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Saltwater intrusion has been serious in the Pearl River estuary in recent years. For better understanding and analysis of the saltwater movement to the estuary, the three-dimensional Finite-Volume Coastal Ocean Model (FVCOM) is made to simulate the salinity intrusion to the four western watercourses in the Pearl River estuary under three semilunar conditions. With the measured and simulated Root Mean Square Error (RMSE) and the mean absolute percentage error of water level and salinity at multiple sites, the results show that the numerical water levels, salinity and flow velocities are in agreement with the measured data. It is acceptable and feasible to apply the FVCOM to simulate the salt water intrusion in the western four watercourses of the Pearl River. With the numerical data, the time and spatial movement patterns of saltwater intrusion along the Modao watercourse are analyzed. The salinity contour reaches its peak generally during 3-5 days before the spring tide. The salinity stratification is more obvious in the period of ebb tide than that in the rising tide whether in the spring or neap tides. Salt fluxes reflect changes of salt into the estuary, and the change rules are close to the rules of salinity intrusion.  相似文献   
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基于非平稳信号时频分析及其地震时频属性技术应用的有关研究成果,对地震信号时频分析、分频解释与频谱分解及其在地震沉积学与地震储层成像中的应用进行系统总结与阐述.从时频分析的基本原理出发,探讨地震分频解释和频谱分解的实现方法及其在地震沉积学与储层成像中的应用策略与效果.分析指出,发展高精度时频分析理论和算法,一体化统筹谋划地震资料叠前与叠后处理解释,针对不同地质条件探索相应的时频响应规律等,是分频解释技术及其在地震沉积学和地震储层成像研究中有效应用中值得深入研究的问题.  相似文献   
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