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Analysis on the Hydrologic Components Considering Groundwater Development of the Pyoseon Watershed in Jeju Island (제주 표선유역의 지하수 개발을 고려한 수문성분해석)

  • Kim, Nam-Won;Chung, Il-Moon;Na, Han-Na;Yoo, Sang-Yeon;Yang, Sung-Kee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.2021-2025
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    • 2010
  • 우리나라 대표적인 도서지역인 제주도는 대부분의 하천이 평상시 건천의 형태로 유지되며, 일정한 강우가 도달해야만 지표유출이 발생하는 경우가 대부분이다. 이와 같은 하천특성은 내륙과 매우 상이하여 일반적으로 사용되는 유역 수문해석 방법으로는 정확한 수문성분의 산정을 기대하기 어렵다. 이에 본 연구에서는 완전연동형 지표수-지하수 결합모형인 SWAT-MODFLOW을 이용하여 지표수 유출성분과 지하수 유동변화 및 지하수 개발까지 고려한 제주 표선유역의 통합수문성분 해석을 수행하였다. 특히 SWAT-MODFLOW에 포함된 양수모듈(MODFLOW의 well package 와 SWAT의 물이동 옵션 결합)을 이용하여 198개의 현 양수정 자료를 모의하였고, 현재 양수량, 현재양수량의 10배, 20배로 증대시켜 가며 수문성분 변화를 살펴보았다. 양수를 통해 지하수를 개발하여 사용하면 실질적으로 기저유출량의 감소가 발생하는 것으로 나타났고, 이러한 영향은 상류부 보다는 하류부에서 크게 작용할 것으로 판단된다. 그러나 제주도 지형적인 특성상 자연적으로 대수층으로 함양된 지하수가 대부분 바다로 유출, 손실되고 있으나 지하수를 양수할 경우, 손실량의 일부는 지하수 개발을 통해 효과적으로 사용됨으로써 제주 수자원의 추가 수자원확보량으로서 활용될 수 있을 것이다.

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Numerical modeling of debris flow damaged area Using Hyper KANAKO (Hyper KANAKO 모형을 이용한 토석류 피해지역 수치모델링)

  • Kang, Bae Dong;Jun, Kye won;Kim, Young Hwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.305-305
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    • 2020
  • 2019년 10월에 발생한 태풍 미탁은 강원도 삼척시 근덕면 궁촌리 기준 시간당 최대 129mm/hr, 누적강수량 488.5mm를 기록하며 폭우와 강풍, 홍수, 토석류 및 산사태로 사망 13명, 실종 2명, 이재민 910세대 1,442명의 인명피해와 공공시설 1,835건, 사유시설 3,700건 등의 재산 피해가 발생하였다. 한편 Hyper KANAKO 모형은 일본에서 개발된 토석류 수치 모델로 오픈소스인 QGIS와 연동되어 도구의 형태로 사용할 수 있어 사용자에게 편리함을 제공하고 토석류 해석 시 침식 및 퇴적작용의 해석이 가능하다. 1차원의 지형(계류)과 2차원의 지형(퇴적부)의 지반설정과 사방댐의 종류(Closed, Slit, Landslide) 및 개수, 위치, 높이 등을 쉽게 조절할 수 있다는 장점이 있다. 또한, DEM을 기반으로 변환 프로그램을 사용하여 구축한 자료인 LP(Laser Profiler) 데이터를 바탕으로 3차원의 지형을 볼 수 있어 2차원의 지형보다 사용자의 직관적인 해석이 가능하다. 본 연구에서는 QGIS와 Hyper KANAKO를 이용하여 태풍 미탁으로 토석류 피해가 발생한 강원도 삼척시 신남지역을 대상으로 DEM과 LP 데이터를 구축하고 수치모델링을 실시하여 현장조사 결과와 비교분석 하였다.

