Effect Of Vessel Size On Shoreline And Shore Structure Damage Along The Great Lakes Connecting Channels PDF Download

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Effect of Vessel Size on Shoreline and Shore Structure Damage Along the Great Lakes Connecting Channels

Effect of Vessel Size on Shoreline and Shore Structure Damage Along the Great Lakes Connecting Channels
Author: James L. Wuebben
Publisher:
Total Pages: 72
Release: 1983
Genre: Great Lakes (North America)
ISBN:

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In conjunction with the Great Lakes connecting channels and harbors study, this report examines the potential damage to the shore and shore structures due to an increase in vessel size. The areas considered in this report are the United States shorelines along the St. Marys, St. Clair and Detroit rivers. The potential for shoreline or shore structure damage due to an increase in vessel size was reviewed on both a conceptual and site-specific basis. Ship-induced waves were ruled out as a damage mechanism since the analysis showed that the contemplated increases in vessel size would not significantly affect wave heights in the nearshore zone. Propeller wash was discounted for similar reasons. Ship-induced drawdown was determined to be the major potential damage mechanism. While larger ships potentially produce more damage, this potential is significant only in severely restricted channel sections for the size increase considered here. By far the most significant factor in ship-related damage potential is vessel speed. In almost all areas, the effect of an increase in vessel size could be eliminated by a reduction in vessel speed of 1-2 mph. (Author). In conjunction with the Great Lakes connecting channels and harbors study, this report examines the potential damage to the shore and shore structures due to an increase in vessel size. The areas considered in this report are the United States shorelines along the St. Marys, St. