Department of Oceanography, Naval Postgraduate School, Monterey, California 93943, USA.
J Acoust Soc Am. 2010 Sep;128(3):EL137-43. doi: 10.1121/1.3431091.
Ocean acidification has been observed since the beginning of the industrial era and is expected to further reduce ocean pH in the future. A significant increase in ocean noise has been suggested based upon the percentage change in acoustic absorption coefficient at low frequencies. Presented here is an analysis using transmission loss models of all relevant loss mechanisms for three environments experiencing a significant near-surface pH reduction of 8.1-7.4. Results show no observable change in the shallow water and surface duct environments, and a statistically insignificant change of less than 0.5 dB for all frequencies in the deep water environment.
自工业时代开始,海洋酸化便一直存在,并预计未来海洋 pH 值将进一步降低。基于低频声吸收系数的百分比变化,有人提出海洋噪声显著增加。本文利用传输损耗模型,对三种经历了显著近表面 pH 值降低(8.1-7.4)的环境中的所有相关损耗机制进行了分析。结果表明,浅水和表面波导环境中没有观察到可观测的变化,深海环境中所有频率的变化都小于 0.5 dB,且不具有统计学意义。