• 제목/요약/키워드: Darcy's Law

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성토하부 연약지반에서의 과잉간극수압 거동 (Excess Pore Water Pressure Response in Soft Clay under Embankment)

  • Kim, Yun-Tae;Kim, Nak-Kyung
    • 한국지반공학회논문집
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    • 제18권3호
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    • pp.105-112
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    • 2002
  • 성토하부 연약지반에서 상재하중의 변화가 없는 상태에서 과잉간극수압의 증가가 Berthierville와 Olga 지역에서 보고되었다. 이와같은 비정상적인 현상들을 고전적인 압밀이론으로 설명하기는 어렵다. 본 논문은 비선형 점소성모델윽 사용하여 자연점토지반에서 유발되는 간극수압 증가를 설명하였다. 제안된 모델은 Darcy 법칙에 의한 간극수압 소산과 점소성 변형에 의한 간극수압 생성에 대한 복합적인 거동을 모사할 뿐만 아니라 시간 의존적인 점소성 거동과 변형을 속도 의존적인 선행압밀하중 특성을 표현할 수 있다. 수치해석기법을 적용하여 Berthierville각 Olga 지역의 성토과정을 해석하였으며, 수치해석 결과와 계측된 값을 비교한 결과 제안된 비선형 점소성모델볶 사용하여 성토가 끝난 직후 간극수압의 증가현상을 설명할 수 있다.

초고속 튜브철도 시스템을 위한 튜브 구조물의 기밀성 평가 : I. 해석모델 수립 및 재료 기밀성 (Air-tightness Evaluation of Tube Structures for Super-speed Tube Railway Systems: I. Analytical Modeling and Material Test)

  • 박주남;남성원;김이현;여인호
    • 한국철도학회논문집
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    • 제14권2호
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    • pp.143-150
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    • 2011
  • 본 논문에서는 초고속 튜브철도 시스템의 개념설계 단계에 있어 진공튜브 구조물의 기밀성능 평가를 위한 기초 연구를 수행하였다. 먼저 Darcy의 흐름법칙에 근거하여 밀폐된 구조물의 내/외부 압력 차에 따른 공기 유입의 흐름식을 유도한 후 콘크리트 재료에 대한 투기성 평가 실험을 수행하여 콘크리트 강도에 따른 투기계수의 경향을 분석하였으며 이 결과를 바탕으로 가정 단면을 가진 튜브 구조물에 대한 내부 압력 변화를 해석적으로 모사하였다. 수립된 해석모델과 실험결과를 종합적으로 분석한 결과, 콘크리트의 투기성은 압축강도에 기하급수적으로 반비례하며 진공튜브 구조물에 콘크리트 재료를 적용하였을 경우 적어도 50MPa 이상의 압축강도를 갖는 콘크리트를 사용하는 것이 진공펌프의 운용 및 유지관리 측면에서 유리할 것으로 나타났다.

원형케이슨들간의 공극률 변화에 따른 2열 배치 원형방파제에 작용하는 파랑 특성 분석 (Characteristics of Wave on Circular Breakwater of Double Array by Various Porous Coefficients among Circular Caissons)

  • 박민수
    • 한국해안·해양공학회논문집
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    • 제32권6호
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    • pp.420-433
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    • 2020
  • 기존 케이슨방파제의 안정성을 높이기 위해 케이슨 전면 또는 후면에 추가로 신규 케이슨을 설치하여 보강하는 경우 박리에 의한 에너지 손실효과와 케이슨과 케이슨 사이의 공극률 변화에 따른 개별 원형케이슨에 작용하는 파력 및 파처오름 특성 평가는 중요하다. 본 연구에서는 고유함수전개법에 투과성판에서의 속도는 판 전후의 압력차에 선형적으로 비례한다는 Darcy의 법칙을 이용하여 원형케이슨들간의 공극률 계수 변화에 따른 2열 배치된 원형방파제에 작용하는 파랑 특성을 분석하였다. 수치해석의 신뢰성을 확보하기 위해 Sankarbabu et al.(2008)의 수치 해석결과와 비교를 수행하였으며, 다양한 변수에 따른 개별 이중 원형케이슨에 작용하는 파력 및 파처오름 특성을 나타내었다.

