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清洁和污损网板的阻力——污损的测量与参数化

Drag of Clean and Fouled Net Panels--Measurements and Parameterization of Fouling.

作者信息

Gansel Lars Christian, Plew David R, Endresen Per Christian, Olsen Anna Ivanova, Misimi Ekrem, Guenther Jana, Jensen Østen

机构信息

Norwegian University of Science and Technology, Department of Marine Technology, Otto Nielsens vei 10, Trondheim, Norway; SINTEF Fisheries and Aquaculture, Department of Aquaculture Technology, Brattørkaia 17C, Trondheim, Norway.

NIWA, Riccarton, Christchurch, New Zealand.

出版信息

PLoS One. 2015 Jul 7;10(7):e0131051. doi: 10.1371/journal.pone.0131051. eCollection 2015.

Abstract

Biofouling is a serious problem in marine aquaculture and it has a number of negative impacts including increased forces on aquaculture structures and reduced water exchange across nets. This in turn affects the behavior of fish cages in waves and currents and has an impact on the water volume and quality inside net pens. Even though these negative effects are acknowledged by the research community and governmental institutions, there is limited knowledge about fouling related effects on the flow past nets, and more detailed investigations distinguishing between different fouling types have been called for. This study evaluates the effect of hydroids, an important fouling organism in Norwegian aquaculture, on the forces acting on net panels. Drag forces on clean and fouled nets were measured in a flume tank, and net solidity including effect of fouling were determined using image analysis. The relationship between net solidity and drag was assessed, and it was found that a solidity increase due to hydroids caused less additional drag than a similar increase caused by change in clean net parameters. For solidities tested in this study, the difference in drag force increase could be as high as 43% between fouled and clean nets with same solidity. The relationship between solidity and drag force is well described by exponential functions for clean as well as for fouled nets. A method is proposed to parameterize the effect of fouling in terms of an increase in net solidity. This allows existing numerical methods developed for clean nets to be used to model the effects of biofouling on nets. Measurements with other types of fouling can be added to build a database on effects of the accumulation of different fouling organisms on aquaculture nets.

摘要

生物污损是海水养殖中的一个严重问题,它有许多负面影响,包括增加水产养殖结构上的受力以及减少网内外的水交换。这进而会影响鱼笼在波浪和水流中的行为,并对网箱内的水量和水质产生影响。尽管这些负面影响已得到研究界和政府机构的认可,但关于污损对网周围水流影响的了解仍然有限,因此需要进行更详细的调查以区分不同的污损类型。本研究评估了水螅(挪威水产养殖中一种重要的污损生物)对作用在网板上的力的影响。在水槽中测量了清洁网和污损网上的阻力,并使用图像分析确定了包括污损影响在内的网目开度。评估了网目开度与阻力之间的关系,结果发现,水螅导致的网目开度增加所引起的额外阻力,比清洁网参数变化导致的类似增加所引起的额外阻力要小。对于本研究中测试的网目开度,相同网目开度的污损网和清洁网之间的阻力增加差异可能高达43%。清洁网和污损网的网目开度与阻力之间的关系都可以用指数函数很好地描述。提出了一种根据网目开度增加来对污损影响进行参数化的方法。这使得为清洁网开发的现有数值方法可用于模拟生物污损对网的影响。可以添加其他类型污损的测量数据,以建立一个关于不同污损生物在水产养殖网上积累影响的数据库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7393/4495041/0c00273fe4a9/pone.0131051.g001.jpg

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