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The signature of sea spray in the HEXOS turbulent heat flux data

机译:HEXOS湍流热通量数据中海浪的签名

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The role of sea spray in transferring heat and moisture across the air-sea interface has remained elusive. Some studies have reported that sea spray does not affect the turbulent air-sea heat fluxes for 10-m wind speeds up to at least 25 m s~(-1), while others have reported important spray contributions.for wind speeds as low as 12 m s~(-1). One goal of the HEXOS (Humidity Exchange over the Sea) program was to quantify spray's contribution to the turbulent air-sea heat fluxes, but original analysesof the HEXOS flux data found the spray signal to be too small to be reliably identified amid the scatter in the data. We look at the HEXOS data again in the context of the TOGA-COARE bulk flux algorithm and a sophisticated microphysical spray model. This combination of quality data and state-of-the-art modelling reveals a distinct spray signature in virtually all HEXOS turbulent heat flux data collected in winds of 15 m s~(-1) and higher. Spray effects are most evident in the latent heat flux data, where spray contributes roughly 10 percent of the total turbulent flux in winds of 10 m s~(-1) and between 10 and 40 percent in winds of 15-18 m s~(-1). The spray contribution to the total sensible heat flux is also at least 10 percent in winds above 15 m s~(-1). These results lead to a new, unified parameterization for the turbulent air-sea heat fluxes that should be especially useful ill high winds because it acknowledges both the interfacial and spray routes by which the sea exchanges heat and moisturewith the atmosphere.
机译:海浪在通过海气界面传递热量和水分方面的作用仍然难以捉摸。一些研究报告说,在至少25毫秒〜(-1)的风速下,海浪不会影响10 m风速的湍流-海热通量,而其他研究则报告了对于低至12风速的重要喷雾作用。毫秒〜(-1)。 HEXOS(海上湿度交换)计划的目标之一是量化喷雾对湍流海气通量的贡献,但是对HEXOS流量数据的原始分析发现,喷雾信号太小,无法在海浪中零散地可靠识别。数据。我们在TOGA-COARE体积通量算法和复杂的微物理喷雾模型的背景下再次查看HEXOS数据。质量数据和最新模型的结合在15 m s〜(-1)或更高的风中收集的几乎所有HEXOS湍流热通量数据中均显示出独特的喷雾特征。在潜热通量数据中,喷雾效应最为明显,在10 ms〜(-1)的风中,喷雾约占总湍流的10%,在15-18 ms〜(-1的风中,约占10%至40%。 )。在15 m s〜(-1)以上的风中,喷雾对总显热通量的贡献也至少为10%。这些结果导致了新的,统一的湍流-海热通量参数化,这对于强风特别有用,因为它可以识别海洋与大气交换热量和水分的界面和喷雾路径。

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