권역별 충적층 지하수의 해안 유출량 분포 (Distribution of Coastal Ground Water Discharge from Surficial Aquifers of Major River Districts)

  • 한수영;홍성훈;박남식
    • 대한토목학회논문집
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    • 제26권1B호
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    • pp.1-6
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    • 2006
  • 낙동강, 섬진강, 영산강, 그리고 금강 권역의 충적 대수층에서 해안선을 통하여 바다로 유출되는 지하수 해안유출량이 평가되었다. 증반산, 하천 유출과 같은 수문학적 주요 인자와 양적으로 비교하면 지하수 해안유출량은 상대적으로 많은 양이 아니다. 하지만 수문순환 과정에서 최하류라는 특징에 의하여 지하수 해안 유출의 개발은 환경적인 영향을 상대적으로 적게 받으며, 현재 물 부족으로 어려움을 겪고 있는 많은 해안지역에서 유용하게 사용될 수 있는 중요한 수자원이다. 유출량 평가를 위하여 기 조사된 지하수위 조사 자료와 Darcy의 법칙에 기반을 둔 평가방법을 이용하였다. 주요 변수의 산정에는 해안선의 복잡성과 해수쐐기의 영향을 고려할 수 있는 기술을 적용하였다. 연구결과 조사 대상 4개 하천 권역의 지하수 해안 유출량은 연간 18억$m^3$에 달하는 것으로 나타났다. 이는 권역별 강수총량의 2.3%에 이르는 수치이다. 지하수 개발 측면에서 는 낙동강 권역이 가장 유리한 것으로 나타났다.

S-RIM을 이용한 Glass Fiber Chopped Strand Mat 강화 p-DCPD 복합재료 제작 및 수치해석을 통한 공정 시간 예측 (Manufacturing and Numerical Analysis of Glass Fiber Chopped Strand Mat Reinforced p-DCPD Composites Processed by S-RIM)

  • 유형민;엄문광;최성웅
    • 한국수소및신에너지학회논문집
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    • 제30권6호
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    • pp.629-634
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    • 2019
  • Dicyclopentadiene is a low viscosity resin which forms a poly-dicyclopentadiene rapidly through ring opening metathesis polymerization (ROMP). This poly-dicyclopentadiene has outstanding properties of low-temperature, water and impact resistances. Due to these advantages, military and offshore structures try to apply the DCPD composites by using liquid composite molding process. In this study, 14%, 38% volume fraction fiber glass strand mat reinforced p-DCPD composites processed by structural reaction injection molding (S-RIM) which has resin-catalsyt mixing head and glass fiber preform in the mold. Additionally, S-RIM numerical analysis was conducted to predict the process time depending on fiber volume fraction and mold temperature. The process time is shorter when it has the lower fiber volume fraction or the higher mold temperature. At higher mold temperature, it is necessary to set the maximum mold temperature considering the resin curing time.

일차원 kinematic wave 모형을 이용한 고속도로 강우 유출수의 동적 거동 예측 (Predicting Dynamic Behaviors of Highway Runoff using A One-dimensional Kinematic Wave Model)

  • 강주현;김이형
    • 한국물환경학회지
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    • 제23권1호
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    • pp.38-45
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    • 2007
  • A one-dimensional kinematic wave model was used to calculate temporal and spatial changes of the highway runoff. Infiltration into pavement was considered using Darcy's law, as a function of flow depth and pavement hydraulic conductivity ($K_p$). The model equation was calculated using the method of characteristics (MOC), which provided stable solutions for the model equation. 22 storm events monitored in a highway runoff monitoring site in west Los Angeles in the U.S. were used for the model calculation and evaluation. Using three different values of $K_p$ ($5{\times}10^{-6}$, $10^{-5}$, and $2{\times}10^{-5}cm/sec$), total runoff volume and peak flow rate were calculated and then compared with the measured data for each storm event. According to the calculation results, $10^{-5}cm/sec$ was considered a site representative value of $K_p$. The study suggested a one-dimensional method to predict hydrodynamic behavior of highway runoff, which is required for the water quality prediction.

Hygrothermal Fracture Analysis in Dissimilar Materials

  • Ahn, Kook-Chan;Lee, Tae-Hwan;Bae, Kang-Yul
    • International Journal of Aeronautical and Space Sciences
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    • 제2권2호
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    • pp.65-72
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    • 2001
  • This paper demonstrates an explicit-implicit, finite element analysis for linear as well as nonlinear hygrothermal stress problems. Additional features, such as moisture diffusion equation, crack element and virtual crack extension(VCE) method for evaluating J-integral are implemented in this program. The Linear Elastic Fracture Mechanics(LEFM) Theory is employed to estimate the crack driving force under the transient condition for an existing crack. Pores in materials are assumed to be saturated with moisture in the liquid form at the room temperature, which may vaporize as the temperature increases. The vaporization effects on the crack driving force are also studied. The ideal gas equation is employed to estimate the thermodynamic pressure due to vaporization at each time step after solving basic nodal values. A set of field equations governing the time dependent response of porous media are derived from balance laws based on the mixture theory. Darcy's law is assumed for the fluid flow through the porous media. Perzyna's viscoplastic model incorporating the Von-Mises yield criterion are implemented. The Green-Naghdi stress rate is used for the invariant of stress tensor under superposed rigid body motion. Isotropic elements are used for the spatial discretization and an iterative scheme based on the full Newton-Raphson method is used for solving the nonlinear governing equations.

