• Title/Summary/Keyword: 개량체

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A Study on Ground Reinforcement Effect with Structural Forms of Improved Soil (개량체 구조형상에 따른 지반보강효과 연구)

  • Park, Kyunghan;Jang, Gisoo;Lee, Song
    • Journal of the Korean GEO-environmental Society
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    • v.15 no.1
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    • pp.25-34
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    • 2014
  • The aim of this study is to analyze the mechanical characteristics and settlement feature of the composite ground with structural form changes. The laboratory model test is a soil tanker to be contained with clay and grid form improved soil, which is conducted in total 9 case with the uniaxial compressive strength of improved soil and replacement ratio of improved soil. The numerical analysis for variation of stress distribution ratio with depth was performed in the same conditions which are the laboratory model test. As a result, stress distribution ratios in mid and high replacement ratio are increasing and settlement is decreasing, except low replacement ratio. This study is presented for form effect ratio and settlement reduction factor with change of structure form, which is able to be helpful in further research and reference for change of structural forms at composite ground.

Experimental Study on Soft Ground with DCM Column (DCM 타설 지반에 관한 실내모형실험)

  • Hong, Gigwon
    • Journal of the Korean Geosynthetics Society
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    • v.19 no.3
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    • pp.35-44
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    • 2020
  • This study described the result of laboratory model tests, in order to compare the improvement effect of the DCM column installed on the soft ground according to DCM column type. In the laboratory model test, the non-reinforced type and the 3 types of DCM column were applied, and the behavior (settlement, lateral flow) of soft ground was evaluated under the surcharge load condition for each type. The settlement evaluation result showed that the settlement of soft ground without DCM column occurred rapidly under the low load condition, but the settlement of the soft ground with the DCM column had relatively small settlement. The evaluation result of lateral flow in the soft ground showed that the soft ground with DCM column had lower lateral displacement than the soft ground without DCM column. Especially, the lateral displacement under the same load condition decreased in the order of pile type, wall type, and grid type. Therefore, it confirmed that the improvement effect of soft ground was excellent when the DCM of grid type was applied for settlement and lateral flow.

Effects of DCM Column Properties in Softground on Stabilities of Underground Roadways (연약지반내 DCM 개량체의 특성이 지하차도의 안정성에 미치는 영향)

  • Ahn, Tae-Bong
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.30 no.2C
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    • pp.77-84
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    • 2010
  • In planning underground roadway foundation on soft ground, deep cement mixing method (DCM) is employed. The proper mixing ratio using batch test and replacement rates that meet strength criteria are used for deep cement mixing column. Stiffness ratio and distance between deep cement mixing columns (C.T.C) are varied to find out influences on stress, displacement, and differential settlement. The replacement ratios that meet settlement criteria are 10~35%. As stiffness varies, stress reaches at 769.kPa that exceed criteria due to stress concentration when stiffness ratio difference is over 30. Also, when C.T.C is 5 m, stress spreads to soils, so C.T.C need to be considered carefully. The vertical displacement is 0.6~1.56 cm, and angular distortion is 1/909~1/510.

A Case Study on Ground improvement of a Retaining Wall Foundation by Using High Pressure Grouting (고압분사공법을 이용한 옹벽기초지반 보강 사례)

  • Park, Jong-Ho;Jang, Sun-Cheul;Park, Chang-Hun;Yoon, Hee-Kyung
    • 기술발표회
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    • s.2006
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    • pp.199-209
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    • 2006
  • 현재 연약지반의 개량 및 구조물기초 지반의 보강을 위하여 약액주입공법 및 고압분사주입공법 등의 주입공법이 널리 행해지고 있는 실정이다. 이에 본 연구에서는 00교 교대 전면 옹벽기초 하부지반을 고압분사주입공법을 이용해 보강한 사례로서 설계 및 시공, 시험 자료를 분석하고, 보강작업에 따른 지반의 개량효과를 분석하였다. 개량효과학인을 위한 시추조사와 시추공영상 촬영 이미지 관찰결과에서는 고압분사에 의해 양호한 상태의 고결체(토사 + 시멘트 페이스트)가 형성되었음을 확인 할 수 있었으며, 고결체와 원지반의 복합지반상에서 실시한 평판재하시험 결과 및 시추조사시 채취된 고결체 Core에 대해 실시한 일축압축강도시험 결과에서도 설계시 가정한 값을 모두 만족하는 것으로 나타나 연약지반의 강도가 개량되어 안정성을 확보한 것으로 확인되었다.

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Geotechnical Characteristics of DCM-Improved Specimen Under Artesian Pressure (피압 작용에 따른 DCM 개량체의 지반공학적 특성)

  • Yun, Dae-Ho;Kim, Yun-Tae
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.42 no.2
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    • pp.187-195
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    • 2022
  • This study investigated the effect of artesian pressure on mechanical properties of deep cement mixing (DCM)-improved specimens. Various laboratory tests such as unconfined compression test and scanning electron microscope (SEM) were conducted on DCM specimens which curied in a water tank with different artesian pressures. The artesian pressure was determined in consideration of the laboratory scale and the hydraulic gradient in field conditions. Results of experimental tests indicated that unconfined compressive strength, secant modulus, and unit weight of specimen decreased and water content tended to increase as an artesian pressure increased. The stress-strain behavior changed brittle to ductile behaviors as an artesian pressure increased. The outflow water from the water tank reacted with the phenolphthalein solution due to the leaching phenomenon of the improved specimen. SEM analysis also confirmed that a small amount of ettringite was formed between soil particles in the specimens with artesian pressure.

