• Title/Summary/Keyword: 수리적 모델

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Development of the MEP Integration Test Environment for Surion (수리온 임무탑재체계의 통합시험 환경개발)

  • Kim, Yoo-Kyung;Kim, Myung-Chin;Choi, Won-Woo;Oh, Woo-Seop
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.39 no.7
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    • pp.666-673
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    • 2011
  • To perform effective integration test of avionics equipments, the importance of a setup for integration test environment has been increasing in recently developed aircraft. Especially, the development of integration test equipment is necessary for minimizing the development period and reliability of integration test. This paper treats the model development for optimal working of integration test after analyzing the characteristics of each MEP equipments for Surion(KUH). Models, whose main role is troubleshooting of equipment and simulation for missing equipments, consists of dynamic, behavior, and ICD models depending on the dynamic characteristics. Software test for both unit level and system level are performed to verify the model reliability. By conducting integration test using SIL, it is confirmed that the developed models are suitable for integration function test of the MEP system.

Minimum Floor Area Ratio Estimation Model for Reconstruction Projects to Compensate for Loss of the Aged Long-term Public Rental Housing (노후 장기공공임대주택 손실보전을 위한 재건축사업의 최소용적률 수리모델)

  • Joe, Wongoog;Na, Seunguk;Cho, Jeaho;Chae, MyungJin;Son, Bosik;Kim, Hyunsoo;Chun, JaeYoul
    • Korean Journal of Construction Engineering and Management
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    • v.23 no.5
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    • pp.108-116
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    • 2022
  • Started in 1989 as Public Permanent Rental Housing scheme, public rental housing lease policy is increasing target residents and supply in each government by introducing new supply types. However, public housing business entities have difficulties in expanding the supply due to cumulated deficit. The research suggested long-term public rental housing reconstruction business as a method to preserve the cumulated deficit from the previous. Minimum floor area ratio mathematical model was suggested by defining the floor area ratio of reconstruction business as minimum, since housing sales profit after reconstruction could preserve aggregated deficit, and mathematically approached by considering the traits of long-term public rental housing reconstruction. The determinant for minimum floor area ratio mathematical model comprise cumulated deficit of the existing long-term public rental housing, land size of reconstructed sale housing, housing sales price per unit area, and business cost per unit area. Minimum floor area ratio mathematical model is expected to be the milestone for supporting decision making regarding the economic part of old long-term public lease housings' reconstruction scale, and expanding housing supply within urban area.

Analysis of Mixing Behaviour at a River Confluence using EFDC (EFDC를 활용한 합류부 혼합거동 분석)

  • Park, Jaegon;Lee, Kyungsu;Ko, Joo Suk;Lyu, Siwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.162-162
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    • 2021
  • 현재 하천의 조사 및 분석에서는 다양한 장비들을 통한 현장계측 및 모니터링을 수행하고 있다. 특히 여러 하천이 만나는 합류부에서는 복잡한 혼합양상이 발생하며 다양한 조사 및 연구들이 진행되고 있다. 현장계측 및 모니터링은 제한된 여건으로 인한 지속적인 조사, 다양한 지점에 대한 조사의 어려움이 있으며 따라서 EFDC 모형을 활용한 모델링을 통하여 하천의 혼합거동을 재현하고자 한다. 이를 위하여 강정고령보~달성보 구간을 대상으로 현장계측 및 모니터링 자료와 환경부, 낙동강홍수통제소 등에서 고시하고 있는 수리, 수질, 기상자료를 활용하여 모델을 구축하고 수리, 수질에 대한 모의 및 분석을 수행하였다. 제한된 현장계측자료만으로는 모형의 구축에 어려움이 존재하기 때문에 대상구간에 존재하는 수위, 수질관측소의 자료를 활용하고 모형의 검·보정 단계에서는 특정지점의 수위, 평균유속, 다양한 수질인자들에 대한 모델링 결과와 실측자료의 비교, 분석을 수행하게 되며 추가적으로 단면에 대한 검·보정을 하고 이후 수리, 수질 결과자료의 비교를 통한 통계지표 산정을 통해 모형의 재현성을 평가하고 대상구간인 합류부에서 나타나는 유황곡선을 통한 다양한 유량규모, 유량비에 대한 시나리오를 구축하여 다양한 수리적, 환경적 현상과 변화를 파악하고 분석하였다. 대상구간에 대한 유황곡선을 통한 재현을 함으로써 다양한 유량규모, 유량비에 따라 나타나는 현상을 파악하고 향후 모델링, 합류부의 분석 및 연구에 있어 본 연구 성과의 활용성이 뛰어나다고 판단된다.

