• 제목/요약/키워드: silty soil

검색결과 383건 처리시간 0.034초

자연지질매체를 이용한 PCE로 오염된 지하수 정화 (The effect of permeable geobarrier using gravel bean and silty clay for remediation of PCE contaminated groundwater)

  • 이달희;전이원;장호완;이종열;서형기
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2005년도 총회 및 춘계학술발표회
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    • pp.110-113
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    • 2005
  • The objective of this study was to examine the effect of proposed permeable eobarrier system for removal of PCE from groundwater. The materials used for the natural geobarrier are gravel bean and silty clay. In addition, the effect of Pyeongtaek soil on PRB assessed in this experiments. It was observed that the adsorption of PCE in natural geobarrier system is eligible for real site. However, natural geobarrier system has various factors based on using materials. Therefore, more laboratory work is needed to study about permeable geobarrier.

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부곡통의 분류 (Taxonomical Classification of Bugog Series)

  • 송관철;현병근;손연규;홍석영;김이현;최은영
    • 한국토양비료학회지
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    • 제42권6호
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    • pp.472-477
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    • 2009
  • Alfisols로 분류되고 있는 부곡통을 재분류하기 위하여 부곡통 대표단면의 형태적 특성을 조사하고, Soil Taxonomy의 표 준 분 석 방 법 인 Soil Survey Laboratory Methods Manual에 따라서 토양을 분석하여 laboratory data sheets를 작성하였다. Ap층 (0~22 cm)은 진갈색 (7.5YR 4/6)의 양토이고, BAt층 (22~41 cm)은 갈색 (7.5YR 4/4)의 식양토, Bt1층 (41~59 cm)은 진갈색 (7.5YR 4/6)의 미사 질식양토, Bt2층 (59~78 cm)은 진갈색 (7.5YR 4/6)의 미사질식양토, Btx1층 (78~90 cm)은 진갈색 (7.5YR 4/6)의 미사질식양토, Btx2층 (90~160 cm)은 갈색 (7.5YR 4/4)의 미사질식양토이다. 부곡통은 화강편마암, 화강암, 또는 편암지대의 충적붕적층을 모재로 하는 토양으로 약한 경사지에 분포하며, 대부분 밭으로 이용되고 있다. Ap층 (0~22 cm)은 ochric 감식표층, BAt층에서 Btx2층 (22~160 cm)까지는 점토집적층인 argillic층을 보유하고, 78~160 cm 깊이에 fragipan을 보유하고 있다. 기준깊이인 fragipan 상부 경계 아래 75 cm 깊이인 153 cm 깊이에서의 염기포화도 (양이온 합)가 35.0% 미만으로 낮다. 따라서 부곡통은 Alfisols이 아니라 Ultisols로 분류되어야 한다. Udic 토양수분상을 보유하고 있으므로 부곡통은 Udults 아목으로 분류될 수 있다. 무기질 토양표면으로부터 100 cm 이내 깊이에 fragipan을 보유하고 있으므로 Fragiudults 대군의 분류기준을 충족시키고 있다. 우리나라 토양으로는 처음으로 보고되는 Fragiudults이다. 부곡통은 Fragiudalfs의 전형적인 특성을 나타내므로 아군은 Typic Fragiudults로 분류된다. 토성속 제어부 위에서의 토성속이 fine silty이고, mesic 토양온도상을 보유한다. 따라서 부곡통은 Fine loamy, mixed, mesic family of Typic Fragiudalfs가 아니라 Fine silty, mixed, mesic family of Typic Fragiudults로 분류되어야 한다.

반목하중으로 인한 지반의 변형 예측 (Approximate Prediction of Soil Deformation Caused by Repeated Loading)

  • 도덕현
    • 한국농공학회지
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    • 제30권3호
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    • pp.69-81
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    • 1988
  • The Repeated Load Triaxial and Oedometer Tests to the weathered granite & silty clay soil have been fulfilled to investigate their dynarnic characteristics. The results obtained are summarized as follows ; 1. In the relation between the repeated triaxial compression and the oedometer test, the recoverable strain of weathered granite soil showed a tendency to decrease by the increase of the repeated loads number(N), and that of silty clay showed approximately constant values while the total strain increased continuously. 2. The changes of plastic strain was dependent to the level of deviator stress which is the most important element in the calculation of soil deformation under repeated load condition. And there was a significance of 10% between the level of stress and plastic strain. 3. When the soil was aimost dried or saturated to 100%, the deformation by the repeated loads was small. However the deformation showed peak around the saturation of 50%. 4. When the deformation was predicted by the repeated triaxial load tests of a laboratory, it is desirable to introduce the threshold stress concept in the calculation of deformation of subgrade of the pavement. 5. The improved design equation (Eq. 16) introducing the modulus of conversion(Fo), which is based on the Boussineq' s theory, is considered to be rational in the design of flexible pavement. From the above results, the deformation to the repeated traffic loads could be predicted by the repeated triaxial tests on the pavement materials or undisturbed soil layers, therefore it is think that the durable and econornic pavement could be constructed by reflecting that to the design.

