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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Time series of temperature in Fram Strait determined from the 2008–2009 DAMOCLES acoustic tomography measurements and an ocean model
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Time series of temperature in Fram Strait determined from the 2008–2009 DAMOCLES acoustic tomography measurements and an ocean model

机译:根据2008–2009年DAMOCLES声学层析成像测量结果和海洋模型确定的弗拉姆海峡的温度时间序列

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A pilot acoustic tomography program in Fram Strait during 2008–2009 measured a year-long record of acoustic travel times along a 130 km range acoustic path crossing the West Spitsbergen Current. Individual ray arrivals were not observed. Rather, the arrival patterns consisted of a single, stable, broad arrival pulse of about 100 ms duration. Travel time variations of ±0.15 s recorded the vigorous mesoscale environment of the region and the seasonal cycle. To estimate ocean temperature from the tomography data an inverse scheme employed a high-resolution ocean model for Fram Strait as the reference ocean. The information from the tomographic measurements is primarily average temperature. Estimated temperatures, averaged over 0–1000 m depth and over range, had a mean of 1.11°C and variations of ±0.33°C; the uncertainty of the tomography estimates was about 60m°C. Agreement with an alternate inverse approach based on EOFs and a Markov Chain Monte Carlo inversion scheme relying on a matched-peak approach was excellent, indicating a robust estimate for ocean temperature. The inverse estimates for average temperature agreed with the equivalent estimates from hydrographic sections obtained along the acoustic path at the start and end of the program. Among other deficiencies, the ocean model greatly underestimated the intensity of the mesoscale fluctuations and exhibited a warm bias of about 0.38°C in section-averaged temperature. Tomographic measurements in Fram Strait offer unique large-scale temperature constraints for ocean models through data assimilation. It is anticipated that these constraints will lead to more accurate estimates of the circulation and transports in Fram Strait.
机译:在2008-2009年间,弗拉姆海峡的声波层析成像试验计划测量了沿西Spitsbergen Current穿过130公里范围的声波路径长达一年的声波传播时间记录。没有观察到单独的射线到达。而是,到达模式由大约100毫秒持续时间的单个稳定的宽到达脉冲组成。 ±0.15 s的传播时间变化记录了该地区剧烈的中尺度环境和季节周期。为了从层析成像数据估计海洋温度,一种逆方案采用了Fram海峡的高分辨率海洋模型作为参考海洋。层析成像测量的信息主要是平均温度。估计温度在0-1000 m深度和整个范围内平均,平均温度为1.11°C,变化为±0.33°C;层析成像估计的不确定性约为60m°C。与基于EOF的替代逆方法和基于匹配峰方法的马尔可夫链蒙特卡罗反演方案的协议非常出色,表明对海洋温度的估算很可靠。平均温度的逆估计与程序开始和结束时沿声波路径获得的水文断面的等效估计一致。除其他缺陷外,海洋模型极大地低估了中尺度波动的强度,在断面平均温度下表现出约0.38°C的温暖偏差。通过数据同化,弗拉姆海峡的层析成像测量为海洋模型提供了独特的大规模温度约束。可以预见,这些限制条件将导致对弗拉姆海峡的环流和运输的更准确估计。

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