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Chinook salmon and green sturgeon migrate through San Francisco Estuary despite large distortions in the local magnetic field produced by bridges

机译:奇努克鲑鱼和绿st鱼尽管在桥梁产生的局部磁场中发生了很大的变形,但仍在旧金山河口迁移

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摘要

Empirical evidence exists that some marine animals perceive and orient to local distortions in the earth’s main static geomagnetic field. The magnetic fields produced by undersea electric power cables that carry electricity from hydrokinetic energy sources to shore-based power stations may produce similar local distortions in the earth’s main field. Concerns exist that animals migrating along the continental shelves might orient to the magnetic field from the cables, and move either inshore or offshore away from their normal path. We have studied the effect of the Trans Bay Cable (TBC), an 85-km long, high voltage, direct current (DC) transmission line leading underwater from Pittsburg, CA to San Francisco, CA, on fishes migrating through the San Francisco Estuary. These included Chinook salmon smolts (Oncorhynchus tshawytscha) that migrate downstream through the San Francisco Estuary to the Pacific Ocean and adult green sturgeon (Acipenser medirostris), which migrate upstream from the ocean through the estuary to their spawning habitat in the upper Sacramento River and return to the ocean after spawning occurs. Based on a detailed gradiometer survey, we found that the distortions in the earth’s main field produced by bridges across the estuary were much greater than those from the Trans Bay Cable. The former anomalies exceeded the latter by an order of magnitude or more. Significant numbers of tagged Chinook salmon smolts migrated past bridges, which produced strong magnetic anomalies, to the Golden Gate Bridge, where they were recorded by dual arrays of acoustic tag-detecting monitors moored in lines across the mouth of the bay. In addition, adult green sturgeon successfully swam upstream and downstream through the estuary on the way to and from their spawning grounds. Hence, the large anomalies produced by the bridges do not appear to present a strong barrier to the natural seasonal movement patterns of salmonid smolts and adult green sturgeon.
机译:经验证据表明,一些海洋动物感知并定向地球主要静态地磁场中的局部变形。海底电力电缆产生的磁场将电力从水动力能源输送到岸上的电站,这些磁场可能在地球的主磁场中产生类似的局部变形。人们担心,沿着大陆架迁移的动物可能会受到电缆的磁场影响,并可能向远离其正常路径的近海或近海移动。我们研究了跨湾电缆(TBC),这是一条长达85公里的高压直流输电线路,从加利福尼亚州匹兹堡到加利福尼亚州旧金山的水下引流对通过旧金山河口迁移的鱼类的影响。 。其中包括通过旧金山河口向下游向太平洋迁移的奇努克鲑鱼(Oncorhynchus tshawytscha)和成年绿色upstream鱼(Acipenser medirostris),它们从海洋通过河口向上游迁移至萨克拉曼多河上游的产卵地并返回。产卵后进入海洋。根据详细的梯度仪调查,我们发现,跨河口的桥梁在地球主场产生的变形要比跨湾电缆产生的变形大得多。前者异常超出后者一个数量级或更多。大量带有标签的奇努克鲑鱼迁徙经过桥梁,这些桥梁产生了强烈的磁异常,到达金门大桥,在那里,双排声学标签检测监视器将它们记录在海湾口中,并排成一行。此外,成年绿st鱼在产卵场往返途中成功游过河口上游和下游。因此,桥梁产生的大异常似乎没有为鲑鱼和成年绿urge鱼的自然季节性运动模式提供强大的障碍。

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