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실트질 모래지반의 비선형 거동특성 분석 (Analysis of Non-Linear Behavior in Silty Sand)

  • 이경숙;김현주;이준환
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.1159-1166
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    • 2005
  • In the present study, a series of laboratory tests with sands of different silt contents, are conducted and methods to assess non-linear behaviors based on in-situ test results are proposed. Modified hyperbolic stress-strain model is used to analyze non-linearity of silty sands in terms of non-linear degradation parameters f and g as a function of silt contents and relative density $D_R$. Stress-strain relationship results were obtained from a series of triaxial tests on sands containing different amounts of silt. Initial shear modulus which was applied to normalize modulus degradation of silty sands were determined based on the resonant column test results. From the laboratory test results, it was observed that, as the relative density increases, values of f decrease and those of g increase. Cone resistance $q_c$ for silty soil condition used in the triaxial tests were estimated based on the cavity expansion analysis. A suggestion to make an estimation of degradation parameters f and g as a function of fine contents is addressed in terms of cone resistance $q_c$ .

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Effects of Soil Moisture on the Growth of American Ginseng (Panax quinquefolium L.)

  • Li, Thomas S.C.;Berard, R.G.
    • Journal of Ginseng Research
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    • 제22권2호
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    • pp.122-125
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    • 1998
  • Adequate available soil moisture level is considered to be one the most important components in growing high yields of good quality ginseng. Excessive soil moisture may promote stillborn fungal pathogens and cause serious diseases in ginseng fields. This study showed that soil moisture levels for optimum growth and health of ginseng varied with soil texture. Fifty- percent available moisture for sandy loam and 75% for silty loam are the best moisture levels for good growth and higher yield.

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토양과 수위 및 차광의 차이가 창포(Acorus calamus var. angustatus)의 생육에 미치는 영향 (Effects of Soil, Water Level and Shading on Growth of Acorus calamus var. angustatus)

  • 신승훈;김민수;김윤하
    • 한국조경학회지
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    • 제32권5호
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    • pp.63-72
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    • 2004
  • This study was carried out to analyze effects of soil, water level and shading on growth of sweet flag(Acorus calamus var. angustatus). Three types of soil were used, which included sandy, silty loam and paddy loam soil. Three levels of shading were applied in the experiment: no shading, 55% shading and 75% shading. The water levels were also adjusted to three levels in the experiment. The results are summarized as follows; 1. The cultivation of sweet flag in sandy soil with low water level resulted in decreased fresh weight compared to that at planting. This result indicates that the water level should be maintained higher than the soil surface for sweet flag growth in sandy soil. 2. 5 out of 72 sweet flags died in paddy loam soil. Water saturation of soil easily reduced paddy loam soil, and root growth of sweet flags in reduced soil condition were restricted, resulting in the dead plants. 3. The growth of sweet flag in paddy loam soil was worse than those in silty loam, indicating that reduced soil conditions in paddy loam is harmful to root growth. In planting sweet flags in paddy loam, improved soil aeration in paddy loam soil is necessary for good growth of sweet flag. 4. The maintaining of high water levels is better than that of low water levels in sweet flag cultivation. During winter, soil near the water surface froze and sweet flags in frozen soil were stressed physiologically. Maintaining high water levels prevents soil from being frozen which is good for the growth of sweet flags. 5. There was not significant difference in the growth of the sweet flag between non-shading and 55% shading. It thus appears that sweet flags can grow soundly under shading rate lower than 55%.

저소성 실트질흙의 흙 시멘트에 관한 연구 (A Study on the Cement Mixture With Low Plasticity Silty Soil)

  • 김주범;박완순류기송김성교
    • 한국농공학회지
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    • 제17권2호
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    • pp.3778-3783
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    • 1975
  • The objective of this study is to determine an appropriate cement of soil-cement in which silty soil of salty tidal flat with low plasticity was used. Physical, chemical and mechanical tests were conducted to find out the standard properties of the soil to be used. Various cement contents used in this test were 8%, 10%, 12%, and 14%, and the compressive strength was tested after 7 days and 28 days of standard curing in the above each cement content respectively. The results obtaind are summarized as follows. 1. As the cement content was increased from 8% to 14%, Maximum dry density (M.D.D.) and optimum moisture content (O.M.C.) were not changed remarkably. 2. Density of soil-cement was directly proportional to cement content and inversely proportional to water content. 3. OMC was generally decreased in proportion to the increase of cement content. 4. Compressive stranth was directly proportional to centent and inversely proportional to water content. 5. In freezing and thawing test, maximum loss of 10% in the total Weight was found on the 8% cement mixture. and This loss was rapidly decreased to 2% when the Cement content of the mixture was more than 10%.

