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Modelling the Influence of Major Baltic Inflows on Near-Bottom Conditions at the Entrance of the Gulf of Finland

机译:模拟主要波罗的海流入对芬兰湾入口处近底部条件的影响

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摘要

A coupled hydrodynamic-biogeochemical model was implemented in order to estimate the effects of Major Baltic Inflows on the near-bottom hydrophysical and biogeochemical conditions in the northern Baltic Proper and the western Gulf of Finland during the period 1991–2009. We compared results of a realistic reference run to the results of an experimental run where Major Baltic Inflows were suppressed. Further to the expected overall decrease in bottom salinity, this modelling experiment confirms that in the absence of strong saltwater inflows the deep areas of the Baltic Proper would become more anoxic, while in the shallower areas (western Gulf of Finland) near-bottom average conditions improve. Our experiment revealed that typical estuarine circulation results in the sporadic emergence of short-lasting events of near-bottom anoxia in the western Gulf of Finland due to transport of water masses from the Baltic Proper. Extrapolating our results beyond the modelled period, we speculate that the further deepening of the halocline in the Baltic Proper is likely to prevent inflows of anoxic water to the Gulf of Finland and in the longer term would lead to improvement in near-bottom conditions in the Baltic Proper. Our results reaffirm the importance of accurate representation of salinity dynamics in coupled Baltic Sea models serving as a basis for credible hindcast and future projection simulations of biogeochemical conditions.
机译:为了估计1991-2009年期间波罗的海北部和芬兰西部海湾的主要波罗的海流入量对近底部的水物理和生物地球化学条件的影响,实施了一种水动力-生物地球化学耦合模型。我们将实际参考运行的结果与抑制主要波罗的海流入的实验运行的结果进行了比较。除了预期的底部盐度总体下降之外,该模拟实验还证实,如果没有大量的盐水流入,波罗的海适当地区的深部地区将变得缺氧,而在较浅的地区(芬兰湾西部)则接近底部平均水平提高。我们的实验表明,典型的河口环流会导致波罗的海适当地区的水团运输,从而导致芬兰西部海湾近底部缺氧的持续时间短时出现。推算出超出建模时期的结果,我们推测波罗的海适当地区盐卤的进一步加深很可能会阻止缺氧水流入芬兰湾,从长远来看,这将导致该地区近底部条件的改善。波罗的海适当。我们的结果重申了在耦合的波罗的海模型中准确表示盐分动力学的重要性,该模型可作为可靠的后播和未来生物地球化学条件预测模拟的基础。

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