http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
Undrained Shear Behavior of Sandy Soil Mixtures
Kim Ukgie(김욱기),Ahn Taebong(안태봉) 한국지반환경공학회 2011 한국지반환경공학회논문집 Vol.12 No.8
지반공학에서 흙은 흙 입자에 의한 세립분 함유율(Fc=50%)에 따라 모래와 점토로 분류되며, 그들의 역학적 거동에 의해 설계가 이루어진다. 그러나, 모래-점토 혼합토는 일반적으로 intermediate soils로 불리어, 모래나 점토로 쉽게 구분할 수 없다. 본 연구에서는 다양한 비율을 갖는 실리카모래 세립혼합토에 대하여 정적비배수 전단시험을 수행하였고, 미리 계산된 에너지의 다짐방법과 예압밀법을 이용하여 모래부터 점토에 이르는 폭넓은 범위의 흙 구조에 대해 공시체를 준비하였다. 한계 세립함유율 보다 작은 혼합토의 전단강도는 세립분이 증가할수록 증가하며 최대 축차응력비는 조밀한 시료에 대하여 감소하고 느슨한 시료에 대하여 증가한다. 그 후, 골격간극비의 개념을 이용하여 혼합토의 단조 전단강도를 평가하였으며. 이에, 혼합토의 전단강도는 모래입자가 이루는 골격구조에 밀접한 관계가 있음을 알았다. In the part of geotechnical engineering, soils are classified as either the coarse grained soil or the fine-grained soil following the fine content(Fc=50%) according to the granularity, and appropriate design codes are used respectively to represent their mechanical behaviour. However, sand-clay mixtures, which are typically referred to as intermediate soils, cannot be easily categorized as either sand or clay. In this study, several monotonic undrained shear tests were carried out on Silica sand fine mixtures with various proportions, and a wide range of soil structures, ranging from one with sand dominating the soil structure to one with fines controlling the behaviour, were prepared using compaction method or pre-consoldation methods in prescribed energy. The shear strength of mixtures below the threshold fines content is observed that as the fines content increases, maximum deviator stress ratio decrease for dense samples while an increase is noted for loose samples. Then, by using the concept of fines content and granular void ratio, the monotonic shear strength of the mixtures was estimated. It was found that the shear behavior of mixtures is greatly dependent on the skeleton structure of sand particles.
Shear Strength of Intermediate Soils with Different Types of Fines and Sands
Ukgie Kim,Taebong Ahn 한국지반환경공학회 2013 한국지반환경공학회논문집 Vol.14 No.1
In this paper, a series of monotonic undrained shear tests were carried out on four kinds of sand-fine mixtures with various fines content. Two kinds of sands (Silica sand V3, V6) and fines (Iwakuni natural clay, Tottori silt) were mixed together in various proportions, while paying attention to the void ratio expressed in terms of sand structure (Fc≤Fcth). The undrained shear strength of mixtures below the threshold fines content was observed so that as the plastic fines content increases, maximum deviator stress ratio decrease for dense samples while an increase is noted for loose samples. For non-plastic fines, the increase in the amount of fines leads to an increase in density of the soil, which results in an increase in strength. Then, the monotonic shear strength of the mixtures was estimated using the concept of granular void ratio. It was found that the shear strength of mixtures is greatly dependent on the skeleton structure of sand particles.
수중 구조물 골재 속채움 시 수중 불분리성 혼화제의 적용 효과
김욱기(Ukgie Kim),최창호(Changho Choi),박봉근(Bonggeun Park),Zhuang Li,조삼덕(Samdeok Cho) 한국지반환경공학회 2014 한국지반환경공학회논문집 Vol.15 No.9
수중 구조물의 건설공사 수요 증가에 따라 구조물을 지반에 고정시키고 지지하기 위한 해양 기초 및 수중 그라우트재에 대한 관심이 높아지고 있고, 이에 대한 다양한 연구가 진행되고 있다. 수중에 시공되는 그라우트재는 물의 흐름에 의해 유실?교란되기 쉽고 양생 중에 재료분리 현상 등으로 인해 시공품질을 확보하기 어려워 설계 강도에 큰 영향을 미친다. 본 연구에서는 해상모노파일 속채움과 같이 골재를 채운 후 그라우트재를 주입하는 프리플레이스트 공법에 대한 수중 불분리성 혼화제의 적용 효과를 파악하기 위해 골재 크기, 그라우트재의 종류, 물?시멘트비 및 혼화재 등 다양한 시험조건을 상정하여 블리딩 및 압축강도 등의 실내시험을 수행하였으며, 이에 따른 특성을 비교?평가하였다. With increasing underwater structure construction, there is high interest in offshore foundation and underwater grout and various study has been done in this area. For grout materials constructed underwater, it may be washed away by water or easily disturbed and material separation phenomenon during curing period always happens. As a result, it is difficult to ensure construction quality and this has a significant influence on the design strength of structure. In this study, to understand application effects of anti-washout admixture for the preplaced construction method, where grout is injected in monopile after filled with aggregates, laboratory tests on bleeding and compressive strength of anti-washout admixture were performed under various test conditions varying size of aggregate, water and cement ratio and admixture, and test results were compared and evaluated.
