Effects on Freshwater Organisms of Magnetic Fields Associated with Hydrokinetic Turbines

Влияние магнитных полей, связанных с гидрокинетическими турбинами, на пресноводные организмы
G.F. Cada, Mark S. Bevelhimer, Kristina Riemer, Julie W. Turner
2011-07-01

direct current cableselectromagnetic fieldsfreshwater organismshydrokinetic turbinesmagnetic fields
Underwater cables will be used to transmit electricity between turbines in an array (interturbine cables), between the array and a submerged step-up transformer (if part of the design), and from the transformer or array to shore. All types of electrical transmitting cables (as well as the generator itself) will emit EMF into the surrounding water. The electric current will induce magnetic fields in the immediate vicinity, which may affect the behavior or viability of animals. Because direct electrical field emissions can be prevented by shielding and armoring, we focused our studies on the magnetic fields that are unavoidably induced by electric current moving through a generator or transmission cable. These initial experiments were carried out to evaluate whether a static magnetic field, such as would be produced by a direct current (DC) transmitting cable, would affect the behavior of common freshwater fish and invertebrates.
1
Hydrokinetic turbine generators and underwater transmission cables inevitably emit magnetic fields into surrounding freshwater through electric current.
2
Initial experiments evaluated whether static magnetic fields affect the behavior or viability of common freshwater fish and invertebrates.
3
Magnetic fields generated near turbines and cables may influence aquatic-animal behavior or survival, motivating assessment of potential ecological effects.
4
The study focuses on static magnetic fields associated with direct-current transmission cables because electric-field emissions can be mitigated through shielding and armoring.

Common freshwater fish and invertebrates exposed to static magnetic fields generated by hydrokinetic turbine generators or DC transmission cables

Behavioral and viability effects of static magnetic fields induced by electrical current

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Publication Date
2011-07-01
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Authors
G.F. Cada
Mark S. Bevelhimer
Kristina Riemer
Julie W. Turner
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