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Design and Implementation of an Underwater Sound Recording Device

机译:水下录音设备的设计与实现

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摘要

To monitor the underwater sound and pressure waves generated by anthropogenic activities such as underwater blasting and pile driving, an autonomous system was designed to record underwater acoustic signals. The underwater sound recording device (USR) allows for connections of two hydrophones or other dynamic pressure sensors, filters high frequency noise out of the collected signals, has a gain that can be independently set for each sensor, and allows for 2 h of data collection. Two versions of the USR were created: a submersible model deployable to a maximum depth of 300 m, and a watertight but not fully submersible model. Tests were performed on the USR in the laboratory using a data acquisition system to send single-frequency sinusoidal voltages directly to each component. These tests verified that the device operates as designed and performs as well as larger commercially available data acquisition systems, which are not suited for field use. On average, the designed gain values differed from the actual measured gain values by about 0.35 dB. A prototype of the device was used in a case study to measure blast pressures while investigating the effect of underwater rock blasting on juvenile Chinook salmon and rainbow trout. In the case study, maximum positive pressure from the blast was found to be significantly correlated with frequency of injury for individual fish. The case study also demonstrated that the device withstood operation in harsh environments, making it a valuable tool for collecting field measurements.
机译:为了监视由人为活动(例如水下爆破和打桩)产生的水下声波和压力波,设计了一个自治系统来记录水下声信号。水下录音设备(USR)允许连接两个水听器或其他动态压力传感器,从收集的信号中滤除高频噪声,具有可以为每个传感器独立设置的增益,并允许2小时的数据收集。 USR的两个版本被创建:可部署到最大深度为300 m的潜水模型,以及不漏水但不完全潜水的模型。使用数据采集系统在实验室的USR上进行了测试,以将单频正弦电压直接发送到每个组件。这些测试验证了该设备能够按设计运行并具有不适合现场使用的更大的商用数据采集系统。平均而言,设计增益值与实际测量的增益值相差约0.35 dB。该设备的原型在案例研究中用于测量爆炸压力,同时调查水下岩石爆炸对幼年的奇努克鲑鱼和虹鳟鱼的影响。在案例研究中,发现爆炸产生的最大正压与单个鱼的伤害频率显着相关。案例研究还表明,该设备在恶劣的环境下仍能承受操作,使其成为收集现场测量值的宝贵工具。

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