首页> 外文期刊>Aquacultural Engineering: An International Journal >Minimizing noise in fiberglass aquaculture tanks: noise reduction potential of various retrofits
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Minimizing noise in fiberglass aquaculture tanks: noise reduction potential of various retrofits

机译:尽量减少玻璃纤维水产养殖箱中的噪声:各种改造的降噪潜力

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Equipment used in intensive aquaculture systems, such as pumps and blowers can produce underwater sound levels and frequencies within the range of fish hearing. The impacts of underwater noise on fish are not well known, but limited research suggests that subjecting fish to noise could result in impairment of the auditory system, reduced growth rates, and increased stress. Consequently, reducing sound in fish tanks could result in advantages for cultured species and increased productivity for the aquaculture industry. The objective of this study was to evaluate the noise reduction potential of various retrofits to fiberglass fish culture tanks. The following structural changes were applied to tanks to reduce underwater noise: (1) inlet piping was suspended to avoid contact with the tank, (2) effluent piping was disconnected from a common drain line, (3) effluent piping was insulated beneath tanks, and (4) tanks were elevated on cement blocks and seated on insulated padding. Four combinations of the aforementioned structural changes were evaluated in duplicate and two tanks were left unchanged as controls. Control tanks had sound levels of 120.6 dB re 1 micro Pa. Each retrofit contributed to a reduction of underwater sound. As structural changes were combined, a cumulative reduction in sound level was observed. Tanks designed with a combination of retrofits had sound levels of 108.6 dB re 1 micro Pa, a four-fold reduction in sound pressure level. Sound frequency spectra indicated that the greatest sound reductions occurred between 2 and 100 Hz and demonstrated that nearby pumps and blowers created tonal frequencies that were transmitted into the tanks. The tank modifications used during this study were simple and inexpensive and could be applied to existing systems or considered when designing aquaculture facilities..
机译:在集约化水产养殖系统中使用的设备,例如泵和鼓风机,可以产生鱼听觉范围内的水下声级和频率。水下噪声对鱼类的影响尚不清楚,但是有限的研究表明,使鱼类受到噪声影响可能会导致听觉系统受损,生长速度降低和压力增加。因此,减少鱼缸中的声音可以为养殖物种带来优势,并为水产养殖业提高生产率。这项研究的目的是评估玻璃钢鱼养殖池各种改造的降噪潜力。为降低水箱噪音,对水箱进行了以下结构更改:(1)悬挂进水管道以避免与水箱接触;(2)污水管道与公共排水管线断开连接;(3)污水管道在水箱下方绝缘; (4)将水箱放在水泥块上,放在隔热垫上。一式两份评估上述结构变化的四种组合,并将两个储罐保持不变作为对照。控制水箱的声级为120.6 dB re 1 micro Pa。每次改装均有助于降低水下声。结合结构变化,可以观察到声级的累积降低。结合改造设计的储罐的声级为108.6 dB re 1 micro Pa,声压级降低了四倍。声频频谱表明,最大的降噪发生在2至100 Hz之间,并表明附近的泵和鼓风机产生了音调频率,这些音调被传输到了储罐中。在这项研究中使用的水箱改造简单,便宜,可以应用于现有系统,也可以在设计水产养殖设施时考虑。

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