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Three Dimensional Baroclinic Numerical Model for Simulating Fresh and Salt Water Mixing in the Yangtze Estuary 总被引:1,自引:5,他引:1
For simulating fresh and salt water mixing in estuaries, a three dimensional nonlinear baroclinic numerical model is developed, in which the gradients of horizontal pressure contain the gradient of barotropic pressure arising from the gradi-ent of tidal level and the gradient of baroclinic pressure due to the gradient of salinity. The Eulerian-Lagrangian method is employed to descretize both the momentum equations of tidal motion and the equation of salt water diffusion so as to im-prove the computational stability and accuracy. The methods to provide the boundary conditions and the initial conditions are proposed, and the criterion for computational stability of the salinity fields is presented. The present model is used for modeling fresh and salt water mixing in the Yangtze Estuary. Computations show that the salinity distribution has the characteristics of partial mixing pattern, and that the present model is suitable for simulalion of fresh and salt waler mixing in ihe Yanglze Esluary. 相似文献
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根据2006—2007年期间在珠江口八大口门进行的丰水期大、中、小潮3个航次、平水期和枯水期各1个航次的全潮同步水文观测资料,分析了八大口门的潮流特性、涨落潮通量等特征,并建立了逐时潮差与流量的相关关系。在丰水期小潮期间,八大口门受强热带风暴"碧利斯"带来的强降雨的影响,潮流特性、断面流量等水文特征出现较大的变化,逐时潮差与流量的相关关系与其他航次相比表现出不同的规律。在无强径流影响下,逐时潮差与流量的相关关系用线性方程拟合,相关性较好;但在强径流影响下,则采用二次多项式拟合较为合适,且拟合曲线的左右侧表现出涨、落潮过程的区别。 相似文献