• 제목/요약/키워드: grouting volume

검색결과 63건 처리시간 0.025초

물유리계 주입재(注入材)를 주로 한 지반강도증대(地盤強度增大) (Improvement of Soil Strength by Injection of Water-Glass Chemical Grout)

  • 진병익;천병식
    • 대한토목학회논문집
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    • 제4권2호
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    • pp.89-99
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    • 1984
  • 본(本) 연구(硏究)는 1.5 shot system의 대형약액주입장치(大形藥液注入裝置)에 의하여 물유리계 약액(藥液)을 주입(注入)시켜 고결토(固結土)에 대한 공학적(工學的) 특성(特性)을 구명(究明)하고 물유리계의 부족(不足)한 강도증대(强度增大)를 목적(目的)으로 보통포틀란드 시멘트를 병용(倂用)하여 그 주입효과(注入効果)를 판정(判定)한 것이다. 약액주입효과(藥液注入効果)는 지하수(地下水)의 유속(流速), 온도(溫度), 시료토(試料土)의 입도분포(粒度分布), 밀도(密度), 주입재(注入材)의 농도(濃度), 점도(粘度), Gel time, 주입량(注入量), 주입압력(注入壓力) 및 주입방식(注入方式) 등(等)에 좌우됨을 알고 이들 요소간(要素間)의 상관관계(相關關係)를 비교분석(比較分析)하였다. 현장주입시험(現場注入試驗)을 통(通)하여 유수중(流水中)에서의 희석(稀釋), 유실(流失)을 막아 주입효과(注入効果)의 증대(增大), 지반국부전단파괴(地盤局部剪斷破壞) 또는 지반융기현상(地盤隆起現象)에 대하여 검토(檢討)하였다.

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Filtration-induced pressure evolution in permeation grouting

  • Zhou, Zilong;Zang, Haizhi;Wang, Shanyong;Cai, Xin;Du, Xueming
    • Structural Engineering and Mechanics
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    • 제75권5호
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    • pp.571-583
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    • 2020
  • Permeation grouting is of great significance for consolidating geo-materials without disturbing the original geo-structure. To dip into the filtration-induced pressure increment that dominates the grout penetration in permeation grouting, nonlinear filtration coefficients embedded in a convection-filtration model were proposed, in which the volume of cement particles in grout and the deposited particles of skeleton were considered. An experiment was designed to determine the filtration coefficients and verify the model. The filtration coefficients deduced from experimental data were used in simulation, and the modelling results matched well with the experimental ones. The pressure drop revealed in experiments and captured in modelling demonstrated that the surge of inflow pressure lagged behind the stoppage of flow channels. In addition, both the consideration of the particles loss in liquid grout and the number of filtrated particles on pore walls presented an ideal trend in filtration rate, in which the filtration rate first rose rapidly and then reached to a steady plateau. Finally, this observed pressure drop was extended to the grouting design which alters the water to cement (W/C) ratio so as to alleviate the filtration effect. This study offers a novel insight into the filtration behaviour and has a practical meaning to extend penetration distance.

The observation of permeation grouting method as soil improvement technique with different grout flow models

  • Celik, Fatih
    • Geomechanics and Engineering
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    • 제17권4호
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    • pp.367-374
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    • 2019
  • This study concluded the results of a research on the features of cement based permeation grout, based on some important grout parameters, such as the rheological properties (yield stress and viscosity), coefficient of permeability to grout ($k_G$) and the inject ability of cement grout (N and $N_c$ assessment), which govern the performance of cement based permeation grouting in porous media. Due to the limited knowledge of these important grout parameters and other influencing factors (filtration pressure, rate and time of injection and the grout volume) used in the field work, the application of cement based permeation grouting is still largely a trial and error process in the current practice, especially in the local construction industry. It is seen possible to use simple formulas in order to select the injection parameters and to evaluate their inter-relationship, as well as to optimize injection spacing and times with respect to injection source dimensions and in-situ permeability. The validity of spherical and cylindrical flow model was not verified by any past research works covered in the literature review. Therefore, a theoretical investigation including grout flow models and significant grout parameters for the design of permeation grouting was conducted in this study. This two grout flow models were applied for three grout mixes prepared for w/c=0.75, w/c=1.00 and w/c=1.25 in this study. The relations between injection times, radius, pump pressure and flow rate for both flow models were investigated and the results were presented. Furthermore, in order to investigate these two flow model, some rheological properties of the grout mixes, particle size distribution of the cement used in this study and some geotechnical properties of the sand used in this work were defined and presented.

