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Numerical simulations of flow and sediment transport within the Ning-Meng reach of the Yellow River,northern China 被引量:2
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作者 DOU Shentang YU Xin +1 位作者 DU Heqiang ZHANG Fangxiu 《Journal of Arid Land》 SCIE CSCD 2017年第4期591-608,共18页
Effective management of a river reach requires a sound understanding of flow and sediment transport generated by varying natural and artificial runoff conditions. Flow and sediment transport within the Ning-Meng reach... Effective management of a river reach requires a sound understanding of flow and sediment transport generated by varying natural and artificial runoff conditions. Flow and sediment transport within the Ning-Meng reach of the Yellow River(NMRYR), northern China are controlled by a complex set of factors/processes, mainly including four sets of factors:(1) aeolian sediments from deserts bordering the main stream;(2) inflow of water and sediment from numerous tributaries;(3) impoundment of water by reservoir/hydro-junction; and(4) complex diversion and return of irrigation water. In this study, the 1-D flow & sediment transport model developed by the Yellow River Institute of Hydraulic Research was used to simulate the flow and sediment transport within the NMRYR from 2001 to 2012. All four sets of factors that primarily control the flow and sediment transport mentioned above were considered in this model. Compared to the measured data collected from the hydrological stations along the NMRYR, the simulated flow and sediment transport values were generally acceptable, with relative mean deviation between measured and simulated values of 〈15%. However, simulated sediment concentration and siltation values within two sub-reaches(i.e., Qingtongxia Reservoir to Bayan Gol Hydrological Station and Bayan Gol Hydrological Station to Toudaoguai Hydrological Station) for some periods exhibited relatively large errors(the relative mean deviations between measured and simulated values of 18% and 25%, respectively). These errors are presumably related to the inability to accurately determine the quantity of aeolian sediment influx to the river reach and the inflow of water from the ten ephemeral tributaries. This study may provide some valuable insights into the numerical simulations of flow and sediment transport in large watersheds and also provide a useful model for the effective management of the NMRYR. 展开更多
关键词 numerical simulation flow and sediment transport 1-d flow sediment model Yellow River
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A SPLIT-CHARACTERISTIC FINITE ELEMENT MODEL FOR 1-D UNSTEADY FLOWS 被引量:8
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作者 ZHOU Yi-lin TANG Hong-wu LIU Xiao-hua 《Journal of Hydrodynamics》 SCIE EI CSCD 2007年第1期54-61,共8页
An efficient and accurate solution algorithm was proposed for 1-D unsteady flow problems widely existing in hydraulic engineering. Based on the split-characteristic finite element method, the numerical model with the ... An efficient and accurate solution algorithm was proposed for 1-D unsteady flow problems widely existing in hydraulic engineering. Based on the split-characteristic finite element method, the numerical model with the Saint-Venant equations of 1-D unsteady flows was established. The assembled f'mite element equations were solved with the tri-diagonal matrix algorithm. In the semi-implicit and explicit scheme, the critical time step of the method was dependent on the space step and flow velocity, not on the wave celerity. The method was used to eliminate the restriction due to the wave celerity for the computational analysis of unsteady open-channel flows. The model was verified by the experimental data and theoretical solution and also applied to the simulation of the flow in practical river networks. It shows that the numerical method has high efficiency and accuracy and can be used to simulate 1-D steady flows, and unsteady flows with shock waves or flood waves. Compared with other numerical methods, the algorithm of this method is simpler with higher accuracy, less dissipation, higher computation efficiency and less computer storage. 展开更多
关键词 split characteristic finite element method tri-diagonal matrix algorithm 1-d unsteady flow flood wave river networks
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Variational Formulation of 1-D Unsteady Compressible Flow in a Deforming Tube 被引量:2
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作者 Gaolian Liu Yi Tao Yingxue LiuShanghai University, 200072 Shanghai, China 《Journal of Thermal Science》 SCIE EI CAS CSCD 2003年第2期114-117,共4页
The variational principles for 1-D unsteady compressible flow in a deforming tube derived in a previous paper are improved essentially by reconstructing the initial/final-integral terms according to a new method sugge... The variational principles for 1-D unsteady compressible flow in a deforming tube derived in a previous paper are improved essentially by reconstructing the initial/final-integral terms according to a new method suggested in a recent paper. As a result, the inherent shortcoming of variational principles of being unable to admit physically rational initial/final-value conditions in initial/boundary-value problems is successfully eliminated. Thus, a new theoretical basis for the time-space finite-element analysis is provided. 展开更多
关键词 variational principle time boundary condition 1-d unsteady flow.