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정수장(淨水場) 슬러지의 매립장(埋立場) 복토재(覆土材)로의 활용(活用)에 관(關)한 연구(硏究) (The Use of Water Treatment Sludge as a Landfill Cover Material)

  • 이기출;오준성
    • 청정기술
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    • 제8권2호
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    • pp.67-76
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    • 2002
  • Dewatered sludge of 400,000t/y from water treatment plants in Korea is being disposed through landfill and ocean dumping. However, the disposal is posing more and more serious environmental problems at the same time not only because of landfill site shortage in municipal suburbs, but because of the concern it will contaminate the oceans. In this study, the research on utilizing the sludge dried by flash dryer as covering soil in the landfill sites was carried out to solve these problems on environmental affinity. Both dewatered and dried sludge were exposed to the natural condition and observed according to the atmospheric changes. An experiment of soil engineering characteristics of the dried sludge and tests on mixed sludge(silty sandy soil : dried sludge = 10:90 ~ 30:70) such as particle size distribution, liquid and plastic limit, moisture content, specific gravity and compaction test were carried out. According to the compaction test, the compaction was confirmed as the optimum water content ratio was observed in the condition of SM-silty sand of particle size distribution, NP of liquid and plastic limit, 101.4% of moisture content, 2.04~2.12 of specific gravity. The results showed that dried sludges mixed with at least 30% of natural soil could be used as daily covering soil in the landfill sites.

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다중채널 표면파 자료를 이용하여 구한 S파 속도와 감쇠지수 구조: 낙동강 하구의 연약 지반 특성 (S-wave Velocity and Attenuation Structure from Multichannel Seismic surface waves: Geotechnical Characteristics of NakDong Delta Soil)

  • 정희옥
    • 한국지구과학회지
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    • 제25권8호
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    • pp.774-783
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    • 2004
  • 다중채널 탄성파 자료를 이용하여 낙동강 하구 삼각주 지역 연약지반의 지반 특성을 구하기 위하여 S파 속도와 Q$s^{-1}$ 구조를 구하고 이를 시추조사 결과와 비교하였다. 다중채널 신호의 분산곡선을 역산하여 S파 속도구조를 구하고 감쇠지수(attenuation coefficient)를 구하였다. 다중채널 신호 중 음원에서 가장 가까운 신호를 기준 신호로 정하고 10 Hz에서 45 Hz 사이의 주파수에 대하여 거리에 따라 기준 신호에 대한 진폭의 비가 감소하는 정도를 나타내는 기울기를 구하여 감쇠지수를 결정하였다. 이 감쇠지수를 역산하여 지반 최상부 8 m 층의 S파 속도와 함께 Q$s^{-1}$를 구하였다. 이 지역의 시추조사에 의하면 이 지역의 지층은 크게 상부 4 m 실트질 모래층과 하부 4 m 실트질 점토층으로 나누어진다. 표면파 역산에 의해 구해진 S파 속도와Q$s^{-1}$를 시추조사 결과와 비교해보면, 상부 실트질 모래층에서 S파 속도의 공간적 해상도는 약 80m/sec로 하부 실트질 점토층의 속도 40m/sec보다 상대적으로 높은 값을 보인다. 각 층에서 S파 속도의 공간적 해상도는 뚜렷하다. Q$s^{-1}$의 공간구조는 상부 실트질 모래층에서 약 0.02를 보이고 하부 실트질 점토층에서 0.03으로 증가하는 양상을 보인다. Q$s^{-1}$의 공간적 해상도는 상부 약 5 m 구간에서는 양호하나 그 보다 깊은 곳에서는 공간적 해상도가 아주 낮아지는 것을 볼 수 있다. 이 조사지역에서는 실트질 모래층에서 실트질 점토층보다 높은 S파 속도가 나타나고 낮은 Q$s^{-1}$ 값을 보인다. 그러나, 지반의 S파 속도와 Q$s^{-1}$를 결정하는 다른 많은 요인들이 있으므로 이를 일반화하기 위해서는 연약지반의 S파 속도와Q$s^{-1}$에 관한 자료와 연구가 집적되어야 할 것이다.

A numerical analysis of the equivalent skeleton void ratio for silty sand

  • Dai, Bei-Bing;Yang, Jun;Gu, Xiao-Qiang;Zhang, Wei
    • Geomechanics and Engineering
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    • 제17권1호
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    • pp.19-30
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    • 2019
  • Recent research on the behavior of silty sand tends to advocate the use of equivalent skeleton void ratio to characterize the density state of this type of soil. This paper presents an investigation to explore the physical meaning of the equivalent skeleton void ratio by means of DEM simulations for assemblies of coarse and fine particles under biaxial shear. The simulations reveal that the distribution pattern of fine particles in the soil skeleton plays a crucial role in the overall macroscopic response: The contractive response observed at the macro scale is mainly caused by the movement of fine particles out of the force chains whereas the dilative response is mainly associated with the migration of fine particles into the force chains. In an assembly of coarse and fine particles, neither all of the fine particles nor all of the coarse ones participate in the force chains to carry the external loads, and therefore a more reasonable definition for equivalent skeleton void ratio is put forward in which a new parameter d is introduced to take into account the fraction of coarse particles absent from the force chains.