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An Evaluation on Water Quality Variations according to Weir Operation using Multi-dimensional Public Domain Models (다차원 수리·수질모형을 통한 하천의 이상상황 대응 모의)

  • Kim, Sung Hoon;Lee, Sang-Wook;Kim, Yeon-su;Noh, Joonwoo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.102-102
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    • 2017
  • 갈수시 하천의 수질문제는 다양한 요인에 의해 발생하고 제어된다. 수질 그 자체는 상류나 지류의 점오염원과 비점오염원의 증가 또는 예상치 못한 추가적인 오염원의 유출에 직접 영향을 받으며, 조류 등의 발생도 영향인자인 수온 및 일사량 또는 바람에 의존적이다. 최근 수년간은 특히 빈번한 가뭄조건의 발생으로 인하여 갈수기의 강우 및 유출량이 저조하여 상대적으로 하천의 조류발생이 다수 발견되고 보고된 바 있다. 이와 같은 수질의 이상상태를 일시적으로라도 제어하기 위한 방편으로 유량의 증가, 인위적인 하천 수위의 변동 및 유속 변동 등이 고려될 수 있으며, 이를 위해서는 상류의 댐과 하천의 다기능보 등의 조절을 탄력적으로 수행하여야 한다. 이와 같은 시설물 운영효과는 수질문제의 원인을 근본적으로 해결하는 것은 아니지만, 이의 일시적인 효과를 극대화하기 위해서는 기존의 수리 수질 모델링이 이상 수질 발생시의 방제 및 사후분석 등을 중심으로 이루어진 부분을 넘어서, 사전 설정된 조건에 의한 예측모의와 가이드라인의 연계방식이 효과적일 것이다. 본 연구는 수질 이상이 빈번히 발생되었던 낙동강의 칠곡 하류 하천을 중심으로 2차원 CE-QUAL-W2 모형과 EFDC모형을 병행 모의하여 다기능보 인근의 표층과 저층의 수온(밀도) 성층화 및 이의 해소와 관련된 수리모의 및 수질인자에 대한 영향을 분석하였다. 수리모형 구축의 적정성은 현장의 실측 수온과 모의결과 비교를 통해 확인하였으며, 구축된 수리 수질 모델을 이용하여 추가방류량 3~23백만$m^3$ 규모에서 발생하는 수리적인 수층혼합 현상과 일시적으로 저감가능한 수질개선 효과가 의미있는 수준으로 나타날 수 있음을 예측하였다. 또한, 다기능보의 수문방류 모의시에 개방조건을 0.3~3.5m로 달리하여 방류기간 중 총방류량이 유사하더라도 최대방류량 또는 유속이 충분치 않은 경우에는 혼합효과가 급격히 감소함을 알 수 있었다. 연구에서 밝혀진 조건들을 향후 보다 효과적으로 수치모의하기 위한 방안으로서 EFDC모형의 내부경계조건을 다기능보의 문비조건(RSG, Lift 등)에 맞게 조정하는 방법을 제안하고 그 적용성을 검토한 뒤 모형을 부분 수정하여 제시하였다.

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Development of Two-Dimensional Near-field Integrated Performance Assessment Model for Near-surface LILW Disposal (중·저준위 방사성폐기물 천층처분시설 근계영역의 2차원 통합성능평가 모델 개발)

  • Bang, Je Heon;Park, Joo-Wan;Jung, Kang Il
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.12 no.4
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    • pp.315-334
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    • 2014
  • Wolsong Low- and Intermediate-level radioactive waste (LILW) disposal center has two different types of disposal facilities and interacts with the neighboring Wolsong nuclear power plant. These situations impose a high level of complexity which requires in-depth understanding of phenomena in the safety assessment of the disposal facility. In this context, multidimensional radionuclide transport model and hydraulic performance assessment model should be developed to identify more realistic performance of the complex system and reduce unnecessary conservatism in the conventional performance assessment models developed for the $1^{st}$ stage underground disposal. In addition, the advanced performance assessment model is required to calculate many cases to treat uncertainties or study parameter importance. To fulfill the requirements, this study introduces the development of two-dimensional integrated near-field performance assessment model combining near-field hydraulic performance assessment model and radionuclide transport model for the $2^{nd}$ stage near-surface disposal. The hydraulic and radionuclide transport behaviors were evaluated by PORFLOW and GoldSim. GoldSim radionuclide transport model was verified through benchmark calculations with PORFLOW radionuclide transport model. GoldSim model was shown to be computationally efficient and provided the better understanding of the radionuclide transport behavior than conventional model.

A Study on a Mathematical Model of the Long-term Track Tamping Scheduling Problem (도상 다짐작업의 장기 일정계획 문제에 관한 수리적 모형 고찰)

  • Oh Seog-Moon;Lee Jeeha;Lee Hee-Up;Park Bum Hwan;Hong Soon-Heum
    • Journal of the Korean Society for Railway
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    • v.9 no.1 s.32
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    • pp.50-56
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    • 2006
  • This paper presents a mathematical model of the long-term track tamping scheduling problem in the Korean highspeed railway system. The presented model encompasses various operational field constraints, moreover improves a state-of-the-art model in extending the feasible space. We show the model is sized up to intractable scale, then propose another approximation model that is possible to handle with the present computer system and commercial optimization package, directly. The aggregated index, lot, is selected, considering the resolution of the planning horizon as well as scheduling purpose. Lastly, this paper presents two test results for the approximation model. The results expose the approximation model to quite promising in deploying it into an operational software program for the long-term track tamping scheduling problem.