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Automated reduced thermo-mathematical model generation method for satellite considering temperature tolerance and fixed nodes (온도 허용오차와 고정 노드를 고려한 자동화된 위성 축소 열모델 생성 방법)

  • Jimin Nam
    • Journal of Aerospace System Engineering
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    • v.17 no.2
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    • pp.9-15
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    • 2023
  • The task of generating a reduced thermal model of a satellite must be performed at least once in a satellite project to shorten the time of orbital thermal analysis and perform thermal analysis coupled to a launch vehicle. Although there are various methods for generating a reduced thermal model, an intuitive and convenient iso-thermal mesh generation method is used the most widely in practice. However, there is still a lack of research on automation of the isothermal mesh generation method. In this paper, we proposed an automated generation method of satellite reduced thermo-mathematical model based on the isothermal mesh generation method considering temperature tolerance and fixed nodes. The proposed method was validated using three different temperature tolerance cases. The average temperature difference satisfied the guidelines of ECSS.

Coupled Thermal-Hydrological-Mechanical Behavior of Rock Mass Surrounding Cavern Thermal Energy Storage (암반공동 열에너지저장소 주변 암반의 열-수리-역학적 연계거동 분석)

  • Park, Jung-Wook;Rutqvist, Jonny;Ryu, Dongwoo;Synn, Joong-Ho;Park, Eui-Seob
    • Tunnel and Underground Space
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    • v.25 no.2
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    • pp.155-167
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    • 2015
  • The thermal-hydrological-mechanical (T-H-M) behavior of rock mass surrounding a high-temperature cavern thermal energy storage (CTES) operated for a period of 30 years has been investigated by TOUGH2-FLAC3D simulator. As a fundamental study for the development of prediction and control technologies for the environmental change and rock mass behavior associated with CTES, the key concerns were focused on the hydrological-thermal multiphase flow and the consequential mechanical behavior of the surrounding rock mass, where the insulator performance was not taken into account. In the present study, we considered a large-scale cylindrical cavern at shallow depth storing thermal energy of $350^{\circ}C$. The numerical results showed that the dominant heat transfer mechanism was the conduction in rock mass, and the mechanical behavior of rock mass was influenced by thermal factor (heat) more than hydrological factor (pressure). The effective stress redistribution, displacement and surface uplift caused by heating of rock and boiling of ground-water were discussed, and the potential of shear failure was quantitatively examined. Thermal expansion of rock mass led to the ground-surface uplift on the order of a few centimeters and the development of tensile stress above the storage cavern, increasing the potential of shear failure.

Fluid Injection Simulation Considering Distinct Element Behavior and Fluid Flow into the Ground (지반내 입자거동 및 흐름을 고려한 수압작용 모델링)

  • Jeon, Je-Sung;Kim, Ki-Young
    • Journal of the Korean Geotechnical Society
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    • v.24 no.2
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    • pp.67-75
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    • 2008
  • It is interesting to note that distinct element method has been used extensively to model the response of micro and discontinuous behavior in geomechanics. Impressive advances related to response of distinct particles have been conducted and there were difficulties in considering fluid effect simultaneously. Current distinct element methods are progressively developed to solve particle-fluid coupling focused on fluid flow through soil, rock or porous medium. In this research, numerical simulations of fluid injection into particulate materials were conducted to observe cavity initiation and propagation using distinct element method. After generation of initial particles and wall elements, confining stress was applied by servo-control method. The fluid scheme solves the continuity and Navior-Stokes equations numerically, then derives pressure and velocity vectors for fixed grid by considering the existence of particles within the fluid cell. Fluid was injected as 7-step into the assembly in the x-direction from the inlet located at the center of the left boundary under confining stress condition, $0.1MP{\alpha}\;and\;0.5MP{\alpha}$, respectively. For each simulation, movement of particles, flow rate, fluid velocity, pressure history, wall stress including cavity initiation and propagation by interaction of flulid-paricles were analyzed.

