• 제목/요약/키워드: Inter sand layer

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모형토조 실험을 이용한 연약지반내 중간모래층이 호안제방하부 강제치환 깊이에 미치는 영향 연구 (Model Test on the Effect of the Depth of Revetment by Inter Sand Layer in Soft Ground)

  • 정형식;방창국;이용준
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.956-965
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    • 2005
  • In this paper, the effect on the forced replacement depth of the revetment in soft soil with inter sand layer is analyzed by model test. In the result, the forced replacement occur in 60 second from filling the embankment material. The shape of the forced replacement depth is like to punching shape. Then, in case of thin inter sand layer and near the embankment, the forced replacement depth of inter sand layer case is more than only clayed soil case.

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중간 모래층이 있는 연약지반내 제방하부 강제치환 깊이 산정에 관한 연구 (A Study on Replacement Depth in Soft Soil with Inter Sand Layer)

  • 정형식;방창국
    • 한국지반환경공학회 논문집
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    • 제4권4호
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    • pp.61-71
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    • 2003
  • 실트질 점토로 이루어진 연약지반의 호안 제방축조는 성토 제방하중에 의한 연약지반내 강제치환 공법으로 이루어지고 있으며, 축조 제방하부 강제치환 깊이는 호안 제방의 안정성에 큰 영향을 미치고 있다. 기존의 제방하부 강제치환 깊이 산정방법은 하부 연약점토지반의 비배수 전단강도 증분율을 고려한 제방하부 연약지반의 지지력과 성토제방 하중에 의해 산정하고 있다. 그러나 지반 층후 특성에 따라 중간층 형태의 점토질 실트층 또는 모래층이 있는 경우가 있으며, 이러한 점토질 실트층 또는 모래층은 제방하부 연약지반의 지지력에 영향을 미치게 되어 강제치환 깊이에 영향을 미치게 된다. 본 논문에서는 중간 모래층이 있는 연약지반내 제방 축조시 강제치환 깊이를 Perloff et al.(1967) 영향계수를 고려한 성토제방 하중과 층두께 가중평균 지지력(Bowles, 1988)에 의해 산정하였으며, 수치해석(FLAC)적 방법에 의한 산정결과와 비교 분석하였다. 해석결과 제방하부 접지폭이 $0.2B_o$(중간 모래층), $0.5B_o$(단일층)인 경우 산정된 강제치환 깊이는 수치해석과 매우 근접하는 것을 알 수 있었으며, 제방 하부 접지폭의 영향보다 비배수 전단강도 및 중간 모래층 두께, 중간 모래층 위치의 영향이 큰 것을 알 수 있었다. 또한 중간 모래층 두께가 작을수록 강제치환 깊이는 증가하며, 중간 모래층 위치가 증가 할수록 강제치환 깊이는 증가하고, 비배수 전단강도가 감소할수록 강제치환 깊이가 증가하는 것을 알 수 있었다.

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정동진 단구 자갈층과 충진 물질의 입도 및 형상 특성에 대한 연구 (A study on the granulometric and clastshape characteristic of gravel terrace deposit at Jeongdongjin area)

  • 김종연;양동윤;신원정
    • 한국지형학회지
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    • 제23권1호
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    • pp.17-33
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    • 2016
  • Samples from newly exposed outcrop of sedimentary layers forming Jeongdongjin coastal terrace in Gangreung area are collected and analyzed to find the sedimentary environment. The site are located at the gentle hillslope of the terrace surface area. The height of the outcrop is about 8m and the altitude of it's highest part is 68~73m MSL. The lowest part of this out crop is the partly consolidated sand layer with gravel veneer within it. It is found that this part is not in-situ weathered sand stone through the OSL method. This sand layer is overlain by the gravel layer with sand matrix. The shapes of the gravels from this part are mainly 'platy', 'elongated', and 'bladed' by the index of Sneed and Folk(1958). In addition, mean roundness is not so high. It is sceptical to regard this part as marine sediments which are continuously exposed to erosional processes. The boundary between the lowest sand layer and gravel layer showing the abrupt change in forming material without any mixture or transitional zone, so gravels are seemed to deposited after some degree of consolidation of the lowest sand layer. In addition, the hight of the boundary between layers are changed by the place, so the surface of the partly consolidated sand layer is not flat and has irregularity on topography when it buried by gravels. Main part of this out crop is the poorly sorted coarse gravel(22.4mm) with sand matrix($1.36{\phi}$) layer with at least 2m thick covering the relatively fine gravels discussed above. Over 20% of particles have 'very platy', 'very elongated' and 'very bladed' shape and only less than 5% of particles have 'compact' shape, So this particles are also very hard to be regard as marine gravels which are abraded by marine processes. It can be concluded that this gravel layer formed by fluvial processes rather than coastal processes base on the form of the clast and sedimentary structure. The gravel layer is covered by fine($3{\sim}4{\phi}$) material layers of psudo-gleization which showing inter-bedding of red and white layers. Chemical composition of matrix and other fine materials should be analyzed in further studies. It is attempted to fine the burial ages of the sediment using OSL method, but failed by the saturation. So it can be assumed that these sediments have be buried over 120ka.

