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首页> 外文期刊>Journal of Marine Science and Engineering >Bubble Clouds in Coastal Waters and Their Role in Air-Water Gas Exchange of CO2
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Bubble Clouds in Coastal Waters and Their Role in Air-Water Gas Exchange of CO2

机译:沿海水域中的气泡云及其在CO 2 的气水交换中的作用

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Bubbles generated by breaking waves can drive significant gas exchange between the ocean and atmosphere, but the role of bubble-mediated gas transfer in estuaries is unknown. Here, backscatter data from 41 acoustic Doppler current profiler stations was analyzed to assess subsurface bubble distributions in nine estuaries along the U.S. East and Gulf Coast. Wind speed, wind direction, and current velocity were the dominant controls on bubble entrainment, but the relative importance of these physical drivers depended on local geomorphology. Bubble entrainment in high-current or shallow, long-fetch estuaries began at wind speeds 5 m s−1. In deep or fetch-limited estuaries, bubble entrainment was less frequent and generally began at higher wind speeds. Data observed during several storms suggests that episodic bubble-driven gas exchange may be an important component of annual CO2 fluxes in large, shallow estuaries but would be less significant in other coastal systems.
机译:破裂波产生的气泡可以推动海洋与大气之间的大量气体交换,但在河口中气泡介导的气体转移的作用尚不清楚。在这里,分析了来自41个声学多普勒电流剖面仪站的反向散射数据,以评估美国东部和墨西哥湾沿岸9个河口的地下气泡分布。风速,风向和流速是气泡夹带的主要控制因素,但这些物理驱动因素的相对重要性取决于局部地貌。大电流或浅长进河口的气泡夹带始于风速<5 m s -1 。在河口较深或取水受限的地区,气泡夹带的频率较低,通常始于较高的风速。在几次风暴中观察到的数据表明,在大而浅的河口中,间歇性气泡驱动的气体交换可能是年度CO 2 通量的重要组成部分,而在其他沿海系统中则不那么重要。

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