Numerical Analysis of the Mechanical and Hydraulic behavior of Concrete Plug in Underground Storage Cavern (지하저장공동에서의 콘크리트 플러그의 역학적 및 수리적 거동에 관한 수치해석적 연구)

  • 박병기;이희근;전석원;박의섭
    • Proceedings of the Korean Society for Rock Mechanics Conference
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    • 2000.09a
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    • pp.93-103
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    • 2000
  • The concrete plug in an underground cavern prevents the stored product (oil, gas, etc) from leaking and the excessive show of underground water, so it plays an important role in construction and operation of the storage cavern. Additionally, it should maintain its stability under every possible loading condition. Once the plug is constructed, the cavern is isolated from the external access. Therefore, mechanical and hydraulic consideration should be made in construction to fulfill its function. Therefore, in this study, numerical analyses were conducted to study the optimal shape and thickness of the plug with respect to the various conditions of installation depth, the shape of the plug, in-situ stress ratio (K), the condition of rock-plug interface, and the effect of Excavation Damaged Zone (EDZ). This paper also presents the effect of slot depth on the hydraulic behavior of the plug. These analyses were carried out by using the 2-dimensional finite difference code, rm FLAC, and the 3D code, m FLA $C^{3D}$./.

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Numerical Analysis of the Mechanical and Hydraulic behavior of Concrete Plug in Underground Storage Cavern (지하저장공동에서의 콘크리트 플러그의 역학적 및 수리적 거동에 관한 수치해석적 연구)

  • 박병기;이희근;전석원;박의섭
    • Tunnel and Underground Space
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    • v.10 no.3
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    • pp.344-354
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    • 2000
  • The concrete plug in an underground cavern prevents the stored product (oil, gas, etc) from leaking and the excessive inflow of underground water, so it plays an important role in construction and operation of the storage cavern. Additionally, it should maintain its stability under every possible loading condition. Once the plug is constructed, the cavern is isolated from the external access. Therefore, mechanical and hydraulic consideration should be made in construction to fulfill its function. Therefore, in this study, numerical analyses were conducted to study the optimal shape and thickness of the plug with respect to the various conditions of installation depth, the shape of the plug, in-situ stress ratio (K), the condition of rock-plug interface, and the effect of Excavation Damaged Zone (EDZ). This paper also presents the effect of slot depth on the hydraulic behavior of the plug. These analyses were carried out by using the 2-dimensional finite difference code, rm FLAC, and the 3D code, rm FLAC$\^$3D/.

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Hydro-Mechanical Modeling of Fracture Opening and Slip using Grain-Based Distinct Element Model: DECOVALEX-2023 Task G (Benchmark Simulation) (입자기반 개별요소모델을 이용한 암석 균열의 수리역학 거동해석: 국제공동연구 DECOVALEX-2023 Task G (Benchmark Simulation))

  • park, Jung-Wook;Park, Chan-Hee;Lee, Changsoo
    • Tunnel and Underground Space
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    • v.31 no.4
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    • pp.270-288
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    • 2021
  • We proposed a numerical method to simulate the hydro-mechanical behavior of rock fracture using a grain-based distinct element model (GBDEM) in the paper. As a part of DECOVALEX-2023 Task G, we verified the method via benchmarks with analytical solutions. DECOVALEX-2023 Task G aims to develop a numerical method to estimate the coupled thermo-hydro-mechanical processes within the crystalline rock fracture network. We represented the rock sample as a group of tetrahedral grains and calculated the interaction of the grains and their interfaces using 3DEC. The micro-parameters of the grains and interfaces were determined by a new methodology based on an equivalent continuum approach. In benchmark modeling, a single fracture embedded in the rock was examined for the effects of fracture inclination and roughness, the boundary stress condition and the applied pressure. The simulation results showed that the developed numerical model reasonably reproduced the fracture slip induced by boundary stress condition, the fracture opening induced by fluid injection, the stress distribution variation with fracture inclination, and the fracture roughness effect. In addition, the fracture displacements associated with the opening and slip showed good agreement with the analytical solutions. We expect the numerical model to be enhanced by continuing collaboration and interaction with other research teams of DECOVALEX-2023 Task G and validated in further study experiments.

Build-Up a Kinematic Wave Routing System for the Catchment-Stream Complex (사면 및 하도 복합유출장의 단기 유출해석 시스템 개발)

  • Ha, Sung Ryong
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.14 no.4
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    • pp.875-886
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    • 1994
  • This study is to develop an advanced storm runoff analysis program which takes geomorphological characteristics of watershed into consideration in determining model parameters. Basic concept of storm runoff modelling is based upon the kinematic wave theory. And numerical solution is obtained by the characteristic curve method. The storm runoff analysis program developed by this study is composed of multiple equivalent roughness sub-basins, each of which has two equivalent catchments on both side of a stream. Because it is based upon the stream-order of the Strahler system, the equivalent catchment-stream network reflects the stochastic geomorphological characteristics in the model parameter. Applicability and reliability of the storm runoff analysis program is evidenced by model calibration and verification process utilizing geographical and hydrological data of the Bocheong-river area which is a representative watershed of IHP projects in Korea. This study will hopefully contribute to hydrological calculation essentially required to understand water quality effect caused by regional development.

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