• Title/Summary/Keyword: 포화 투수층

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Numerical Analysis for the Geological Engineering Characteristics of Unconsolidated Sediment (미고결 퇴적물의 지질공학적 특성에 대한 수치해석적 연구)

  • CHO Tae-Chin
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.23 no.3
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    • pp.215-224
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    • 1990
  • Finite element model capable of solving coupled deformation-fluid diffusion equations for the fully saturated porous medium was developed using Galerkin's residual method. This model was used to study the mechanical and hydraulic behaviors of unconsolidated sediment near South Harbor, Pusan. The vertical displacement of top surface clay sediment, when subjected to the external load, is significantly affected by the excessive pore pres- sure buildup and its decay due to the pore fluid diffusion. The sand deposit overlain by the much less permeable clay layer serves as a flow channel. Consequently, the fluid diffusion due to pore pressure difference is significantly facilitated, which also affects the diffusion-dependent sediment deformation.

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Enhanced Migration of Gasohol Fuels in Clay Soils and Sediments (Gasoline-ethanol(Gasohol)혼합액의 점토층 내 이동에 대한 연구)

  • Hee-Chul Choi;W.M. Stallard;Kwang-Soo Kim;In-Soo Kim
    • Journal of Korea Soil Environment Society
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    • v.1 no.1
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    • pp.67-79
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    • 1996
  • Clay soils typically have low hydraulic conductivities in the presence of high polarity pore fluid, such as water. Low polarity fluids, such as hydrocarbon fuels and halogenated organic solvents, typically cannot migrate into clay pores because they cannot displace the pore water. Oxygenated additives in gasoline, such as alcohols and methyl-tert-butyl ether, are increasingly used to control air pollution emissions. These relatively polar and highly water-soluble compounds may facilitate displacement of pore water and enhance migration of fuels and solvents through clay-rich soil strata. In the reported research, the migration of gasoline-alcohol fuel mixtures (gasohol) through consolidated clay was examined. Prepared kaolinite clay samples were consolidated from slurry, and various combinations of gasoline, alcohol, and water were applied to the clays under 152 Pa gauge pressure. Movement of the fluids into the clay samples was monitored by measur ing displaced pore fluid and by magnetic resonance imaging of the samples. The structures of selected samples were examined using environmental scanning electron microscopy. Results of the research suggest that alcohol added to hydrocarbon fuels can enhance migration through some clays significantly. Gasoline did not migrate appreciably into water saturated clay, even after 14 days under pressure. The gasohol mixture migrated readily into the clay in only 20 minutes. Increased hydraulic conductivity of the clay in the presence of gasohol is hypothesized to be due to the collapse of the clays pore structure when ethanol is present, creating larger pores. Increasing pore diameter decreases the capillary pressure needed for the gasohol to replace water and allows gasohol to migrate through the clay.

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A Study on the Engineering Characteristics of Power Plant Coal Ash (화력발전소 부산물인 석탄회의 공학적 특성에 관한 연구)

  • Kuk, Kilkeun;Kim, Hyeyang;Chun, Byungsik
    • Journal of the Korean GEO-environmental Society
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    • v.11 no.5
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    • pp.25-34
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    • 2010
  • In this study characteristics for reclaimed ash was studied to enlarge the usage of reclaimed ash which is reaching to 72 million ton producted from whole thermal power plants in South Korea. Fly ash and bottom ash are reclaimed separately at some of thermal power plants. However, typically bottom ash and fly ash are mixed when they are buried at most of the thermal power plant, as a result the engineering characteristics of ponded ash are not investigated properly. In order to investigate the engineering characteristics of the ponded ash, laboratory tests were performed with ponded ash and fly ash from youngheung and samcheonpo thermal power plants. Specific gravity, unit weight, and grain size analysis test were fulfilled to evaluate the physical characteristics and triaxial permeability test, direct shear test, unconfined compressive strength test, compaction test were performed to evaluate the mechanical characteristics. And also engineering characteristics of coal ash from anthracite and Bituminous thermal power plants were compared and studied respectively. As a result of the study, it was confirmed that using coal ash from Bituminous thermal power plants can be effective in the place where lightweight materials are required and using coal ash from anthracite thermal power plants can be effective as backfill material which require higher permeability. Finally, it was confirmed that fly ash from youngheung thermal power plants which has the lowest permeability among the tested material is suitable for a field requiring impermeable material.