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Resonance and Response of the Submerged Dual Buoy/Porous-Membrane Breakwaters in Oblique Seas

  • Kee, S.T.
    • 한국해양공학회지
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    • 제15권2호
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    • pp.22-32
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    • 2001
  • The numerical investigation of obliquely incident wave interactions with fully submerged dual buoy/porous-membrane floating breakwaters placed in parallel with spacing is studied based on linear potential theory and Darcy's law. The numerical solutions are obtained by using a discrete-membrane dynamic model and second-kind modified Bessel function distribution over the entire boundaries of fluid regions. First, numerical solutions for an idealized dual submerged system without buoys are obtained. Second, a more practical dual submerged system with membrane tension provided by buoys at its tops is investigated by the multi-domain boundary element method particularly devised for dual buoy/porous-membrane problems with gaps. The velocity potentials of wave motion are coupled with porous-membrane deformation, and solved simultaneously since the boundary condition on porous-membrane is not known in advance. The effects of varying permeability on membranes and wave characteristics are discussed for the optimum design parameters of systems previously studied. The inclusion of permeability on membrane eliminates the resonances that aggravate the breakwater performance. The system is highly efficient when waves generated by the buoys and membranes were mutually canceled and its energy at resonance frequency dissipates through fine pores on membranes.

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다층 예비성형체에 대한 삼차원 충진해석 (Three-Dimensional Mold Filling Simulation for Multi-layered Preform in Resin Transfer Molding)

  • 양매;송영석;윤재륜
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2005년도 춘계학술발표대회 논문집
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    • pp.137-140
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    • 2005
  • Resin transfer molding (RTM) is one of the most popular processes for producing fiber reinforced polymer composites. In the manufacture of complex thick composite structures, analysis on flow front advancement on the resin impregnating the multi-layered fiber preform is helpful for the optimization of the process. In this study, three-dimensional mold filling simulation of RTM is carried out by using CVFEM (Control Volume Finite Element Method). On the assumption of isothermal flow of Newtonian fluid, Darcy’s law and continuity equation are used as governing equations. Different permeability tensors employed in each layer are obtained by experiments. Numerically predicted flow front is compared with experimental one in order to validate the numerical results. Flow simulations are conducted in the two mold geometries, rectangular plate and hollow cylinder. Permeability tensor of each layer preform in Cartesian coordinate system is transformed to cylinder coordinates system so that the flow within the multi-layered preforms of the hollow cylinder can be calculated exactly. Our emphasis is on the three dimensional flow analysis for circular three-dimensional braided preform, which shows outstanding mechanical properties such as high impact strength and toughness compared with other conventional two-dimensional laminar-structured preforms.

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농경지의 비료, 농약의 지하유실량 추정 -Preferential 흐름모형- (Estimating Leaching of Nutrients and Pesticides in Agricultural Lands -A Perferential Flow Model-)

  • 이남호;타모스틴후이스
    • 한국농공학회지
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    • 제39권2호
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    • pp.62-73
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    • 1997
  • The application of nutrients and pesticides to agricultural lands has been reported to contribute to groundwater contamination, which can be explained by preferential flow in lieu of convective-dispersive flow. An one-dimensional numerical model depicting preferential water and solute movement was modified to describe multi-layer flows. The model is based on a piecewise linear conductivity function. By combining conservation of mass and Darcy's law and using the method of characteristics a solution is obtained for water flow in which water moves at distinct velocities in different flow regions instead of an average velocity for the whole profile. The model allows transfer ofqr solutes between pore groups. The transfer is characterized by assuming mixing coefficients. The model was applied to undisturbed soil columns and an experiment site with structured sandy clay loam soil. Chloride, bromide, and 2, 4-D were used as tracers. Simulated solutes concentrations were in good agreement with the soil column data and field data in which preferential flow of solute is significant. The proposed model is capable of describing preferential solute transport under laboratory and field conditions.

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