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Sound pressure levels measurements and transmission loss models for explosions in coastal waters

机译:沿海水域爆炸的声压级测量和传输损耗模型

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Sound propagation in shallow waters can have great variability due to many different characteristics of these environments and its described by numerous interactions with both the sea surface and sea floor which influence the propagation of acoustic energy through reflection, scattering and absorption. Here we used the basic spreading loss acoustic models and a semi empirical shallow water model known as Colossus for transmission loss predictions and compared with in situ measurements of explosions originated from underwater rock blasting activities performed in shallow waters of a coastal bay area in Brazil. During explosion events measurements were taken from stationary boats using custom calibrated hydrophones and record systems in three different sites of known distance. Transmission loss observed was compared with models considering range, frequency and additional parameters input for the semi empirical model. Explosions were characterized as broadband impulsive sounds with energy content concentrated in low frequency bands of 63 to 500 Hz. Sound pressure levels in these bands often exceeded 200 dB re 1pPa around 200???300 meters distance from the source. A single small charge with no clipped signal was used to measure transmission loss and comparison with models showed that all models overestimate the transmission loss in the area. Cylindrical transmission loss had the best prediction from in situ measurements but errors up to 20 dB were observed. Results, and variables that can affect them, are discussed in light of shallow water propagation modeling and experimental data.
机译:由于这些环境的许多不同特性,在浅水中的声音传播可能会具有很大的可变性,并且通过与海面和海床的大量相互作用来描述,这些相互作用通过反射,散射和吸收影响声能的传播。在这里,我们使用了基本的扩展损耗声学模型和一个称为Colossus的半经验浅水模型来进行传输损耗预测,并与在巴西沿海海湾地区浅水区进行的水下爆破活动引起的爆炸的现场测量结果进行了比较。在爆炸事件中,使用定制的校准水听器从固定船上进行测量,并在已知距离的三个不同地点记录系统。将观察到的传输损耗与考虑范围,频率和半经验模型输入的其他参数的模型进行比较。爆炸的特征是宽带冲动声,其能量含量集中在63至500 Hz的低频段。这些频带中的声压级通常在距声源200到300米的距离处超过200 dB re 1pPa。使用没有削波信号的单个小电荷来测量传输损耗,与模型的比较表明,所有模型都高估了该区域的传输损耗。圆柱传输损耗从现场测量中可以得到最好的预测,但观察到的误差高达20 dB。根据浅水传播模型和实验数据讨论了结果以及可能影响它们的变量。

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