Analysis of Soil Saturation Characteristics According to the Presence or Absence of Soil Layer Depth and Impervious (침투해석시 토층심도 및 불투수층 유무에 따른 지반의 포화특성 분석)

  • Lee, Seung Woo;Chang, Bhum Soo;Kim, Yong Soo;Lee, Jong Gun;Lee, Ju Yong
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.17 no.1
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    • pp.21-26
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    • 2013
  • In recent study, infiltration analysis considering rainfall intensity is more economical and practical than existing analysis method. Revised construction slope design standard is also stated to full-fill infiltration analysis considering rainfall for practical stability review. Infiltration analysis considering rainfall for practical stability review. But, to infiltration analysis, the process is complicated by ground impermeability and rainfall intensity. In this study, we perform infiltration analysis to charge infiltration conditions, soil type and rainfall characteristics, for more pratical stability review. Using the result, we can suggest construable condition on the assumption that soil is saturated up to surface zone.

Development of a culvert design model (방수로 겸용 터널의 수방 설계 기준 제안)

  • Kim, Jung Hwan;Chung, Gunhui
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.612-612
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    • 2015
  • 최근 도시화로 인해 지상 도로망은 포화상태에 도달했으며, 지하에도 전기나 가스관 등과 같은 라이프라인들이 거미줄처럼 얽혀있어, 교통터널의 지하화 및 대심도화에 대한 국내외적인 관심이 고조되고 있다. 또한 도시의 가장 큰 재산피해를 야기하는 재해 중 하나인 홍수피해는 도시 불투수층의 증가 및 기후변화 등으로 인해 그 발생빈도가 증가하고 있으며, 원인 또한 하천범람이나 우수관의 통수능 부족 등 다양해지고 있다. 그러므로 대도시 지하의 교통터널에 홍수저감의 구조적 대책인 방수로 기능을 추가한 방수로 겸용 터널에 대한 사회적 경제적 수요가 발생하고 있으며, 해외에서는 이미 시공되어 사용되고 있는 사례가 있다. 그러나 교통이나 홍수방어 중 하나의 목적만을 위해 건설되는 터널과 달리 방수로 겸용 터널은 사람이나 차가 평상시에 다니다가 홍수 시에만 방수로로 그 기능이 전화되어 사용되므로, 혹시 발생할 수 있는 수재해에 대한 대피 가이드라인이나 수방 설계에 더욱 주의를 기울이지 않는다면 자칫 큰 인명피해를 야기할 수 있을 것이다. 그러므로 본 연구에서는 기존 도로터널과 방수로에 각각 적용되어 오던 국내 수방 설계 기준 및 수재해 대응 가이드라인을 정리하고, 외국의 방수로 겸용 터널의 설계 지침을 참고하여 우리나라 실정에 맞는 방수로 겸용 터널의 수방 설계 기준 및 수재해 대응 가이드라인을 제안하고자 한다. 이는 향후 국내에 건설될 방수로 겸용 터널의 설계 기준으로 활용될 수 있으며 추가로 입법이 필요한 정책에 대한 기준을 제시할 수 있을 것이다.

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A Study on the Measurement of Gas Discharge from the Gas Vent of Sanitary Landfill(1)- analysis for minimizing the measurement error of flow meter - (쓰레기 매립지 가스포집관에서 유출가스 계측에 관한 연구(1) -유량계 계측오차의 최소화를 위한 해석 -)

  • 이해승;이찬기
    • Journal of Korea Soil Environment Society
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    • v.3 no.1
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    • pp.83-92
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    • 1998
  • This study presents a relationship between gas quantity and measurement resistance using the bubble meter, the water head indicator and the rotor meter from the gas vent sanitary landfill. From the one-dimensional analyses and experiments, the below results have been obtained. The gas volume sourcing from the gas vent depends on the permeability of final cover soil, its cover depth and distance between the gas vents. The total gas volume producing in the interested domain may be accurately measured by the bubble meter, the water head indicator and the rotor meter if the clay is used for the final cover soil. The required times approaching to the steady-state are different with respect to the flow meters, one day is for the bubble meter and the water head indicator and one hour for the rotor meter.

