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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Subinertial to interannual transport variations in the Korea Strait and their possible mechanisms
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Subinertial to interannual transport variations in the Korea Strait and their possible mechanisms

机译:海峡两岸的年际至年际运输变化及其可能的机制

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The voltage-derived transport in the Korea Strait from March 1998 to April 2002 reveals various temporal variations such as subinertial, monthly, seasonal, and interannual variations. The driving mechanisms of these temporal variations in the flows through the straits and the mean sea level of the East Sea (Sea of Japan) are investigated using a simple analytical barotropic model. The East Sea is simplified as a flat-bottomed semienclosed basin, and it is forced by the atmospheric pressure, the along-strait wind stress, and the sea level differences along the straits. Despite its simplicity this model explains most variations and helps us understand dominant driving forces on each timescale. At the subinertial periods of 2–10 days the atmospheric pressure dominantly drives the flows into or out of the East Sea due to a Helmholtz resonance, whose period is about 3 days, and the mean sea level cannot respond isostatically. The effects of the atmospheric pressure on the transport variations become weak at long periods because there is enough time for the East Sea to be drained or filled through the strait flows as its mean sea level responds isostatically. On the other hand, the changes in the adjusted sea levels outside the straits of the East Sea cause the pressure gradient forces along the straits and induce most of variations in the strait flows and the mean sea level at the monthly to interannual periods.
机译:1998年3月至2002年4月韩国海峡的电压源性运输揭示了各种时间变化,如亚惯性,月度,季节和年际变化。使用简单的分析正压模型研究了海峡和东海(日本海)平均海平面流量中这些时间变化的驱动机制。东海被简化为一个平底的半封闭盆地,它受到大气压力,两岸风向应力和两岸海平面差异的推动。尽管模型很简单,但它可以解释大多数变化,并有助于我们了解每个时间范围内的主导驱动力。在2-10天的次惯性时期,由于亥姆霍兹共振(大约3天),大气压力主要驱使水流流入或流出东海,并且平均海平面不能均衡地响应。大气压力对输运变化的影响在很长一段时间内变得很弱,因为东海有足够的时间通过海峡水流被排出或充满,因为其平均海平面是等静的。另一方面,东海海峡外海平面调整后的海平面变化会引起海峡两岸的压力梯度力,并导致海峡流量和月平均至年际海平面平均水平的大部分变化。

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