손상된 흙댐 코어의 보수.보강을 위한 CGS 공법의 적용성 (Applicability of CGS for Remediation and Reinforcement of Damaged Earth Dam Core)

  • 천병식;최중근
    • 한국지반공학회논문집
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    • 제19권6호
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    • pp.325-334
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    • 2003
  • 댐체 코어부에 발생한 수압파쇄와 이로 인한 유로의 발달 및 누수량 증대 등의 문제점을 구조적으로 차단하여 댐의 안정성을 확보하고, 장기적으로 댐을 유지관리 운영하는 데에 문제점이 없도록 댐 코어부를 보수.보강한다는 것은 쉬운 일이 아니다. 본 연구에서는 손상된 흙댐 코어의 보수.보강을 위한 CGS 공법(Compaction Grouting System)의 적용성을 천공과 주입과정에 대한 고찰과 그 결과에 대하여 검토하고, 현장에서의 계측치와 FEM 해석 결과의 비교.검토를 통하여 확인하였다. 현장 계측 결과, 공정이 진행되면서 선단 압력은 증가하고 주입량은 감소됨에 따라 느슨한 댐 코어의 공극이 채워진 것으로 나타났으며 동일 수위에 대하여 누수량 및 탁도는 보강 후의 누수량과 탁도가 모두 감소하였으며, FEM 해석 결과 역시 보강으로 인하여 투수계수가 감소하였다. 본 연구에서 CGS 공법을 통하여 기존 댐 코어재료 특성의 변화를 최소화하면서 느슨한 공극을 채워 투수계수와 누수량을 감소시켜서 댐 코어의 차수성을 향상시킬 수 있음을 확인하였다.

EPB tunneling in cohesionless soils: A study on Tabriz Metro settlements

  • Rezaei, Amir H.;Shirzehhagh, Mojtaba;Golpasand, Mohammad R. Baghban
    • Geomechanics and Engineering
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    • 제19권2호
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    • pp.153-165
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    • 2019
  • A case study of monitoring and analysis of surface settlement induced by tunneling of Tabriz metro line 2 (TML2) is presented in this paper. The TML2 single tunnel has been excavated using earth pressure balanced TBM with a cutting-wheel diameter of 9.49 m since 2015. Presented measurements of surface settlements, were collected during the construction of western part of the project (between west depot and S02 station) where the tunnel was being excavated in sand and silt, below the water table and at an average axis depth of about 16 m. Settlement readings were back-analyzed using Gaussian formula, both in longitudinal and transversal directions, in order to estimate volume loss and settlement trough width factor. In addition to settlements, face support and tail grouting pressures were monitored, providing a comprehensive description of the EPB performance. Using the gap model, volume loss prediction was carried out. Also, COB empirical method for determination of the face pressure was employed in order to compare with field monitored data. Likewise, FE simulation was used in various sections employing the code Simulia ABAQUS, to investigate the efficiency of numerical modelling for the estimating of the tunneling induced-surface settlements under such a geotechnical condition. In this regard, the main aspects of a mechanized excavation were simulated. For the studied sections, numerical simulation is not capable of reproducing the high values of in-situ-measured surface settlements, applying Mohr-Coulomb constitutive law for soil. Based on results, for the mentioned case study, the range of estimated volume loss mostly varies from 0.2% to 0.7%, having an average value of 0.45%.

