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- W2019518520 abstract "본 연구에서는 마른하도 및 복잡한 지형에서의 파의 전파와 같은 수공학 분야에서 해결하기 어려운 문제를 해석하기 위한 고정확도 2차원 수치모형을 개발하기 위해, unsplit 유한체적기법과 HLLC Riemann 해법을 이용한 흐름율 계산으로 쌍곡선형 적분 보존형의 2차원 천수방정식을 해석하였다. Unsplit 기법의 적용을 위해 하상경사항은 발산정리를 이용하여 이산화한 형태를 적용하였으며, 흐름율과 생성항의 균형을 이루기 위해 수면경사법을 시간과 공간에 대해 2차정확도를 가지는 MUSCL 기법과 연계하였다. 그리고 적용한 생성항 처리기법과 흐름율과의 보존특성이 만족함을 보였다. 2차정확도의 사용으로 불연속 지점에서 발생할 수 있는 수치진동을 제거하기 위해서 경사제한자를 사용한 TVD 기법을 적용하였다. 개발모형을 정확해가 존재하는 생성항이 없는 1차원 댐 붕괴 흐름에 적용하여 흐름율 계산의 정확성을 검증하였고, 하상융기를 가진 하도의 정상류 및 천이류 모의를 통해 개발모형의 보존특성을 검증하였으며, 하상경사 및 단면의 확대/축소구간이 존재하는 2차원 댐 붕괴 흐름에 적용하여 개발모형의 적용성을 검증하였다. The objective of this study is to develop the accurate, robust and high resolution two-dimensional numerical model that solves the computationally difficult hydraulic problems, including the wave front propagation over dry bed and abrupt change in bathymetry. The developed model in this study solves the conservative form of the two-dimensional shallow water equations using an unsplit finite volume scheme and HLLC approximate Riemann solvers to compute the interface fluxes. Bed-slope term is discretized by the divergence theorem in the framework of FVM for application of unsplit scheme. Accurate and stable SGM, in conjunction with the MUSCL which is second-order-accurate both in space and time, is adopted to balance with fluxes and source terms. The exact C-property is shown to be satisfied for balancing the fluxes and the source terms. Since the spurious oscillations in second-order schemes are inherent, an efficient slope limiting technique is used to supply TVD property. The accuracy, conservation property and application of developed model are verified by comparing numerical solution with analytical solution and experimental data through the simulations of one-dimensional dam break flow without bed slope, steady transcritical flow over a hump and two-dimensional dam break flow with a constriction." @default.
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- W2019518520 date "2009-12-31" @default.
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- W2019518520 title "Handling Method for Flux and Source Terms using Unsplit Scheme" @default.
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- W2019518520 doi "https://doi.org/10.3741/jkwra.2009.42.12.1079" @default.
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