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解决水质污浊的扩散问题的研究
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作者 冯新龙 王焕焕 阿布都热西提.阿布都外力 《新疆大学学报(理工版)》 CAS 2001年第2期159-164,共6页
利用差分方法对水质污浊的扩散问题进行研究 ,针对不规则区域的初边值问题构造了高精度的差分格式 ,并对初边值条件进行了恰当的处理 .首先给出了三层显格式绝对不稳定的证明 ,其次利用θ =1/ 2时的加权隐格式 ,对该问题进行数值求解 。
关键词 三层显式差分格式 加权隐格式 截断误差 水质污浊 扩散问题 旋涡扩散系数
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Impact of eddies on ocean diapycnal mixing in Gulf Stream region 被引量:4
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作者 LI Min XIE LingLing +1 位作者 YANG QingXuan TIAN JiWei 《Science China Earth Sciences》 SCIE EI CAS 2014年第6期1407-1414,共8页
Based on high-resolution,Array for Real-time Geostrophic Oceanography(Argo)profiles and Sea Level Anomaly(SLA)data,this study statistically analyzes and compares turbulent diapycnal mixing profiles inside and outside ... Based on high-resolution,Array for Real-time Geostrophic Oceanography(Argo)profiles and Sea Level Anomaly(SLA)data,this study statistically analyzes and compares turbulent diapycnal mixing profiles inside and outside mesoscale eddies in the Gulf Stream region.The result indicates that average diapycnal diffusivity at 300–540 m depths in anticyclonic eddies reaches4.0×10-5 m2 s-1.This is significantly higher than the 1.6×10-5 m2 s-1 outside eddies and 0.8×10-5 m2 s-1 in cyclonic eddies.Probabilities of diapycnal diffusivity greater than 10-4 m2 s-1 within anticyclonic and cyclonic eddies and outside eddies are29%,5%and 12%,respectively.However,magnitudes of average diapycnal diffusivity at 540–900 m depths in these three cases are of the same order,10-5 m2 s-1.Twenty-four of a total 38 anticyclonic eddies had enhanced mixing in the ocean interior,and 22 were observed during or shortly after strong winds.The coincidence between enhanced mixing and strong wind stress indicates that more wind-induced,near-inertial wave energy propagates downward in anticyclonic eddies.The deeper part of 12 profiles(below 540 m)in anticyclonic eddies had vertical overturns with Thorpe scale exceeding 5 m,among which three profiles had overturns reaching 20 m.Enhanced mixing may have occurred in deep layers of some profiles,although it was not evident in average conditions. 展开更多
关键词 ARGO EDDIES MIXING Gulf Stream region wind stress overturn
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