• 제목/요약/키워드: Sand stone

검색결과 180건 처리시간 0.028초

GCP의 쇄석과 모래의 배합비 별 응력분담비 (Stress Concentration Ratio of GCP Depending on the Mixing Ratio of Crushed Stone and Sand)

  • 나승주;김민석;박경호;김대현
    • 한국지반공학회논문집
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    • 제32권9호
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    • pp.37-50
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    • 2016
  • 쇄석다짐말뚝(GCP)은 연약지반의 지지력 증가와 침하량의 감소를 실현할 수 있어 연약지반 개량에 활발하게 사용되고 있다. GCP 설계에 필요한 응력분담비는 치환율, 상재하중, 깊이 등에 따라 달라진다. 많은 연구자들이 현장실험, 실내실험, 수치해석 연구를 통해 쇄석으로 이루어진 GCP에 대해 치환율에 따른 응력분담비를 제시하였으나, 쇄석과 모래의 배합비에 따른 응력분담비에 관한 연구는 전무한 실정이다. 따라서 본 연구에서는 선행연구 분석과 수치해석을 통해 배합비와 치환율에 따른 응력분담비를 명확히 규명하고자 하였다. 이를 위해 유한요소해석 프로그램인 ABAQUS 6.12-4를 사용하여 GCP가 시공된 복합지반을 모델링하여 배합비와 치환율에 따라 복합지반의 과잉간극수압과 응력분담비를 분석하였다. 선행연구 분석결과, GCP 복합지반의 응력분담비에 관한 연구에서 일반적으로 현장에서 정재하시험, 실내시험, 수치해석을 통해 얻은 응력분담비는 각각 1.7~3, 2~7.5, 2~6.5 범위로 나타났으며, 쇄석과 모래의 배합비에 관한 연구에서는 일반적으로 클로깅현상을 저감시키기 위해 실내실험 한 결과로 쇄석과 모래의 최적배합비가 70:30으로 나타났다. 수치해석결과, 일반적인 GCP 복합지반의 치환율이 증가함에 따라 응력분담비가 치환율 30%까지는 증가하다가 40%에서는 다시 감소하는 경향이 나타났으며, 쇄석과 모래의 배합비에 따른 응력분담비는 일반적으로 모래의 함유량이 증가함에 따라 쇄석과 모래의 배합비가 70:30까지는 증가하다가 60:40 이후에 다시 감소하는 경향이 나타났다.

동해 울릉분지 남서부 대륙붕에서 채취된 시추퇴적물내 사암편의 기원 (Origin of Sandstone Fragments Within Core Sediments Obtained from Southwestern Continental Shelf of the Ulleung Basin, East Sea)

