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Effects of EMF Emissions from Undersea Electric Cables on Coral Reef Fishes

机译:海底电缆的EMF排放对珊瑚礁鱼类的影响

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摘要

The objective of this project was to determine if the electromagnetic field (EMF) emissions from undersea power cables impacted the local and transient marine life, with an emphasis on reef fishes. The work was done at South Florida Ocean Measurement Facility of Naval Surface Warfare Center, Carderock Division, Broward County, Florida. This facility functions as the hub for a range of active undersea detection and data transmission cables. It has multiple active submarine power cables that extend several miles offshore and which can deliver power and enable data transmission to and from a range of acoustic and EMF sensors. The cables lie directly on the seabed, are buried in the sand, or are suspended in the water column. EMF emissions from a selected cable were created during SCUBA fish surveys. During the surveys the transmission of either alternating current (AC) or Direct Current (DC) was randomly intiated by the facility with no transmitted current (OFF) provided a control. The surveys were conducted using standardized transect and stationary point count methods to acquire reef fish abundances prior to and immediately after a change in transmission frequency (the divers were aware of the time of frequency change but not the specific frequencies). The divers were also tasked to note the reaction of the reef fishes to the immediate change in the EMFs emitting from the cable during a power switch. The surveys were conducted on a quarterly basis at three sampling sites offshore on the same cable. These sites were in water depths of approximately 5, 10, and 15 m, respectively and were selected based on their robust reef fish community and are representative of each of the three primary hardbottom coral reef habitats in the local offshore environment: the Inner (Shallow), Middle, and Outer (Deep) reef tracts. A total of 263 surveys were conducted: 132 transect-counts and 131 point-counts over 15 months. There were 24,473 fishes counted during transect-count surveys and with point-counts, 36,115 fishes were counted. With count types and sites combine a total of 151 species representing 35 families were recorded. An analysis of the data primarily did not find statistical differences among power states and any variables. However, this may be a Type II error as there are strong indications of a potential difference of a higher abundance of reef fishes at the sites when the power was off. There are a number of caveats to consider with this finding: the data set needs to be larger in terms of numbers of: counts, sites and eletro-sensitive species to allow for rigorous statistical analysis; also a longer time between frequency changes to allow for slower, but nonetheless important, reactions to differing EMFs might lead to differing conclusions. Obviously, more research is required to confirm the results of this study.
机译:该项目的目的是确定海底电缆产生的电磁场(EMF)排放是否影响了当地和暂时的海洋生物,重点是礁鱼。这项工作是在佛罗里达州布劳沃德县卡德罗克分校海军水面作战中心南佛罗里达海洋测量中心完成的。该设施充当各种活动海底检测和数据传输电缆的集线器。它具有多条有源海底电力电缆,这些电缆在海上延伸了几英里,可提供电力并实现往返一系列声学和EMF传感器的数据传输。电缆直接位于海床上,埋在沙子中,或悬挂在水柱中。选定的电缆产生的EMF排放是在SCUBA鱼品调查期间产生的。在调查期间,设施会随机启动交流电(AC)或直流电(DC)的传输,而没有传输电流(OFF)提供控制。使用标准化的样带和固定点计数方法进行调查,以在传播频率变化之前和之后获取礁鱼的丰度(潜水员知道频率变化的时间,但不知道特定频率)。潜水员还应负责记录礁鱼对电源开关期间电缆发出的EMF的立即变化的反应。这些调查每季度在同一条电缆的近海三个采样点进行。这些地点分别在大约5、10和15 m的水深中,并根据其坚固的礁石鱼类群落进行选择,它们代表了当地近海环境中三种主要的硬底珊瑚礁栖息地:内陆(浅海) ),中层和外层(深层)珊瑚礁。总共进行了263次调查:过去15个月中有132个样点计数和131个点计数。在横断面调查中计数了24,473条鱼,而在点计数中,计数了36,115条鱼。通过计数类型和地点,总共记录了代表35个科的151种。数据分析主要没有发现功率状态和任何变量之间的统计差异。但是,这可能是II型错误,因为有很强的迹象表明,当电源关闭时,这些地点的珊瑚鱼数量可能更高。这一发现有很多注意事项:数据集的数量需要更大:计数,位点和电敏感物种,以便进行严格的统计分析;频率变化之间的间隔时间也较长,以允许较慢但重要的是,对不同EMF的反应可能会得出不同的结论。显然,需要更多的研究来证实这项研究的结果。

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    Jermain Robert F;

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