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Appendix b pad information request questionnaire - Snohomish ...

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DNR is also sending the following documents –<br />

Austin, S., Wyllie-Echeverria, S. and M.J. Groom. 2004. A comparative analysis of<br />

submarine cable installation in Northern Puget Sound, Washington. J. of Marine Env.<br />

Engg. Vol. 7 pp. 173 – 84.<br />

Kogan, I., Paul, et al. 2003. Environmental Impact of the ATOC/Pioneer Seamount<br />

Submarine Cable. Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road,<br />

Moss Landing, CA.<br />

Addresses cable damage, quantitative differences between species at control and<br />

cable locations.<br />

Please note that DNR would encourage <strong>Snohomish</strong> PUD to work on collecting more<br />

<strong>information</strong> on the impacts of subsea cable installation.<br />

Brown, W. S. and R. P. Trask. 1980. A study of tidal energy dissipation and bottom<br />

stress in an estuary. J. of Physical Oceanography. Vol. 10 pp. 1742-55.<br />

Applies a method for inferring bottom stress and energy dissipation in a well-mixed,<br />

shallow, narrow estuary. Uses Great Bay of Fundy, New Hampshire. Further<br />

references at end of article.<br />

United States Corps of Engineers. 1983. Coastal Engineering Technical Note: Dead<br />

End Channel Flushing in Harbors. CETN-IV-4. U.S. Army Engineers Waterways<br />

Experiment Station, Coastal Engineering Research Center, Vicksburg, Mississippi.<br />

Discusses “dead end flushing”, a phenomenon we think is occurring in Hood Canal.<br />

This report was developed in 1983 long before today’s Hood Canal dissolved oxygen<br />

issues. Significance is to understand the role of tides and wind in flushing channels,<br />

and maintaining circulation.

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