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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Flow of abyssal water into Wake Island Passage: Properties and transports from hydrographic surveys
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Flow of abyssal water into Wake Island Passage: Properties and transports from hydrographic surveys

机译:深海水流入维克岛通道:水文勘测的性质和运输

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Water mass characteristics and volume transports of abyssal water flowing northward into Wake Island Passage in the North Pacific Ocean were examined by carrying out high-quality hydrographic surveys in May 2003, October 2004, and December 2005 along with mooring observations from May 2003 to December 2005. Close linear relationships between potential temperature ( ) and salinity, dissolved oxygen, and silicate were seen below ≈ 1.1°C (≈4000 m). The relationships above ≈ 1.1°C were scattered and were separated into relatively salty, oxygen-rich, silicate-poor water to the south, and water with the opposite properties to the north. The results suggested that there was a boundary between water masses at ≈ 1.1°C in the deep passage. In addition to the three hydrographic sections, two hydrographic sections previously surveyed in the deep passage in 1975 and 1999 were reexamined for transport estimates. Geostrophic calculations relative to the = 1.1°C surface indicated northward transports of the abyssal water from 0.5 to 2.2 Sv (1 Sv = 106 m3 s?1) below this surface. When 1-year mean estimated velocities at = 1.1°C surface were used for reference, mean transport from the five estimates increased from 1.4 to about 4 Sv. The temperature of abyssal water colder than 1.1°C was found to have increased by an average of 0.012°C between 1975 and 2005. This warming is greater than double the standard deviation from the temporal mean temperature profile obtained from mooring observations.
机译:通过在2003年5月,2004年10月和2005年12月进行了高质量的水文测量以及2003年5月至2005年12月的系泊观测,研究了北向北流入北太平洋维克岛通道的深海水的水质特征和体积传输。在≈1.1°C(≈4000m)以下,观察到了潜在温度()与盐度,溶解氧和硅酸盐之间的紧密线性关系。 ≈1.1°C以上的关系被分散,分成相对咸的,富氧的,硅酸盐贫乏的水(南部)和与北部具有相反性质的水。结果表明,在深通道中,≈1.1°C的水团之间存在边界。除了三个水文断面之外,还对先前在1975年和1999年深通道中进行调查的两个水文断面进行了重新评估,以进行运输估算。相对于= 1.1°C地表的地转计算表明,深海水向北移动的深度为0.5到2.2 Sv(1 Sv = 106 m3 s?1)。当使用在= 1.1°C表面的1年平均估算速度作为参考时,来自5个估算值的平均迁移率从1.4增加到约4 Sv。发现在1975年至2005年之间,低于1.1°C的深海水的温度平均升高了0.012°C。这种变暖比从系泊观测获得的时间平均温度曲线的标准偏差大两倍以上。

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