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一维浅水流动方程的Godunov格式求解 被引量:46
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作者 潘存鸿 林炳尧 毛献忠 《水科学进展》 EI CAS CSCD 北大核心 2003年第4期430-436,共7页
以准确Riemann解为基础,建立了求解一维非平底浅水流动方程的Godunov格式,用"水位方程法(WaterLevelFormulation,WLF)"求解Riemann解,结合中心差分和Riemann解离散底坡项,保证了计算格式的和谐性。经算例验证,方法健全、通用... 以准确Riemann解为基础,建立了求解一维非平底浅水流动方程的Godunov格式,用"水位方程法(WaterLevelFormulation,WLF)"求解Riemann解,结合中心差分和Riemann解离散底坡项,保证了计算格式的和谐性。经算例验证,方法健全、通用,且分辨率高。 展开更多
关键词 一维浅水流动方程 Godunov格式 Riemann解 源项 水位方程法
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一维浅水方程的高精度GODUNOV格式 被引量:14
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作者 耿艳芬 王志力 金生 《水动力学研究与进展(A辑)》 CSCD 北大核心 2005年第4期507-512,共6页
以HLLE的近似Riemann解为基础,时间积分采用改进的二步RUNGE-KUTTA法,空间通过重构和通量限制获得时间和空间均为二阶精度的一维浅水方程的Godunov离散格式。此格式具有TVD的性质,保证了数值解收敛于弱解,在TVD意义下无假振,保持初值的... 以HLLE的近似Riemann解为基础,时间积分采用改进的二步RUNGE-KUTTA法,空间通过重构和通量限制获得时间和空间均为二阶精度的一维浅水方程的Godunov离散格式。此格式具有TVD的性质,保证了数值解收敛于弱解,在TVD意义下无假振,保持初值的单调性,解自动满足熵条件。通过实例比较了各种通量限制因子在求解方程中的优缺点,验证了此方法具有守恒性、鲁棒性、无虚假振荡并能高分辨率地捕捉间断等优点。 展开更多
关键词 一维浅水方程 HLLE黎曼解 间断捕捉 通量限制器
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ONE-AND TWO-DIMENSIONAL COUPLED HYDRODYNAMICS MODEL FOR DAM BREAK FLOW 被引量:8
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作者 YANG Fang-li ZHANG Xiao-feng TAN Guang-ming 《Journal of Hydrodynamics》 SCIE EI CSCD 2007年第6期769-775,共7页
1-D and 2-D mathematical models for dam break flow were established and verified with the measured data in laboratory. The 1-D and 2-D models were then coupled, and used to simulate the dam break flow from the reservo... 1-D and 2-D mathematical models for dam break flow were established and verified with the measured data in laboratory. The 1-D and 2-D models were then coupled, and used to simulate the dam break flow from the reservoir tail to the dam site, the propagation of dam break waves in the downstream channel, and the submergence of dam break flow in the downstream town with the hydrodynamics method. As a numerical example, the presented model was employed to simulate dam break flow of a hydropower station under construction. In simulation, different dam-break durations, upstream flows and water levels in front of dam were considered, and these influencing factors of dam break flow were analyzed, which could be referenced in planning and designing hydropower stations. 展开更多
关键词 dam-break flow hydrodynamics model 1-d and 2-d coupled model dam-break duration upstream flow water level before dam
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