Hydro-Mechanical Modelling of Fault Slip Induced by Water Injection: DECOVALEX-2019 TASK B (Step 1) (유체 주입에 의한 단층의 수리역학적 거동 해석: 국제공동연구 DECOVALEX-2019 Task B 연구 현황(Step 1))

  • Park, Jung-Wook;Park, Eui-Seob;Kim, Taehyun;Lee, Changsoo;Lee, Jaewon
    • Tunnel and Underground Space
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    • v.28 no.5
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    • pp.400-425
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    • 2018
  • This study presents the research results and current status of the DECOVALEX-2019 project Task B. Task B named 'Fault slip modelling' is aiming at developing a numerical method to simulate the coupled hydro-mechanical behavior of fault, including slip or reactivation, induced by water injection. The first research step of Task B is a benchmark simulation which is designed for the modelling teams to familiarize themselves with the problem and to set up their own codes to reproduce the hydro-mechanical coupling between the fault hydraulic transmissivity and the mechanically-induced displacement. We reproduced the coupled hydro-mechanical process of fault slip using TOUGH-FLAC simulator. The fluid flow along a fault was modelled with solid elements and governed by Darcy's law with the cubic law in TOUGH2, whereas the mechanical behavior of a single fault was represented by creating interface elements between two separating rock blocks in FLAC3D. A methodology to formulate the hydro-mechanical coupling relations of two different hydraulic aperture models and link the solid element of TOUGH2 and the interface element of FLAC3D was suggested. In addition, we developed a coupling module to update the changes in geometric features (mesh) and hydrological properties of fault caused by water injection at every calculation step for TOUGH-FLAC simulator. Then, the transient responses of the fault, including elastic deformation, reactivation, progressive evolutions of pathway, pressure distribution and water injection rate, to stepwise pressurization were examined during the simulations. The results of the simulations suggest that the developed model can provide a reasonable prediction of the hydro-mechanical behavior related to fault reactivation. The numerical model will be enhanced by continuing collaboration and interaction with other research teams of DECOLVAEX-2019 Task B and validated using the field data from fault activation experiments in a further study.

Combination of Different Numerical Methods for Efficient Thermal Stress Analysis of Casting Process (주조공정에서의 효율적인 열응력 해석을 위한 이종해석기법의 연계)

  • Kwak, Si-Young;Lim, Chae-Ho
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.34 no.8
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    • pp.1051-1057
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    • 2010
  • This paper proposes a method that involves a combination of FDM and FEM for analyzing casting process. At present, many numerical analysis methods such as FDM, FEM, and BEM are used for solving engineering problems. For a given problem, a specific method that is suited to the problem is adopted; in general, FDM or FVM is favored for problems related to fluid flow or heat transfer, and FEM is adopted in stress analysis. However, there is an increasing need for using a combined method for complex and coupled phenomena analysis. Hence, we proposed a method in which FDM and FEM are coupled in three-dimensional space, and we applied this method to analyze casting process. In the proposed method, solidification and heat transfer was analyzed by using FDM. The field data such as temperature distribution were converted into a format suitable for FEM analysis that was used for calculating thermal stress distribution. Using the proposed method, we efficiently analyzed the analysis process from the viewpoints of work and time.

A Methodology for the Establishment of CityGML Based 3D Drainage Facility Information Model for Runoff Analysis (강우우수 유출해석을 위한 CityGML 기반 3차원 도시 배수시설 정보모델 구축 방안)

  • Lee, Sang-Ho;Jang, Young-Hoon;Kim, Jong Myung
    • Journal of Korean Society of Disaster and Security
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    • v.9 no.2
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    • pp.77-86
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    • 2016
  • In this study, we have created CityGML based 3D information model for drainage facility, manhole and terrain. It conducted analysis of the rainfall-runoff leak through the information model for obtaining interoperability for information integration between city models. The models have advantages to manage the infrastructure information in point of semantic meaning and geometric information by converting the original 2D GIS construction information into the 3D information model. The input values can be automatically generated through the 3D information model of this study, while the values should be entered manually in the conventional method. Also, it can be useful to check the flooding level and related locations by connecting the result of rainfall interpretation and information model.

