underground research tunnel, which was excavated by controlled blasting, in KAERI were investigated. The results were implemented into the modelling for evaluating the influence of an EDZ on hydro-mechanical behavior of the tunnel. From in situ tests at KURT, it was possible to determine that the size of EDZ was about l.5rn. Goodman jack tests and laboratory tests showed that the rock properties in the EDZ were changed about 50% compared to the rock properties before blasting. The size and property change in the EDZ were implemented to a hydro-mechanical coupling analysis. In the modeling, rock strengths and elastic modulus were assumed to be decreased 50% and. the hydraulic conductivity was increased 1 order. From the analysis, it was possible to see that the displacement was increased while the stress was decreased because of an EDZ. When an EDZ was considered in the model, the tunnel inflow was increased about 20% compared to the case without an EDZ.

Waterproofing performance evaluation according to the number of layer for shield TBM segment hydrophilic rubber waterstop (쉴드 TBM 세그먼트 지수재의 배열수 변화에 따른 방수성능 평가)

  • Ham, Soo-Kwon;Jung, Hoon;Kim, Beom-Ju;Jeong, Kyeong-han;Lee, Seok-Won
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.22 no.1
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    • pp.47-58
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    • 2020
  • The interest in the use of shield TBM (Tunnel Boring Machine) on the tunnel excavation has been increased rapidly in Korea. The shield TBM tunnel is generally designed as non-drainage tunnel. Consequently, if water leakage through the segment joints happens, big problems on the usage and stability of tunnel can be occurred. In this study, the variation of waterproof capacity of hydrophilic rubber waterstop by the construction error and excessive displacement of segment was studied. In particular, the waterproof capacity of each of single and double layer arrangements of hydrophilic rubber waterstop was examined to verify the efficiency of the double layer arrangement. The test results show that the single layer and double layer hydrophilic rubber waterstop showed the same waterproof performance. hydrophilic rubber waterstop has favorable on the offset, however unfavorable on the gap.

Evaluation of the Applicability of CLSM by Numerical Method and Field Test (현장시험과 수치해석에 의한 관거 뒤채움용 CLSM 적용성 평가)

  • Nam, Joongwoo;Byun, Yoshep;Chun, Byungsik
    • Journal of the Korean GEO-environmental Society
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    • v.14 no.7
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    • pp.5-12
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    • 2013
  • The safety and structural integrity of buried pipes are usually at risk from constructing loading and compaction of backfill materials. The backfill material should be strong enough to help resistance and redistribute loads so that the buried pipe remains unaffected. Due to the many problems associated with buried pipes, there have been multiple studies on the development of a sustainable backfill material. In this study, a Controlled Low Strength Material made of coal ash was considered as a buried pipe backfill material. To determine the feasibility and performance of this backfill material, a numerical simulation was conducted with the results confirmed by a field test. Results showed maximum settlement to be 2 mm with the elastic strain of the buried pipe to be about 0.006.

Controlled Low Strength Material for Emergency Restoration Using Bottom Ash and Gypsum (저회와 석고를 활용한 지반함몰 긴급복구용 고유동성 채움재 연구)

  • Lee, So-Yeon;Yoon, Hwan-Hee;Son, Min;Kong, Jin-Young;Jung, Hyuk-Sang
    • Journal of the Korean Geosynthetics Society
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    • v.17 no.2
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    • pp.19-31
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    • 2018
  • Recently the ground subsidence which seriously weakens the safety of cities tends to increase. The purpose of this paper is to develop the materials by using industrial by-products for the application to emergency restoration process in case of ground subsidence. In this paper the laboratory tests including pH test, initial setting test, unconfined compressive strength test, and flow test were performed in order to evaluate the design properties of Controlled Low Strength Material (CLSM). The field test was carried out for evaluating the performance for the early strength of CLSM and the workability for emergency restoration. Test results showed that the strength will be too high to re-excavate the ground when the cement ratio is more than 4%. The optimum mixing ratio appears to be most effective when the mixing ratio of the bottom ash and the gypsum is approximately 50:50 and the cement content is 2%.

An Experimental Study on the Characteristics of a Composite Structure of Lattice Girder and Shotcrete (격자지보와 숏크리트 복합구조체의 특성 실험 연구)

  • Mun, Hong-Deuk;Baek, Yeong-Sik;Bae, Gyu-Jin
    • Geotechnical Engineering
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    • v.13 no.2
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    • pp.155-168
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    • 1997
  • Lattice girder is a new steel support developed in Europe for the replacement of an existing H-shaped steel set, which is installed after tunnel excavation. Lattice girder has the following several advantages : 1. Lattice girder minimizes the amount of shotcrete shadow which happens to occur behind a steel support. 2. A triangular shape of lattice girder makes shotcrete placed efficiently. 3. Lattice girder provides a good bond strength for shotcrete, which makes the composite structure of lattice girder and shotcrete behave monolithic, and therefore, the rock load can be supported effectively by the lattice girder system, This paper presents the results from a model wall test, a strength test for shotcrete shot on the model wall and a strength test for the bond between lattice girder and shotcrete. These tests proved that lattice-girder system is superior to H-shaped steel-set system concerning the shotcrete rebound rate, the developed shotcrete strength and the adhesion characteristics.

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Safety Factor of Rigid Sewer Pipe by Different Types of Foundation and Backfill (기초형식 및 뒤채움재 종류별 강성관용 하수관거의 안전율)

  • Lee, Kwan-Ho;Kim, Seong-Kyum
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.4
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    • pp.606-612
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    • 2019
  • The main causes of subsidence and sinkholes in the lower part of urban roads are sewage line foundation and inadequate compaction of backfill material. This leads to many problems, such as the breakage of joints in sewer pipes, poor connection, pipe breakage, and cracks. To solve this problem, the support factor related to the sewer foundation and the safety factor according to the excavation depth were evaluated. For the foundation of rigidity tolerance, crushed stone foundation, and abandoned concrete foundation, a recently newly developed site assembly-type lightweight plastic foundation were used. Backfill materials were applied on site (sandy soil and clayey soil) and fluid backfill was recycled onsite. To evaluate the depth of excavation and the safety factor of each sewer pipe foundation, the design load considering the load factor and the support factor was evaluated. The support coefficients were 0.377 for a crushed stone foundation, 0.243 and 0.220 for an abandoned concrete foundation ($180^{\circ}$ and $120^{\circ}$), and 0.231 for a lightweight plastic foundation and fluid backfill. Overall, the safety factor was low when using the crushed stone foundation, and the safety rate was the highest when the foreclosed concrete foundation ($180^{\circ}$) was used. In addition, when the combination of lightweight plastic and fluid backfill materials was used, the safety factor was higher than that of abandoned concrete foundation ($120^{\circ}$), which means that the newly developed lightweight plastic foundation can be used as another alternative base of a steel pipe.