동해남부해역과 울릉분지의 퇴적상과 퇴적작용 (Sedimentary Facies and Processes in the Ulleung Basin and Southern East Sea)

  • 이병관;김석윤
    • 한국수산과학회지
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    • 제40권3호
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    • pp.160-166
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    • 2007
  • The coarse deposit with a lower mud content adjacent to the shelf of the southern East Sea is probably a "relict" sediment deposited in response to a lower stand of sea level during the Pleistocene. The sediment that developed on the slope and in the deep sea was river-borne primarily and was secondarily reworked or redistributed by the Tsushima Warm Current from the East China Sea. The clay mineralogy of the area suggests various sources of fine-grained sediment from adjacent rivers, the Korea Strait, volcanic material from Ulleung Island, and the Japan coast. Massive sand, bioturbated mud, homogeneous mud, and laminated mud were the dominant facies found in the core sediments from the study area. The massive sand was mainly volcanic ash from an eruption on Ulleung Island (9300 yr BP) and consisted of colorless pumiceous glass and a black scoriaceous type. The sedimentation rates on the slope, based on the Ulleung-Oki ash layer, were about 10cm/ky higher than in the basin. Other than the coarse-grain sediment, the mean size of the fine sediment dominating the bioturbated and homogeneous muds in the basin and the laminated mud on the slope was 6-10 phi. This indicates a difference in the major sedimentary process: hemipelagic sedimentation in the Ulleung Basin and mass flow deposition, such as turbidite, on the slope of the southern East Sea.

균질한 매질 내 Calcium polysulfide 주입에 따른 고농도 중금속 오염 지하수 정화 타당성 검토 (Feasibility Evaluation for Remediation of Groundwater Contaminated with Heavy Metal using Calcium Polysulfide in Homogeneous media)

  • 고현우;주진철;남경필;문희선;윤성희;이동휘;장소예
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제28권1호
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    • pp.1-14
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    • 2023
  • In this study, column tests using relatively uniform Jumunjin sand media were conducted to evaluate the feasibility of calcium polysulfide (CaSx, CPS) in removing high concentration of Zn2+ in groundwater. The injected CPS solution reacted rapidly with Zn2+ in artificial groundwater and effectively reduced Zn2+ by more than 99% through metal sulfide precipitation. Since the density (d = 1.27 g/cm3 ) of CPS solution was greater than that of water, CPS solution settled down rapidly while capturing Zn2+ and formed stable CPS layer similar to dense nonaqueous phase liquid. Mass balance analysis on Zn2+ in CPS solution suggested that CPS solution effectively reacted with Zn2+ to form metal sulfide precipitates except for high groundwater seepage velocity of 400 cm/d. With greater groundwater seepage velocity, injected CPS did not completely dissolve at the CPS-water interface, but a partially-misible CPS layer continuously moved and reacted with Zn2++ in the direction of groundwater flow. Since hydraulic conductivity (Kh) decreased slightly due to the generated metal precipitates in the inter-pores of media, injection of CPS solution should be optimized to prevent clogging. As evidenced by both XRF and SEM/EDS results, ZnS precipitates were clearly observed through the reaction between the CPS solution and Zn2+. Further study is warranted to evaluate the feasibility of CPS to remove high-concentration heavy metalcontaminated groundwater in complex and heterogeneous media.