Effects of parallel undercrossing shield tunnels on river embankment: Field monitoring and numerical analysis

  • Li'ang Chen;Lingwei Lu;Zhiyang Tang;Shixuan Yi;Qingkai Wang;Zhibo Chen
    • Geomechanics and Engineering
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    • 제35권1호
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    • pp.29-39
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    • 2023
  • As the intensity of urban underground space development increases, more and more tunnels are planned and constructed, and sometimes it is inevitable to encounter situations where tunnels have to underpass the river embankments. Most previous studies involved tunnels passing river embankments perpendicularly or with large intersection angle. In this study, a project case where two EPB shield tunnels with 8.82 m diameter run parallelly underneath a river embankment was reported. The parallel length is 380 m and tunnel were mainly buried in the moderate / slightly weathered clastic rock layer. The field monitoring result was presented and discussed. Three-dimensional back-analysis were then carried out to gain a better understanding the interaction mechanisms between shield tunnel and embankment and further to predict the ultimate settlement of embankment due to twin-tunnel excavation. Parametrical studies considering effect of tunnel face pressure, tail grouting pressure and volume loss were also conducted. The measured embankment settlement after the single tunnel excavation was 4.53 mm ~ 7.43 mm. Neither new crack on the pavement or cavity under the roadbed was observed. It is found that the more degree of weathering of the rock around the tunnel, the greater the embankment settlement and wider the settlement trough. Besides, the latter tunnel excavation might cause larger deformation than the former tunnel excavation if the mobilized plastic zone overlapped. With given geometry and stratigraphic condition in this study, the safety or serviceability of the river embankment would hardly be affected since the ultimate settlement of the embankment after the twin-tunnel excavation is within the allowable limit. Reasonable tunnel face pressure and tail grouting pressure can to some extent suppress the settlement of the embankment. The recommended tunnel face pressure and tail grouting pressure are 300 kPa and 550 kPa in this study, respectively. However, the volume loss plays the crucial role in the tunnel-embankment interaction. Controlling and compensating the tunneling induced volume loss is the most effective measure for river embankment protection. Additionally, reinforcing the embankment with cement mixing pile in advance is an alternative option in case the predicted settlement exceeds allowable limit.

저유동성 그라우팅 시공전후 지반의 물성변화 분석 (Analysis of the Physical Properties of Ground before and after Low Flowing Grouting)

  • 서석현;이정상;강원동;정의엽
    • 한국지반신소재학회논문집
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    • 제18권4호
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    • pp.115-127
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    • 2019
  • 본 연구의 대상 공법인 저유동성 그라우팅 주입공법은 모르타르를 주입재로 하여 비배출 치환원리에 의해 지중에 압입하는 공법으로서 지반의 밀도 증대효과를 기대할 수 있고 저소음, 저공해, 내구성 확보와 함께 경우에 따라서는 높은 주입 고결체의 강도를 이용한 기초파일로 사용할 수도 있다. 저유동성 주입공법으로 지반의 동적 특성이 향상됨을 확인하기 위하여 현장에서 시험시공을 실시하고 물리시험을 수행하였으며 코어에 대한 실내시험을 통해 지중에 형성된 개량체 품질을 확인하고 코어회수율 분석을 수행하였다. 밀도검층은 감마선의 컴프턴 산란을 이용하여 지층의 체적 밀도를 산정하였고, 음파검층은 시추공 내에서 음파발생 및 수신장치로 구성된 검층기를 이용하여 시추공 주변의 지반에 대해서 시험을 실시하였다. 그라우팅 전,후 물성변화(밀도검층, 음파검층)를 측정한 결과, 기본적으로 두 물성 모두 그라우트제 주입 후 물성이 증가하여 측정되었다. 다만, 그라우팅 후 속도 증가보다 밀도 증가의 변화 폭이 컸으며, 지반 밀도 측정 방법이 주입재의 충진 효과를 측정하는데 효과적이다. 재령 28일 후 채취한 시료로부터 강도 및 코어회수율을 측정하였으며, 시험결과 개량체의 확산 및 강도시험 결과가 설계기준을 만족시켜 내진성능보강을 만족한 것으로 확인하였다.