개량형 경수로 격납용기내 재장전수탱크의 수위계측기 선정

  • 한규성;박순희;최현호;김인식;손갑헌
    • Proceedings of the Korean Nuclear Society Conference
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    • 1996.05a
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    • pp.550-555
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    • 1996
  • 기존 발전소의 재장전수탱크는 격납용기 외부에 설치되어 있으며, 압력/차압 계측기를 이용하여 재장전 수탱크 수위를 측정하고 있다. 한편, 개량형 경수로기 경우에는 재장전수탱크를 격납용기 하부에 설치하도록 되어 있으므로 격납용기 벽이나 수집체적조 및 원자로 공동과 인접하게 되어 수위감시를 위한 압력/차압 계측기를 격납용기내에 설치하는 것은 매우 어려울 것으로 판단된다. 따라서, 본 논문에서는 격납용기내 재장전수탱크, 수집체적조 및 원자로 공동 수위계측기에 적용되는 미국 원자력규제위원회 및 전력연구소의 설계기준, 환경 및 기기생존 요건들을 검토한 후, 이에 따라 이 계측기들이 유지해야 할 설계 기능요건을 평가하고, 수위계측기의 형태 선정에 필요한 설계고려사항들을 파악하여 개량형 원자로의 해당 수위계측기의 선정 및 설계와 관련된 개념들을 설명하였다. 검토결과, 격납용기내 재장전수탱크 수위지시를 위해서는 압력/차압 계측기를 격납용기 외부에 설치하고, 수집체적조 및 원자로 공동의 수위감시를 위해서는 부유형 감지기를 사용하는 것이 발전소 운전 및 보수측면에서 장점이 있는 것으로 판단되어 이를 개량형 경수로 설계에 적용할 것을 제안하고자 한다.

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An Analysis of Behavior and Strength of Cement using Improved Materials by Laboratory Model Test (실내 모형실험에 의한 지반보강 개량체 특성 분석)

  • Oh, Philjin;Park, Minchul;Lee, Song
    • Journal of the Korean GEO-environmental Society
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    • v.13 no.7
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    • pp.19-29
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    • 2012
  • For foundation of Port structure, it is essential geotechnical understanding about feature of ground and the geologic formation which is different to terrestrial ground. What is most important is the understanding of soft ground clay, which is much softer than terrestrial ground. To build foundation of a port structure which is mainly gravity based on the special geographical circumstance that is on the sea, the improvement method of foundation should be applied according to soft clay ground features. Therefore, in this study, the behaviors of improved materials with strength were analyzed on the soft clay foundation where suppose to be located the foundation of port structure. The laboratory model test has been conducted in 2 cases with unconfined compression strength of improved materials, 25kPa and 125kPa. Cement, water, and in-situ soft clay were combined at a fixed rate and made a shape of 5cm diameter ${\times}$ 70cm height column. Improved materials were located with replacement ratio(11%, 35% and 61%) in 38cm diameter ${\times}$ 80cm height cylinder. Finally, the stress distribution ratio on the improved materials and clay, settlement was analyzed by applying a load of 10kPa, 30kPa, and 50kPa.

The Case Study on the Design, Construction, Quality Control of Deep Cement Mixing Method (심층혼합처리공법(DCM)의 설계, 시공 및 품질관리 사례 연구)

  • Kim, Byung-Il;Park, Eon-Sang;Han, Sang-Jae
    • Journal of the Korean Geosynthetics Society
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    • v.20 no.4
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    • pp.19-32
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    • 2021
  • In this study, evaluation and consideration of domestic/overseas design, construction, and quality control performed by the authors on the deep cement mixing method were performed, and improvements for the development of the DCM method were suggested in the future. As a result of this study, it was found that the cross-sectional area correction for strength is required during the laboratory test of mix proportion, and caution is required because the extrapolation method may lead to different results from the actual one. Applicable design methods should be selected in consideration of both the improvement ratio and the type of improvement during design, and it was confirmed that the allowable compressive strength to which the safety factor was applied refers to the standard value for stability review and not the design parameters. In the case of the stress concentration ratio, rather than applying a conventional value, it was possible to perform economical design by calculating the experimental and theoretical stress concentration ratio reflecting the design conditions. In the case where pre-boring is expected during construction, if the increased water content is not large compared to the original, there were cases where a major problem did not occur even if the result that did not consider the increase in water content was used. In addition, it was confirmed that when the ratio of the top treatment length to the improved length is high, a small amount of design cement contents per unit length can be injected during construction. In the case of quality control, it was evaluated that D/4~2D/4 for single-axis and D/4 point for multi-axis were optimal for coring of grouting mixtures. As an item for quality control, it is judged that the standard that considers the TCR along with the unconfined compressive strength of grouting mixtures is more suitable for the domestic situation.

Strength of Improved Soil on the Work-conditions of Deep Mixing Method (시공조건에 따른 심층혼합처리 개량체의 강도에 관한 연구)

  • Lee, Kwang-Yeol;Yoon, Sung-Tai;Kim, Sung-Moo;Han, Woo-Sun
    • Journal of the Korean Geotechnical Society
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    • v.23 no.7
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    • pp.99-104
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    • 2007
  • The deep soil mixing, on ground modification technique, has been used for many diverse applications including building and bridge foundations, port and harbor foundations, retaining structures, liquefaction mitigation, temporary support of excavation and water control. This method has the basic objective of finding the most efficient and economical method for mixing cement with soil to secure settlements through improvement of stability on soft ground. In this research, the experiments were conducted on a laboratory scale with the various test conditions of mixing method; the angle of mixing wing, mixing speed. Strength and shapes of improved soil of these test conditions of deep mixing method were analysed. From the study, it was found that the mixing conditions affect remarkably to the strength and shapes of improved soils.