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Comparative review of low-frequency acoustic properties of Western Mediterranean and Gulf of Mexico seagrass species

机译:地中海西部和墨西哥湾海草物种低频声学特性的比较综述

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Field and laboratory experiments since 1995 have been directed at the development of a model for sound propagation through seagrass meadows. Seagrass blades are a complex structure of tissue and internal gas channels, which can produce oxygen bubbles in the water column during photosynthesis. Simple mixture theory models have proven ineffective at predicting the acoustic behaviour observed during field experiments. Since 2013, laboratory investigations have been directed at determining the tissue acoustic properties of main Mediterranean species Posidonia oceanica and Cymodocea nodosa using ultrasound and then low-frequency sound. This review focuses on the determination of the low-frequency (1-5 kHz) effective sound speed of a mixture of seagrass leaf blades and degassed artificial seawater placed in an acoustic resonator. All measurements from MEDGRASS 15 and 16 experiments are compared to previous ones of three Texas Gulf coast seagrass species as a function of added wet biomass. The ensemble of results shows correlation of this speed with species, and average size, physical stiffness, and epiphyte coverage of the leaf blades.
机译:自1995年以来的现场和实验室实验曾经通过海草草甸进行声音传播模型的开发。海草叶片是组织和内部气体通道的复杂结构,可以在光合作用期间在水柱中产生氧气气泡。简单的混合理论模型在预测现场实验期间观察到的声学行为时已经证明是无效的。自2013年以来,实验室调查旨在使用超声测定主要地中海物种Posidonia Oceanica和Cymodocea Nodosa的组织声学特性,然后是低频声音。本综述重点研究了海草叶片混合物的低频(1-5 kHz)有效声速,并脱气地放置在声学谐振器中的人造海水。将来自MEGGRASS 15和16实验的所有测量与以前的三个德克萨斯州海湾海岸海草物种中的所有测量值相比,作为添加的湿生物质的功能。结果的集合表明,这种速度与物种的相关性,以及平均尺寸,物理刚度和叶片的外部覆盖。

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