점도변화와 흡착현상을 고려한 시멘트계 그라우트재의 새로운 침투 기준 (A New Groutability Criterion of Cement-based Grout with Consideration of Viscosity and Filtration Phenomenon)

  • 김종선;이인모;이문선;최항석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.154-163
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    • 2009
  • The groutability depends on the properties of the grout, its injection processes, and on the mechanical properties of the soil formation. During the process of pouring cement-based grouting into a porous medium, a variation with time occurs in the viscosity of grout suspension. In addition the particle filtration phenomenon will limit the expansion of the grouted zone because cement particles are progressively stagnant within the soil matrix. In this paper, a closed-form solution was derived by implementing the mass balance equations and the generalized phenomenological filtration law, which can be used to evaluate the deposition of cement-based grout in the soil matrix. The closed-form solution relevant to a particular spherical flow was modified by a step-wise numerical calculation, considering the variable viscosity caused by a chemical reaction, and the decrease in porosity resulting from grout particle deposition in the soil pores. A series of pilot-scale chamber injection tests was performed to verify that the developed step-wise numerical calculation is able to evaluate the injectable volume of grout and the deposition of grout particles. The results of the chamber injection tests concurred well with that of the step-wise numerical calculation. Based on the filtration phenomenon, a new groutability criterion of cement-based grout in a porous medium was proposed, which might facilitate a new insight in the design of the grouting process.

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그라우팅에 적합한 점성을 갖는 변형률 경화 시멘트 복합재료 (Strain-Hardening Cementitious Composites with Low Viscosity Suitable for Grouting Application)

  • 이방연
    • 한국구조물진단유지관리공학회 논문집
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    • 제16권1호
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    • pp.55-63
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    • 2012
  • 이 연구에서는 타설 과정에서 낮은 점성이 요구되는 구조물에 적합한 낮은 점성을 가지면서 다중균열에 의한 변형률 경화거동을 보이는 고인성 섬유복합재료를 제조하기 위한 재료와 제조 방법을 제시하고자 한다. 섬유복합재료의 낮은 점성과 고인성을 얻기 위하여 미시역학과 파괴역학에 기반한 이론적 해석 방법과 제조 기법을 적용하였다. 2~3MPa 범위의 인장강도를 갖는 복합재료에 적합한 최적의 섬유 양과 길이, 그리고 섬유와 매트릭스의 계면 특성을 미시역학과 안정상태 균열 이론을 이용하여 해석적으로 구한 후 여섯 가지 배합을 결정하였다. 여섯 가지 배합으로 제조한 실험체는 실험을 통하여 점성과 일축인장 성능을 검증하였다. 실험 결과 굳기 전에는 그라우팅에 적합한 낮은 점성을 갖으면서 굳은 후에는 1.5% 이상의 고인성을 갖는 변형률 경화 섬유복합재료를 제조할 수 있는 것으로 나타났다.

이암 성토지반의 안정화를 위한 최적주입률 산정에 관한 실험적 연구 (An Experimental Study on Estimate of the Optimal Grout Injection Ratio for Stabilization of Mudstone fill)

  • 이정상;이승준;김연중;김태수;도종남;천병식
    • 한국지반환경공학회 논문집
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    • 제13권7호
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    • pp.31-38
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    • 2012
  • 현재 지반주입공법에 사용되는 약액으로는 물유리계가 주로 사용되고 있다. 최근 국내에서는 지반개량 재료로 무기질계 급결재와 초미립자 시멘트를 주원료로 하는 NDS(Natural and Durable Stabilizer)공법 등의 개발이 활발하게 연구되어 왔다. 그러나 일반적으로 주입공법의 경우, 주입 효과에 대한 확인이 어렵고 지반 및 지하수의 오염 등 환경 공해의 우려가 있는 문제점이 있다. 따라서, 이암으로 성토된 지반에 대한 주입공법 적용시 주입재료별(물유리계 및 무기질계) 주입률에 따른 강도 및 차수특성을 파악하여 적정주입량을 산정하기 위하여 일축압축강도시험, 어독성시험, 삼축투수시험을 실시하였다. SGR(Space Grouting Roket)과 NDS의 경우 재령 28일의 공시체를 기준으로 주입률 50%까지는 강도 및 차수성 증대가 현저하다가 50% 이상에서는 증대량이 미미한 바, 적정 주입률을 50%로 결정하였다.