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The Change in Geotechnical Properties of Clay Liner and the Contamination Behavior of Groundwater Due to Contaminant (오염물질에 의한 점토 차수재의 역학적 특성변화 및 지하수 오염거동)

  • Ha, Kwang-Hyun;Lee, Sang-Eun;Chung, Sung-Rae;Chun, Byung-Sik
    • Journal of Soil and Groundwater Environment
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    • v.13 no.1
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    • pp.13-23
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    • 2008
  • The triaxial compression tests and consolidation tests using NaCl solution and leachates as substitute pore (or saturated) water in samples were carried out to find out the behavior characteristics of strength, deformation and permeability coefficient of contaminated clay. Also, the chemical property analysis on the clay samples using scanning electron microscope and energy dispersive x-ray spectrometer were involved. The magnitudes of composition ratio were shown in the order of O, C, Si, Al, and Fe as a result of chemical composition analysis for clay samples. Besides, as the results of triaxial compression tests and consolidation tests, the shear strength, compression and permeability properties were increased with increasing in the concentration of contaminant (NaCl). It may be considered that these circumstances be caused by the changes of soil structure to flocculent structure due to the decrease in the thickness of diffuse double layer with increasing in the concentration of electrolyte. MT3D model was also using to grasp the procedures that the groundwater may be contaminated by the leachates permeated through the clay liner. The results of contaminant transport analysis showed a tendency that the predicted concentration of groundwater was higher with increasing in the initial concentration of $Cl^-$ ion and increased as a nonlinear curves with time. The transportation distance calculated by the use of regression equation between the distance from contaminant source and the concentration of $Cl^-$ ion was increased with increasing the initial concentration.

Simulation of soil moisture in Hill-slope area using GSSHA model (분포형 수문모형(GSSHA)을 이용한 산지사면에서의 토양수분 모의)

  • Jang, Cheol-Hee;Kim, Hyeon-Jun;Kim, Sang-Hyeon;Noh, Seong-Jin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.1614-1618
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    • 2007
  • 분포형 수문모형은 유역을 격자단위로 세분화하여 매개변수를 부여하고, 증발산, 침투, 지표면유출, 중간유출, 지하수유출, 하도흐름 등 여러 가지 수문요소를 해석하는 종합적인 수문모형이다. 지표면에 내린 강우의 증발 및 침투, 유출은 토양수분의 함량에 크게 의존하게 된다. 따라서 토양수분에 대한 적절한 모의가 분포형 수문모형의 정확도를 좌우하는 핵심이라 할 수 있다. 토양수분은 식물의 생장 및 가용수자원 산정 등에 있어서 중요한 요소로서 토양층 상부의 수 미터 내에 존재하는 수분의 양을 일컫는다. 토양수분의 공간적 시간적 특성들은 증발, 침투, 지하수 재충전, 토양침식, 식생분포 등을 지배하는 매우 중요한 요소라 할 수 있다. 강우로 인한 지면과 지표하에서의 순간적인 포화공간의 형성 및 유출의 생성을 포함하는 과정과 증발산 등은 모두 비포화대(vadose zone) 혹은 토양층에서의 토양수분의 함량에 크게 의존하게 된다(이가영 등, 2005) 본 연구에서는 토양수분에 대한 정밀측정 자료가 있는 설마천 유역 범륜사 사면에 대하여 분포형 수문모형의 토양수분 해석 능력을 평가하고자 하였다. 토양수분 모의에 사용된 격자기반의 분포형 수문모형은 미공병단에서 개발한 GSSHA(USACE, 2006) 모형이다. 모형의 입력자료는 정밀토양도와 현장측정에 의한 토양매개변수를 반영하여 구축하였고, 강우 및 기상자료는 2003년 1월 1일 ${\sim}$ 2004년 12월 31일의 1시간 자료를 이용하였다. 모의기간 중 2003년은 초기 토양수분값 등 초기조건의 영향을 줄이기 위한 웜업 (Warm-up)기간으로 설정하였고, 2004년의 모의결과를 토양수분 관측값과 비교하였다.업지역, 상업지역 등과 같이 지형적 특성에 따른 유량측정망을 구축하는 것이다.의 의사결정 지원 도구가 될 것이다. 따라서, 본 연구에서는 도시유역의 물순환 해석을 위한 일련의 과정, 즉 자료의 조사 및 취득에서부터 물순환 해석 모형을 이용한 정량적 현황파악, 물순환 개선 기법 및 평가를 수행함에 있어 주요 착안점 및 실무에서의 기술적 가이드를 제공하고자 하였으며, 보다 세밀한 도시유역의 물순환 해석을 위하여 우리나라와 일본에서 적용이 활발한 물리적 기반의 분포형 모형(WEP, SHER, SWMM)의 적용사례를 통하여 국내 도시하천의 물순환 해석에 활용함에 있어서의 실질적인 적용절차 등을 제시하고자 하였다. 한다.호강유역의 급격한 수질개선을 알 수 있다.世宗實錄) $\ulcorner$지리지$\lrcorner$(地理志)와 동년대에 동일한 목적으로 찬술되었음을 알 수 있다. $\ulcorner$경상도실록지리지$\lrcorner$(慶尙道實錄地理志)에는 $\ulcorner$세종실록$\lrcorner$(世宗實錄) $\ulcorner$지리지$\lrcorner$(地理志)와의 비교를 해보면 상 중 하품의 통합 9개소가 삭제되어 있고, $\ulcorner$동국여지승람$\lrcorner$(東國與地勝覽) 에서는 자기소와 도기소의 위치가 완전히 삭제되어 있다. 이러한 현상은 첫째, 15세기 중엽 경제적 태평과 함께 백자의 수요 생산이 증가하자 군신의 변별(辨別)과 사치를 이유로 강력하게 규제하여 백자의 확대와 발전에