  • 이의형;이용국;신동혁;허식;김성렬;정백훈;한상준;천종화
    • 한국해양학회지:바다
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    • 제6권3호
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    • pp.126-134
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    • 2001
  • 대한해협의 북동쪽에 위치하는 해저곡에서 채취된 2점의 시추퇴적물에는 장경 약 7cm의 각진 사암편들이 협재 되어 있다. 이 시추퇴적물들의 퇴적상 분석과 사암편내에 포함된 개형충의 동정 등에 의해서 사암편의 기원과 해저곡 퇴적물의 퇴적환경을 해석하고자 한다. 시추퇴적물들은 해저곡의 수심 약 160m의 해저면에서 채취되었는데, 이곳은 천부탄성파 탐사(Chirp)자료에서 표층반사면은 확산되어 길게 연장되어 있으며, 내부반사파가 없거나 확산된 음파 특성을 보이고 있다 이 시추퇴적물들은 사암편들과 조개편들이 협재되는 상부 역질 모래퇴적물과 하부의 생물교란된 뻘퇴적물로 구성되어 있다. 하부의 생물교란된 뻘퇴적물은 내대륙붕 및 대륙사면의 홀로세 뻘퇴적물에 비해서 낮은 함수율(27${\sim}$44%)과 높은 전단응력(19.2${\sim}$>37 kPa)을 가진다. 그리고 뻘퇴적물의 점토함량은 48${\sim}$56%로, 내대륙붕에 발달된 하천 기원의 뻘퇴적물과 구성성분이 거의 유사하다. 시추자료 상부의 역질 모래퇴적물은 평균입도가 2.3${\sim}3.0\;{\phi}$이며, 사암편과 조개편들에 의해서 상향조립화 되어 있다 현재 대륙붕의 팔림세스트(palimpsest) 퇴적물은 대부분 뻘질 모래 또는 모래질 뻘 퇴적물(평균입도: 4.6${\sim}7.6\;{\phi}$ )로 구성되어 있다. 이 자료들에 의해서 시추퇴적물들은 선현세의 저해수면시기에 형성된 고하천과 고해안 퇴적층일 가능성이 크다. 한편 모래 퇴적물 내에 협재된 사암편들은 대부분 석영립과 생물쇄설성 입자로 구성되어 있으며, 탄산염질 니로 구성된 기질과 일부 해록석 입자와 빈 공극들이 관찰된다. 또한 EP-7 시추퇴적물내에 포함된 사암괸에서는 한류성 개형충 종인 Normanicythere sp.와 Kotoracythere sp.가 산출되었는데, 이들은 후기 플라이오세${\sim}$전기 플라이스토세를 지시하는 절멸종이다. 따라서 이 사암편들은 최후빙하기 동안에 해저곡 주변에 노출된 플라이오세-플라이스토세 기반암으로부터 운반된 고해안퇴적층의 일부로 해석된다.

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만경강에 서식하는 참종개 Iksookimia koreensis와 점줄종개 Cobitis lutheri의 서식환경과 섭식생태 (Habitat Environment and Feeding Habitat of Iksookimia koreensis and Cobitis lutheri (Pisces: Cobitidae) in the Mangyeong River, Korea)

  • 고명훈;박종영;김수환
    • 한국어류학회지
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    • 제21권4호
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    • pp.253-261
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    • 2009
  • 만경강에 서식하는 참종개와 점줄종개의 서식환경과 섭식생태를 2005년부터 2006년까지 조사하였다. 참종개와 점줄종개는 중 상류지역에 혼서하고 있었으나 미소서식지에서 참종개는 유속이 비교적 빠르고 수심 30~60 cm의 돌이 쌓인 곳에서, 점줄종개는 유속이 느리고 수심이 30~100 cm의 모래지역에서 서식하여 차이를 보였다. 두 종은 모두 주행성 어류로 3월부터 10월까지 활동기로, 11월부터 2월까지는 월동기로 나타났으며, 월동기간동안 참종개는 자갈과 돌이 쌓인 곳에, 점줄종개는 모래가 쌓인 곳에 파고 들어가 은신하였다. 참종개는 깔다구류와 수서곤충을 주로 섭식하였으며, 점줄종개는 깔다구류와 요각류, 물벼룩류를 주로 섭식하였고, 섭식률은 두 종 모두 4월과 9월에 높게 나타났으나 겨울동안은 섭식하지 않았다.

시멘트계 바탕 바름재용 현무암 석분슬러지 모르타르의 경화 특성 (Hardened properties of the cement based Basalt powder sludge mortar for surface preparation)

  • 장명훈;최희복
    • 한국건축시공학회지
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    • 제15권5호
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    • pp.451-456
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    • 2015
  • 본 연구는 시멘트계 바탕 바름재에 사용되는 바닷모래를 대체하기 위한 재료로서 현무암 가공과정에서 발생되는 현무암 석분슬러지를 재활용하기 위해 현무암 석분슬러지를 사용한 경화모르타르의 특성(연도변화, 응결경화, 흡수계수, 건조수축, 그리고 부착강도 실험)을 평가하였다. 현무암 석분슬러지를 사용한 경화모르타르는 콘크리트 바탕 바름재에 사용되는 기존의 보통모르타르의 특성과 유사하거나 좀 더 향상된 성능을 보였다. 그러나, 현무암 석분슬러지를 사용한 경화모르타르는 보통 모르타르보다 재령 8~9일 이후 건조수축이 증가되었고 부착강도는 감소되었다. 그러나 현무암 석분슬러지를 사용한 경우, KS F 4716 '시멘트계 바탕 바름재'에서 요구하는 최소 품질 규준은 만족하였다.

