首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Distortion of Near-Surface Seawater Temperature Structure by a Moored-Buoy Hull and Its Effect on Skin Temperature and Heat Flux Estimates
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Distortion of Near-Surface Seawater Temperature Structure by a Moored-Buoy Hull and Its Effect on Skin Temperature and Heat Flux Estimates

机译:系泊浮标船体扭曲近地表海水温度结构及其对表层温度和热通量估算的影响

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摘要

Previous studies have suggested that the accuracy of temperature measurements by surface-moored buoys may be affected by distortions of the near-surface temperature structure by the buoy hull on calm, sunny days. We obtained the first definite observational evidence that the temperature near the hull was not horizontally homogeneous at the same nominal depth. We observed large temperature differences of 1.0 K or more between thermometers at 0.2 m depth. The distortion of the surface temperature field yielded an error in estimates of daytime net surface heat flux up to more than 30 Wm−2.
机译:先前的研究表明,在平静,晴天的情况下,浮标船体对近地表温度结构的扭曲可能会影响表面系泊浮标的温度测量精度。我们获得了第一个明确的观察证据,即在相同的标称深度下,船体附近的温度在水平方向上并不是均匀的。我们观察到深度为0.2 m的温度计之间存在1.0 K或更大的温差。表面温度场的扭曲在白天的净表面热通量估计高达30 Wm -2 时产生了误差。

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