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A fine resolution hybrid coordinate ocean model (HYCOM) for the Black Sea with a new solar radiation penetration scheme.

机译:具有新的太阳辐射穿透方案的黑海精细分辨率混合坐标海洋模型(HYCOM)。

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摘要

A 1/25° x 1/25° cos(lat), (long x lat) resolution eddy-resolving HYbrid Coordinate Ocean Model (HYCOM) is introduced for the Black Sea and used to examine the effects of ocean turbidity on upper ocean circulation features including sea surface height (SSH) and mixed layer depth (MLD) on annual mean and seasonal climatological time scales. HYCOM is a primitive equation model with a K-Profile Parameterization (KPP) mixed layer sub-model, and it uses a hybrid vertical coordinate that combines the advantages of isopycnal, terrain-following (sigma) and z-level coordinates in optimally simulating coastal and open-ocean circulation features. This model approach with ≈3.0 km resolution is applied to the Black Sea for the first time in the literature.; A newly-developed time-varying solar penetration scheme that treats attenutation as a continuous quantity is added to the model as will be described in this dissertation. This new scheme involves two bands for the top 10 m of the water column; thus, it is suitable for any Ocean General Circulation Model (OGCM) that has fine vertical layer resolution near the surface. With the new parameterization, the depth-dependent attenuation of subsurface heating in HYCOM is given by monthly mean fields for the attenuation of Photosynthetically Available Radiation (kPAR) during 1997–2001 as constructed from Sea-viewing Wide Field-of-view Sensor (SeaWiFS) satellite data. Climatologically-forced HYCOM simulations with no assimilation of any ocean data are then used to show the importance of including spatial and temporal varying attenuation depths for the annual and monthly mean predictions of upper ocean quantities in the Black Sea.; It is first shown that most of the large differences between the basin-wide mean net heat flux at the sea surface and flux entering the mixed layer (mixed layer flux) in the Black Sea occur from April to October on the climatological time scales, and there is almost no difference between the two during the remaining months. The difference between the net heat flux at the sea surface and mixed layer flux is shortwave radiation absorbed below the mixed layer, which can be as large as 50 W m−2 in summer because the MLD is very shallow (4 m) over the most of Black Sea. In particular, the model simulations reveal that the basin-wide mean flux below the mixed layer can be as large as 100 W m−2 regardless of the atmospheric forcing used.; Finally, the results in this dissertation suggest that, if the Black Sea turbidity is entirely or largely due to biology, a lack of nutrients (or other caus for loss of biomass) will have a significant effect on the overall circulation of the Black Sea. In this dissertation, it is not specifically examined how likely this is (i.e., how robust the bio-system is in the Black Sea).
机译:针对黑海引入了1/25°x 1/25°cos(lat),(长x lat)分辨率的涡旋分辨混合坐标海洋模型(HYCOM),用于检查海洋浊度对上层海洋环流的影响年平均和季节性气候时间尺度上的特征包括海面高度(SSH)和混合层深度(MLD)。 HYCOM是具有K轮廓参数化(KPP)混合层子模型的原始方程模型,它使用混合垂直坐标,该模型结合了等腰线,地形跟踪(sigma)和 z 的优点级坐标,以最佳地模拟沿海和远洋环流特征。在文献中,这种分辨率约为3.0 km的模型方法首次应用于黑海。如本文所述,将新开发的时变太阳能穿透方案(将衰减视为连续量)添加到模型中。新方案涉及水柱顶部10 m的两个频段;因此,它适用于在地面附近具有良好垂直层分辨率的任何海洋通用环流模型(OGCM)。通过新的参数化,HYCOM中地下加热的深度相关衰减由1997-2001年期间光合有效辐射( k PAR )衰减的月平均场给出。由海景宽视场传感器(SeaWiFS)卫星数据构建而成。然后,在没有任何海洋数据同化的情况下,由气候强迫的HYCOM模拟被用来表明包括空间和时间变化的衰减深度对于黑海中上层海洋量的年度和月度平均预测的重要性。首先表明,在气候时间尺度上,海盆表面平均净热通量与黑海进入混合层的通量(混合层通量)之间的大部分较大差异发生在4月至10月。在剩余的几个月中,两者之间几乎没有区别。海面净热通量与混合层通量之差是混合层下吸收的短波辐射,夏季由于MLD很浅,可能高达50 W m -2 (<4 m)在黑海大部分地区。特别是,模型模拟表明,无论使用何种大气强迫,混合层以下的全盆地平均通量都可高达100 W m -2 。最后,本论文的结果表明,如果黑海浑浊完全或很大程度上是由于生物学原因,那么缺乏营养(或其他造成生物量损失的原因)将对黑海的整体循环产生重大影响。在本文中,没有具体研究这种可能性的可能性(即黑海中生物系统的坚固程度)。

著录项

  • 作者

    Kara, A. Birol.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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