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Monitoring of Water Content and Electrical Conductivity in Paddy Soil Profile by Time Domain Reflectometry (Time Domain Reflectometry를 이용한 논토양 단면의 수분함량 및 전기전도도 모니터링)

  • Yoo, Sun-Ho;Han, Gwang Hyun;Bae, Byung-Sul;Park, Moo-Eon
    • Korean Journal of Soil Science and Fertilizer
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    • v.32 no.4
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    • pp.365-374
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    • 1999
  • To obtain informations on vertical movements of water and solute in rice paddy field during the growing season, soil water contents and bulk electrical conductivities (${\sigma}_a$) were monitored using Time Domain Reflectometry. Soil water contents with depth showed ${\varepsilon}$-shaped profiles constituting of partly saturated zones at top and bottom layers and unsaturated zones (20-100cm) between them. Analysis by fitting with a van Genuchten-type model showed that soil water contents at 60cm were affected by both water supplied from surface water and groundwater, but at 80cm mainly affected by groundwater. Water percolation at the rate of 2cm $day^{-1}$ rates were, but large fluctuation from 10 to 38cm $day^{-1}$ in C1 layer (60-90cm). Therefore, it can be said that any water or solute entering C1 layer is very rapidly transported to C2 layer, especially during the period of high groundwater table staying, and retarded to a relatively constant percolation rate in C2 layer. This can be manifested by the fact that rapid decrease and steady increase of electrical conductivities at 50 and 110cm depth respectively, were found around that period.

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Classification of Hydrologic Soil Groups of Korean Soils Using Estimated Saturated Hydraulic Conductivity and Depth of Impermeable Layer (포화 수리전도도와 불투수층 깊이에 따른 우리나라 토양의 수문학적 토양군 분류)

  • Han, Kyunghwa;Jung, Kangho;Cho, Heerae;Lee, Hyubsung;Ok, Junghun;Seo, Mijin;Zhang, Yongseon;Seo, Youngho
    • Journal of The Korean Society of Agricultural Engineers
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    • v.59 no.5
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    • pp.25-30
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    • 2017
  • Hydrologic soil group is one of the important factors to determine runoff potential and curve number. This study was conducted to classify the hydrologic soil groups of Korean soils by considering saturated hydraulic conductivity and depth of impermeable layer. Saturated hydraulic conductivity of Korean soils was estimated by pedotransfer functions developed in the previous studies. Most of paddy soils were classified as D type due to shallow impermeable layer and low saturated hydraulic conductivity in B soil horizon. For upland and forest, soils classified to A and D types increased compared with former classification method because underestimated permeabilities and overestimated drainages were corrected and rock horizon in shallow depth was regarded as impermeable layer. Soils in mountainous land showed the highest distribution in A type, followed by D type. More than 60 % of soils in mountain foot-slope, fan and valley, alluvial plains, and fluvio-marine deposits were classified to D type because of land use such as paddy and upland.