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首页> 外文期刊>Journal of Physical Oceanography >Mid- to Inner-Shelf Coupled ROMS-SWAN Model-Data Comparison of Currents and Temperature: Diurnal and Semidiurnal Variability
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Mid- to Inner-Shelf Coupled ROMS-SWAN Model-Data Comparison of Currents and Temperature: Diurnal and Semidiurnal Variability

机译:中到内耦合的ROMS-SWAN模型-电流和温度的数据比较:日和半日变化

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摘要

Accurately representing diurnal and semidiurnal internal variability is necessary to investigate inner-shelf to midshelf exchange processes. Here, a coupled Regional Ocean Model System (ROMS)-Simulating Waves Nearshore (SWAN) model is compared to observed diurnal and semidiurnal internal tidal variability on the mid and inner shelf (26-8 m water depth) near San Pedro Bay, California. Modeled mean stratification is about one-half of that observed. Modeled and observed baroclinic velocity rotary spectra are similar in the diurnal and semidiurnal band. Modeled and observed temperature spectra have similar diurnal and semidiurnal band structure, although the modeled is weaker. The observed and modeled diurnal and semidiurnal baroclinic velocity- and temperature-dominant vertical structures are similar and consistent with mode-one internal motions. Both observed and modeled diurnal baroclinic kinetic energy are strongly correlated to diurnal wind forcing and enhanced by subtidal vorticity-induced reduction in the inertial frequency. The mid- and inner-shelf modeled diurnal depth-integrated heat budget is a balance between advective heat flux divergence and temperature time derivative. Temperature-velocity phase indicates progressive semidiurnal internal tide on the midshelf and largely standing internal tide on the inner shelf in both observed and modeled. The ratio of observed to modeled inferred phase speed is consistent with the observed to modeled stratification. The San Pedro Bay modeled semidiurnal internal tide has significant spatial variability, variable incident wave angles, and multiple local generation sites. Overall, the coupled ROMS-SWAN model represents well the complex diurnal and semidiurnal internal variability from the mid to the inner shelf.
机译:要研究内架到中架的交换过程,必须准确表示昼夜和半日的内部变异性。在这里,将耦合的区域海洋模型系统(ROMS)-近海模拟波浪(SWAN)模型与加利福尼亚州圣佩德罗湾附近中部和内部陆架(水深26-8 m)观测到的昼夜和半日内潮汐变化进行了比较。建模的平均分层约为所观察到的一半。在日和半日波段中,模拟和观测的斜压速度旋转光谱相似。建模和观察到的温度谱具有相似的昼夜和半昼夜带结构,尽管建模较弱。观测和建模的昼夜和半昼斜压速度和温度主导的垂直结构相似,并且与模式一的内部运动一致。观测到的和模拟的昼夜斜压动能都与昼夜强迫密切相关,并通过潮汐下涡引起的惯性频率降低而增强。中层和内层模拟的昼间深度积分热量收支是对流热通量散度和温度时间导数之间的平衡。温度-速度阶段表明,无论是在观测还是模拟中,中层陆架都处于渐进的半日内潮,而内层架则主要处于内潮。观察到的模型推断相速度之比与观察到的模型分层一致。 San Pedro Bay模型的半日内潮具有明显的空间变异性,可变的入射波角和多个本地发电地点。总体而言,耦合的ROMS-SWAN模型很好地表示了从中层到内层的复杂的昼夜和半昼夜内部变化。

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