지방자치단체 환경영향평가 조례 비교 연구 (A Comparative Study on the Local Governments' Environmental Impact Assessment Regulations in Korea)

  • 성현찬;민수현
    • 환경영향평가
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    • 제12권3호
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    • pp.137-150
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    • 2003
  • This study aims to survey whether local governments have legislated laws and regulations on environment impact assessment system, to compare and analyze specific projects and their scale, assessment items, and procedures & discussion process, to identify issues and generate improvement plans, and to suggest a direction for future legislation to local governments that plan to legislate laws and regulations in the future. Major outcome of the study are as follows. First, terminologies used for environment impact assessment by local governments need to be unified. Also, laws and regulations need to be legislated soon. Second, in "urban development project" areas, a total of nine project areas including "quarrying of soil and stone, sand, gravel, and minerals" was essential common projects. A total of six project types were added or newly established compared to national systems. Among them, four project types were added within national-level project areas and two project types were not available under the national-level project areas and newly added due to the nature of local governments. Third, in terms of project scale, scale enhancement of "urban development project" was most common. Analysis showed that in case of clean natural environment such as Cheju Island, it is necessary to consider reinforcing project areas where development activities take place directly in forests or rivers such as "industrial base and complex development", "water resource development", and "development of tourism complex." Fourth, the discussion and review procedures of assessment reports were similar to those at government level. However, in case of Seoul city, it is required to write a "preparation plan" before drafting an assessment report. The city features partial introduction of scoping and screening, which allows to exempt discussion procedures if impact on environment is found to be minimal after drafting the assessment report. In case of national-level, it has a dual system that is split between Ministry of Construction and Transportation and Ministry of Environment. However, in case of environment impact assessment of local governments, it is a single system where city mayors and provincial governors are in charge of both project execution and environmental assessment. Therefore, the most important task is how to satisfy objectiveness and accountability.

S화력발전소 3, 4호기 증설에 따르는 정밀발파작업으로 인한 인접가동발전기및 구조물에 미치는 파동영향조사 (On the vibration influence to the running power plant facilities when the foundation excavated of the cautious blasting works.)

  • 허진
    • 화약ㆍ발파
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    • 제8권1호
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    • pp.3-16
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    • 1990
  • The cautious blasting works had been used with emulsion explosion electric M/S delay caps. Drill depth was from 3m to 6m with Crawler Drill $\varphi{70mm}$ on the calcalious sand stone(sort-moderate-semi hard Rock). The total numbers of feet blast were 88. Scale distance were induces 15.52-60.32. It was applied to propagation Law in blasting vibration as follows. Propagtion Law in Blasting Vibration $V=K(\frac{D}{W^b})^n$ where V : Peak partical velocity(cm/sec) D : Distance between explosion and recording sites (m) W : Maximum Charge per delay-period of eighit milliseconds or more(Kg) K : Ground transmission constant, empirically determind on th Rocks, Explosive and drilling pattern ets. b : Charge exponents n : Reduced exponents Where the quantity $D/W^b$ is known as the Scale distance. Above equation is worked by the U.S Bureau of Mines to determine peak particle velocity. The propagation Law can be catagrorized in three graups. Cabic root Scaling charge per delay Square root Scaling of charge per delay Site-specific Scaling of charge per delay Charge and reduction exponents carried out by multiple regressional analysis. It's divided into under loom and over loom distance because the frequency is verified by the distance from blast site. Empirical equation of cautious blasting vibration is as follows. Over 30m----under l00m----- $V=41(D/3\sqrt{W})^{-1.41}$ -----A Over l00m-----$V= 121(D/3\sqrt{W})^{-1.66}$-----B K value on the above equation has to be more specified for furthur understang about the effect of explosives, Rock strength. And Drilling pattern on the vibration levels, it is necessary to carry out more tests.

