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不同路径台风对中国近海海温的影响特征统计分析
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作者 孙泽铭 韩树宗 +1 位作者 王明杰 苏翰祥 《热带海洋学报》 CAS CSCD 北大核心 2024年第5期17-31,共15页
文章基于中国气象局提供的最佳台风路径资料,基于K均值聚类分析法将2002年至2021年由西太暖池进入中国近海的台风分为3类,并依据台风路径特征将3类台风分别命名为西行路径台风、西北路径台风和转向路径台风,并使用遥感系统(remote sensi... 文章基于中国气象局提供的最佳台风路径资料,基于K均值聚类分析法将2002年至2021年由西太暖池进入中国近海的台风分为3类,并依据台风路径特征将3类台风分别命名为西行路径台风、西北路径台风和转向路径台风,并使用遥感系统(remote sensing systems,REMSS)提供的海表面温度最优插值日产品和区域海气浪耦合模型(coupled ocean atmosphere wave sediment transport modeling system,COAWST)的模拟结果,对这3类台风造成的上层海洋温度的变化特征进行统计研究。结果显示,3种台风对海表面温度(sea surface temperature,SST)影响特征的不同主要体现在对SST的冷却幅度和作用时间上:转向路径台风对SST的冷却幅度最大并且作用时间最长,西北路径台风次之,而西行路径台风冷却幅度最小且作用时间最短;3种台风对混合层厚度(mixed layer thickness,MLT)与温跃层厚度(thermocline thickness,TT)影响的差异主要体现在MLT和TT的变化幅度和恢复时间上:转向路径台风的MLT和TT变化幅度最大,西北路径台风次之,西行路径台风最小。对于MLT与TT的恢复速度,西北路径台风整体上要明显快于西行路径台风和转向路径台风。 展开更多
关键词 典型台风路径 西太暖池 中国海 上层海洋 海表面温度 混合层厚度 温跃层厚度
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Thermocline Thickness Evaluation on Stratified Thermal Energy Storage Tank of Co-generated District Cooling Plant
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作者 M.A.A. Majid J. Waluyo 《Journal of Energy and Power Engineering》 2010年第2期28-33,共6页
Temperature distribution of water inside of thermal storage tank reflects the condition of cooling energy stored in the tank. It can be used to define important parameters required for evaluation the performance of th... Temperature distribution of water inside of thermal storage tank reflects the condition of cooling energy stored in the tank. It can be used to define important parameters required for evaluation the performance of thermal storage tank. In this study, the thermocline thickness was evaluated for two cases of charging cycles: case Ⅰ at 393 m^3 / hr and case Ⅰ at 524 m^3 / hr. Hourly data were used for the study. Curve fitting approach was used to plot the temperature distribution profiles. Results obtained revealed that the fitting function enabled quantification of thermocline thickness of the thermal storage tank. The parameters that were determined are average cool-warm water temperatures and cool water depth in the tank. The approach offer an advantage to determine the thermocline thickness based on functionally relationship of temperature distribution profile. Results obtained shown that thermocline thickness increases at the higher flow rate. This was due to increased mixing of cool and warm water. It was also noted that thicker thermocline occurred in the region nearby the inlet diffuser. The findings indicate that the operating thermal energy storage as performing as a stratified tank. 展开更多
关键词 Temperature distribution profile thermocline thickness thermal energy storage.
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