Analysis on the groundwater usage in Pyoseon area by using the integrated SWAT-MODFLOW model (SWAT-MODFLOW모형을 이용한 표선 지역 지하수 이용량 분석)

  • Kim, Nam-Won;Chung, Il-Moon;Yoo, Sang-Yeon;Lee, Jeong-Woo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1939-1944
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    • 2009
  • 우리나라의 대표적인 도서지역인 제주도는 일반 내륙지역과 달리 지표수-지하수에 대한 연구가 지하수계에 대한 연구에 비해 미미한 실정이다. 제주도의 경우 내륙과 달리 대부분의 하천이 평상시 건천의 형태로 유지되며, 일정한 강우가 도달해야만 지표유출이 발생하는 경우가 많다. 이와 같은 하천특성은 내륙과 매우 상이하여 일반적으로 사용되는 유역 수문해석 방법으로는 수문성분의 정확한 산정을 기대하기 어렵고 이로 인해 지하수 해석에 있어서도 불확실성이 크게 증가하는 요인이 된다. 따라서 지표수의 정확한 거동과 지하수 해석의 불확실성을 줄이기 위해 유역개념의 물순환을 해석할 수 있는 지표수-지하수 연계 해석기술이 필요한 실정이다. 본 연구에서는 '삼다수 먹는샘물 환경영향조사'가 수행되어 비교적 정확한 지하수위 관측 자료가 확보되어 있고, 매우 제한적이기는 하나 하천의 유출량 조사가 수행된 바 있는 제주 표선 유역에 완전연동형 지표수-지하수 해석 프로그램인 SWAT-MODFLOW을 이용하여 지표수 유출성분과 지하수 유동변화를 동시에 고려한 분석을 수행하였다. 특히 MODFLOW의 Well 패키지와 SWAT의 물이동 옵션을 결합하여 표선유역의 198개 관측공의 양수를 동시에 모의하였다. 모의결과 지하수위는 비교적 양수에 비해 안정되게 유지되는 것을 알 수 있었고 이를 통해 현재 삼다수 공장의 양수량은 현재로서는 과다양수가 아닌 것으로 판단되었다. 현재의 양수량의 10배를 가정하여 모의를 한 결과, 지하수위는 함양에 의해 다시 회복되는 결과를 보이고 있어 이 지역의 실제 개발가능량에 대한 보다 심도있는 논의가 필요한 것으로 판단되었다. 나아가 이와 같은 분석을 통해 제주 지역의 전체의 지하수 개발가능량을 산정할 경우 제주지역의 지하수 관리방안이 새롭게 제시될 수 있을 것으로 기대된다.

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Development of Framework of Linkage between Geometric Modeling and Finite Element Analysis for Shape Optimization of Shell Surfaces (쉘 곡면 형상의 최적 설계를 위한 유한요소해석과 기하학적 모델링의 연동)

  • Kim,Hyeon-Cheol;No,Hui-Yeol;Jo,Maeng-Hyo
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.31 no.8
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    • pp.27-35
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    • 2003
  • Geometric modeling tool and analysis tool of shell surface have been developed in the different environments and purposes. Thus they cannot be naturally fitted to each other for the integrated design and analysis. In the present study, an integrated framework of geometric modeling, analysis, and design optimization is proposed. It is based on the common representation of B-spline surface patch. In the analysis module, a geometrically-exact shell finite element is implemented. In shape optimization module, control points of the surface are selected as design variables. For the computation of shape sensitivities, semi-analytical method is used. Sequential linear programming(SLP) is adopted for the shape optimization of surfaces. The developed integrated framework should serve as a powerful tool for the geometric modeling, analysis, and shape design of surfaces.