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고수부지를 이용한 여과습지의 수질정화 초기처리 (Treatment Efficiency of a Subsurface-Flow Wetland System Constructed on Floodplain)

  • 양홍모
    • 한국환경복원기술학회지
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    • 제4권4호
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    • pp.56-63
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    • 2001
  • This paper presents treatment efficiency and plant growth of a subsurface-flow constructed wetland system (23 m in length, 6.5 m in width, 0.65 m in depth) over one year after its establishment on floodplain of a stream in June 2000. An upper layer of 10 cm in depth was filled with course sand and the main biological layer of 50 cm depth with crushed stone with 8 - 15 mm in diameter. The system was planted with common reeds (Phragmites australis) grown on pots. Effluent discharged from a secondary-level treatment plant was funneled into it. Reed stems emerging in April 2001 grew up to 145.9cm until July 2001. The number of reed stems in July 2001 increased by about 11 times compared with that just after planting. The system was inundated seven times by storms over the monitoring period. Reeds were slightly bent after flooding, however they returned to almost upright standing in a couple of weeks. Small portion of inside slope of berm was eroded and the system surface had a sedimentation of 2 - 3 mm in depth. The average removal rates for SS, $BOD_5$, T-N and T-P was 73%, 70%, 53%, and 72%, respectively. The purification efficiencies for SS and $BOD_5$ were fairly good. The reduction rates for T-N was relatively low for the period of late fall through winter until early spring due to lower water temperature which retarded microbial nitrification and denitrification mechanisms. Reduction in the concentration of T-P during fall and winter was relatively higher than that during spring. Leach of phosphorous from plant litters lying on system surface and slight resuspension of precipitated phosphorous in substrates resulted in lower reduction for T-P in spring.

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하천호안공법의 시각적 선호도 - 광양시 동천을 사례로 - (Visual Preference of the Methods for River Embankment - The Case of Dongchon in Gwangyang -)

  • 이상석
    • 한국조경학회지
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    • 제34권3호
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    • pp.12-22
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    • 2006
  • The purpose of this study is to evaluate visual preferences of the methods for river embankment based on seasonal changes and to reveal the relationship between visual preference and effective factors, which are the physical and esthetic elements inside the river. For this research seven river embankment methods including concrete block, concrete wall, gabion, and vegetated concrete block were selected in Dongchon of Gwangyang. Twenty-eight pictures by the four pictures of each embankment method based on seasonal changes, the winter and summer of the first and second years after construction were used for a photo-questionnaire by 49 participants. In the analysis of the relationship between visual preference and effective factors, the independent variables included eight factors: form of the material, harmony with the surroundings, the cleanness of river floor, the green area of embankment methods, the water area in river floor, the stone and sand area in river floor, the planting area in river floor, and the area of embankment itself. The result of this study are as follows. First, visual preference in summer was higher than in winter, and the summer landscape of the second you scored the highest value for visual preference. Second, similarly to the way the vegetated concrete block produced a green effect, cobblestone and gabion embankments made of natural materials scored higher than others, whereas the concrete retaining wall scored the lowest of all methods because of it's artificiality. Third, the seven independent variables, except form of the material, are proved statistically significant at the 5% level. The water area in river floor, harmony with the surroundings, the planting area in river floor, and the cleanness of the river floor were revealed as more effective factors influencing visual preference. The research results suggest that the riverscape has to be controlled in terms of seasonal change and embankment methods. Natural materials and green effects in embankment methods are more important for increasing landscape preference, and the landscape factors inside a river should also be considered important variables. It is recommended that advanced study on other factors affecting visual preference of the riverscape be carried out to support this research.

