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A comparison of sea surface temperatures from microwave remote sensing of the Labrador Sea with in situ measurements and model simulations

机译:拉布拉多海微波遥感海表温度与原位测量和模型模拟的比较

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摘要

As one of the few places in the ocean where winter cooling and mixing creates conditions where water from the surface can penetrate into the deep ocean the Labrador Sea is an area of interest to people studying climate change in the ocean. Persistent cloud cover over this area makes it impossible to use infrared satellite imagery to relate space/time changes in sea surface temperature (SST) to changes in surface currents and air-sea interaction. Using passive microwave SSTs from the Advanced Microwave Scanning Radiometer (AMSR-E), we plot space/time changes in SST in the Labrador Sea and relate these changes to both simultaneous in situ measurements of temperature and numerical model SSTs. A direct comparison between the microwave SSTs, infrared SSTs, and in situ temperatures measured from profiling floats reveals that the microwave SSTs are a good representation of space/time changes in infrared SST and in ocean temperatures down to 10 m below the sea surface. Comparisons between the microwave SSTs and time series of temperatures at depths below 50 m reveal that winter/spring surface cooling makes the SST similar to temperatures at these deeper depths in the convection region of the central Labrador Sea. Detailed comparison of the annual cycle between the microwave SSTs and the model SST and 10 m currents reveals overall good agreement and some interesting differences.
机译:拉布拉多海是海洋中为数不多的冬季降温和融化创造条件的地方之一,冬季表层的水可以渗透到深海,拉布拉多海是人们研究海洋气候变化的兴趣所在。由于该区域持续的云层覆盖,因此无法使用红外卫星图像将海面温度(SST)的时空变化与地表流变化和海-气相互作用相关联。使用来自高级微波扫描辐射仪(AMSR-E)的无源微波SST,我们绘制了拉布拉多海中SST的时空变化图,并将这些变化与同时进行的原位温度测量和数值模型SST相关联。通过对微波SST,红外SST和通过剖面浮标测量的原位温度之间的直接比较,发现微波SST很好地表示了红外SST和海平面以下10 m的海洋温度的时空变化。微波海表温度和温度在50 m以下深度的时间序列之间的比较表明,冬季/春季表面冷却使海表温度与拉布拉多海中部对流区域中这些较深深度处的温度相似。微波SST与模型SST和10 m电流之间的年周期的详细比较显示出总体良好的一致性和一些有趣的差异。

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