首页> 外文OA文献 >Plimne oscilacije u sjevernom Jadranu: opažanja, modeliranje varijacijskom asimilacijom podataka i linearna plimna dinamika
【2h】

Plimne oscilacije u sjevernom Jadranu: opažanja, modeliranje varijacijskom asimilacijom podataka i linearna plimna dinamika

机译:亚得里亚海北部的潮汐振荡:观测,通过变化数据同化和线性潮汐动力学建模

摘要

Fifteen open-sea time-series observations of tidal velocities and tidal bottom pressures for more than six months duration provide a new database for North Adriatic tides. The observations show nearly reversing tidal currents at most locations and increasing tidal-current strength near Istria. Tidal elevation amplitudes and phases respectively increase northwestward and counterclockwise, strongly for semidiurnal tides and weakly for diurnal tides. The data are used for optimal determination of boundary conditions for a linear strong-constraint variational data assimilation model and the resulting average rms difference errors for tidal elevations and currents are below 1 cm and 0.5 cm/s, respectively. The Q factors from the model are 14.0 for M2 and 22.4 for K1, but comparisons between frictional dissipation estimated from the model and from the data suggest that model dissipation values could be too high by a factor of two and Q factors too small. Model potential energy is 1.5 times kinetic energy for M2 and 6.1 times kinetic energy for K1. Observational and modeling results suggest that energy fluxes from Kvarner Bay are significant in the North Adriatic tidal energy balance. M2 energy fluxes support the concept of an incident and reflected Kelvin wave in the North Adriatic with some modification. K1 energy fluxes show a northeastward cross-basin flux near the 50 m isobath where the bathymetric slope is particularly steep, with Kelvin-wave-like structures north of the ridge and departures from Kelvin--wave structure south of the ridge.
机译:在六个多月的时间内对潮汐速度和潮汐底压力进行了十五次海上时间序列观测,为北亚得里亚海的潮汐提供了新的数据库。观测结果表明,在大多数地方,潮流几乎都在逆转,而Istria附近的潮流强度却在增加。潮汐高程的幅值和相位分别向西北和逆时针方向增加,对于半日潮汐来说是强烈的,而对于日潮汐来说是弱的。该数据用于线性强约束变化数据同化模型的边界条件的最佳确定,并且潮汐高度和洋流产生的平均均方根差值误差分别低于1 cm和0.5 cm / s。来自模型的Q因子对于M2为14.0,对于K1为22.4,但是从模型和数据估计的摩擦耗散之间的比较表明,模型耗散值可能高2倍,而Q因子太小。模型势能是M2的1.5倍动能,是K1的6.1倍动能。观测和模拟结果表明,克瓦纳湾的能量通量在北亚得里亚海的潮汐能平衡中非常重要。 M2能量通量支持入射的概念,并对北亚得里亚海的开尔文波进行了一些修改。 K1能量通量在等深线50 m附近表现出东北向跨盆通量,在该处测深斜率特别陡峭,在山脊以北有开尔文波状结构,在山脊以南与开尔文波状结构背离。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号