삼천포화력발전소 3, 4호기 증설에 따르는 정밀발파작업으로 인한 인접가동발전기 및 구조물에 미치는 진동영향조사 (On the vibration influence to the running power plant facilities when the foundation excavated of the cautious blasting works)

  • 허진
    • 기술사
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    • 제24권6호
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    • pp.97-105
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    • 1991
  • The cautious blasting works had been used with emulsion explosion electric M/S delay caps. Drill depth was from 3m to 6m with Crawler Drill ø70mm on the calcalious sand stone (soft-moderate-semi hard Rock). The total numbers of fire blast were 88 round. Scale distance were induces 15.52-60.32. It was applied to propagation Law in blasting vibration as follows. Propagation Law in Blasting Vibration (Equation omitted) where V : Peak partical velocity(cm/sec) D : Distance between explosion and recording sites(m) W : Maximum Charge per delay-period of eighit milliseconds o. more(kg) K : Ground transmission constant, empirically determind on the Rocks, Explosive and drilling pattern ets. b : Charge exponents n : Reduced exponents Where the quantity D / W$^n$ is known as the Scale distance. Above equation is worked by the U.S Bureau of Mines to determine peak particle velocity. The propagation Law can be catagrorized in three graups. Cubic root Scaling charge per delay Square root Scaling of charge per delay Site-specific Scaling of charge per delay Charge and reduction exponents carried out by multiple regressional analysis. It's divided into under loom and over 100m distance because the frequency is verified by the distance from blast site. Empirical equation of cautious blasting vibration is as follows. Over 30 ‥‥‥under 100m ‥‥‥V=41(D/$^3$√W)$\^$-1.41/ ‥‥‥A Over 100 ‥‥‥‥under 100m ‥‥‥V=121(D/$^3$√W)$\^$-1.56/ ‥‥‥B K value on the above equation has to be more specified for furthur understang about the effect of explosives, Rock strength. And Drilling pattern on the vibration levels, it is necessary to carry out more tests.

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환경오염 방지를 위한 식물의 생태학적 연구(III) -도로변 식생과 중금속 함량 및 오염에 관한 연구 (Ecological Studies of Plants for Control of Environmental Pollution, III -The Studies on the Content and Contamination of Heavy Metals and Vegetation of Roadside-)

  • 차종환
    • Journal of Plant Biology
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    • 제17권4호
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    • pp.158-162
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    • 1974
  • Some ecological attributes of perennial plants and Pb contamination were analyzed for study plots near an entrance of Nevade Test Site at Mercury Valley, Nye County, Nevada. The surface of the desert pavement soil was composed of stones (1 to 4cm diameter). The underside of each stone was coated with coarse and fine sand (about 90%). The profiles of soil were constituted with the A-horizon and C-horizon only. The soil pH at the plots ranges from 7.6 to 8.5, C/N was 13 and cation exchange capacity showed 15me/100g. Nine species and 42 number of individuals were found in all plots. Franseria dumosa and Larrea divaricata were dominant species. The discrete clumps of vegetation were consisted of 9 species of common perennials and these were covered about 25% on desert pavement, on the other words, bare area without vegetation was about 75%. The size and spacing of the plants was irregular. Community coefficient as comparison between shrub species in these study area and those in near the low elevation desert indicated a low degree of similarity. Density, cover and productivity in the study plots as compared with those in the nearest study areas in Mercury Valley showed a higher value. The soils in the studied area involved high heavy metal contents in the plant tissue was higher than those of its soil. The leavds of Lycium andersonii tended to accumulate more Zn and Mo than those of the other species. Larrea divaricata leaves accumulated very high leaves of Fe and Ephedra nevadensis were generally high in Mn. Lead contamination was apparent in foliage of desert vegetation collected alongside the roadway, reflecting the variation in traffic volume. Lead contents greater than fifteen-fold of normal (low traffic) were found in plant foliage alongside the heavily traveled roadway. Lead content of old foliage by the heavily traveled roadway was as much as 129 ppm but that of new foliage 17 ppm only.

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