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大伙房水库挑流原型观测中存在的问题及改进措施
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作者 杨凤艳 马润才 《水利管理技术》 1997年第2期39-41,共3页
1 问题的提出大伙房水库自1958年建成以来共开启溢洪道7次,每次均对挑流原型进行了观测,但在1985年以前,施测总是从库区内的固定高程点引高程,准确度低而且麻烦,从1985年开始,我们在溢洪道翼墙延长线上设立了固定高程点(A、B),使观测在... 1 问题的提出大伙房水库自1958年建成以来共开启溢洪道7次,每次均对挑流原型进行了观测,但在1985年以前,施测总是从库区内的固定高程点引高程,准确度低而且麻烦,从1985年开始,我们在溢洪道翼墙延长线上设立了固定高程点(A、B),使观测在A点处进行。 展开更多
关键词 溢洪道 挑流 水库 水流原型观测
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Turbulence and mixing in a freshwater-influenced tidal bay: Observations and numerical modeling 被引量:1
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作者 LIAN Qiang LIU ZhiYu 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第11期2049-2058,共10页
In situ observations and numerical simulations of turbulence are essential to understanding vertical mixing processes and their dynamical controls on both physical and biogeochemical processes in coastal embayments. U... In situ observations and numerical simulations of turbulence are essential to understanding vertical mixing processes and their dynamical controls on both physical and biogeochemical processes in coastal embayments. Using in situ data collected by bottom-mounted acoustic Doppler current profilers(ADCPs) and a free-falling microstructure profiler, as well as numerical simulations with a second-moment turbulence closure model, we studied turbulence and mixing in the Xiamen Bay, a freshwater-influenced tidal bay located at the west coast of the Taiwan Strait. Dynamically, the bay is driven predominantly by the M2 tide, and it is under a significant influence of the freshwater discharged from the Jiulong River. It is found that turbulence quantities such as the production and dissipation rates of the turbulent kinetic energy(TKE) were all subject to significant tidal variations, with a pronounced ebb-flood asymmetry. Turbulence was stronger during flood than ebb. During the flooding period, the whole water column was nearly well mixed with the depth-averaged TKE production rate and vertical eddy viscosity being up to 5?10?6 W kg?1 and 2?10?2 m2 s?1, respectively. In contrast, during the ebb strong turbulence was confined only to a 5?8 m thick bottom boundary layer, where turbulence intensity generally decreases with distance from the seafloor. Diagnosis of the potential energy anomaly showed that the ebb-flood asymmetry in turbulent dissipation and mixing was due mainly to tidal straining process as a result of the interaction between vertically shared tidal currents and horizontal density gradients. The role of vertical mixing in generating the asymmetry was secondary. A direct comparison of the modeled and observed turbulence quantities confirmed the applicability of the second-moment turbulence closure scheme in modeling turbulent processes in this weakly stratified tidally energetic environment, but also pointed out the necessity of further refinements of the model. 展开更多
关键词 tidal bay turbulent mixing second-moment turbulence closure model turbulent kinetic energy dissipation rate vertical eddy viscosity
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