해수와 담수에서 점탄성을 갖는 그라우트재의 공학적 특성 평가
김욱기(Kim, Ukgie),조삼덕(Cho, Samdeok),박봉근(Park, Bonggeun),송병덕(Song, Byeongdeok),김주형(Kim, Juhyong) 한국지반환경공학회 2012 한국지반환경공학회논문집 Vol.13 No.6
일반적인 그라우팅 재료는 물속에서 재료 분리가 발생하여 수중 그라우팅 작업시 시공 품질 확보가 매우 어렵다. 최근에는 다양한 혼화제를 첨가하여 수중에서 재료분리가 발생하지 않는 수중 불분리성의 그라우팅 재료들이 개발되고 있다. 본 연구에서는 계면활성제계 개질제를 이용하여 수중에서 재료분리가 발생하지 않으면서도 유동성을 충분히 갖는 점탄성 그라우트재를 개발하고 실내시험을 통해 해수 및 담수에 수중 불분리성 그라우팅 재료와 일반 그라우팅 재료를 시공하였을 때의 공학적 특성을 분석하였다. 본 연구에서 개발한 수중 불분리성 그라우팅 재료는 일반 그라우트재와 비교하여 해수와 담수 상태에서 충분한 강도가 발휘되었으며 수중에서 재료 분리가 발생하지 않아 수중에서도 좋은 시공 품질을 확보할 수 있을 것으로 평가되었다. In general, it is critical that grout consistency permit the complete filling of void space without segregation of ingredients. Recently, the antiwashout agent is used on underwater grout materials for preventing the grout from the segregation in water. This study introduces a new type of antiwashout underwater and flowable grout material using viscous modifiers and its characteristics comparing with conventional grout materials in fresh and sea water. It is found that the antiwashout underwater grout both in fresh and sea water has enough strength and good resistance to segregation.
수중 가압식 매립방법을 이용한 석탄회 저강도고유동화재의 고밀도화 특성
김주형(Juhyong Kim),조삼덕(Samdeok Cho),김욱기(Ukgie Kim),공진영(Jinyoung Kong),정혁상(Hyuksang Jung),천병식(Byungsik Chun) 한국지반환경공학회 2013 한국지반환경공학회논문집 Vol.14 No.2
본 연구에서는 수중 가압식 매립방법을 이용하여 석탄회를 주재료로 하는 저강도 고유동화재(CLSM)를 대상으로 매립재 고밀도화 가능성에 대한 모형시험을 수행하고 그 결과를 분석하였다. 배출압에 의한 밀도 변화는 저강도 고유동화재를 구성하는 매립회와 비회의 배합비에 큰 영향을 받고 배출관의 위치에 따라서도 큰 영향을 받는 것으로 나타났다. 수중에서 가압 배출하는 경우, 배출관 주변을 중심으로 단위중량이 상대적으로 큰 것으로 나타나 배출압으로 인한 주변지반 밀도 증가효과가 발생하는 것으로 나타났으며, 실제 매립현장에서도 배출압의 효과를 이용할 수 있을 것으로 판단된다. This study introduces a densification technique of controlled low strength materials (CLSM) made with coal ashes by pump discharge pressure. Based on a small-scale laboratory test results, unit weight of CLSM around discharge pipe is greater than that of relatively some distant area from discharge pipe. It is also found that densification of CLSM depends on not only mixture rate of pond ash but also fly ash and location of discharge pipe.
Shear Band Formation in Granular Materials with Different Particle Shapes behind a Retaining Wall
Li Zhuang,Ukgie Kim 한국지반환경공학회 2013 한국지반환경공학회논문집 Vol.14 No.9
Local deformations in back filling materials of two sands and one glass bead with different particle shapes behind a rigid retaining wall were studied. Two kinds of boundary conditions were compared: active wall translation and active rotation of the wall about its toe. Effect of the speed of active wall translation was also investigated. The digital image correlation method was used to analyze local deformation developments inside the materials. Test results showed that particle shape and density mainly influence the inclination angle and width of the shear band. The general shear band pattern is strongly dependent on the wall movement mode, while it was little influenced by particle shape. Within a limited range of wall speed in this study, shear band became wider and local deformation became larger with increase of wall speed.
Investigation of One-dimensional Stress-Release Mechanism in Sand from Model Test
Li Zhuang,Dongwook Kim,Ukgie Kim 한국지반환경공학회 2013 한국지반환경공학회논문집 Vol.14 No.10
This paper explores stress release induced by unloading in dry sand. A series of model tests were carried out to measure stresses developed in testing sand during loading and those released during unloading for different boundary conditions. It was found that stress in the sand increased linearly with applied load. At the onset of unloading, almost no stress release was observed. Significant stress release took place when the shear stress in the sand induced by unloading exceeded the frictional resistance and caused movement of sand particles. The initiation and the magnitude of stress release depend on the stress condition prior to unloading, the decrease of external load, and also the frictional resistance in sand. A new conceptual stress-release model was next developed based on the model test results by considering the fundamental frictional behavior of granular materials.