芬兰湾当前最先进的操作模式模拟与ADCP测量结果的比较

P. Lagemaa, I. Suhhova, M. Nõmm, J. Pavelson, J. Elken
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引用次数: 7

摘要

目前两种操作模式(波罗的海范围的HIROMB-BS01分辨率为1海里,次区域的HIROMB-EST分辨率为0.5海里)的模拟结果与芬兰湾四个不同地形和水文背景的ADCP测量结果进行了比较。尽管没有资料进行中尺度海洋学特征的同化,但在大多数情况下,这两种模式的预测都与观测到的地下流有合理的匹配。在低频和高频范围内,模拟的电流与观测到的对应电流的相关性经常产生高于0.5的值。一般来说,模型倾向于产生比观测到的更小的电流变异性(更小的标准差)。平均电流也有一些特定地点的偏差。近底流和沿海流受到地形的高度限制。在一个小岛周围的粗糙底部区域的深层测量了高电流速度(超过20厘米/秒)。一般来说,0.5 nm模型可以很好地模拟这种电流,只是主导方向有轻微偏差。如果考虑到正确的地形,模拟的近底流可以简单地转化为更真实的结果。观测结果和分区域模式结果都显示了类似的垂直海流结构的盐斜增强EOF模态,其振幅具有很好的相关性。
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Comparison of current simulations by the state-of-the-art operational models in the Gulf of Finland with ADCP measurements
Current modeling results from two operational models (Baltic-wide HIROMB-BS01 with 1 nautical mile resolution and subregional HIROMB-EST with 0.5 mile resolution) were compared with ADCP measurements at four sites of different topographic and hydrographic background in the Gulf of Finland. Both models predict a reasonable match with the observed subsurface currents in most of the cases, although there are no data to carry out the assimilation of mesoscale oceanographic features. The correlations of the modeled currents with the observed counterparts yield quite often the values above 0.5, both in the low-frequency and high-frequency range. In general, the models tend to generate less current variability (smaller standard deviations) than observed. There is also some site-specific bias of mean currents. Near-bottom and coastal currents are highly constrained by the topography. High current speeds (above 20 cm/s) were measured in the deep layers of the rough-bottom area around a small island. Such currents were in general well simulated by the 0.5 nm model, only slightly biased by the dominating direction. The modeled near-bottom currents are simply transformable into more realistic results if the correct topography is taken into account. Both the observations and the subregional model results revealed similar halocline-intensified EOF modes of vertical current structure, the amplitudes of which were correlated quite well.
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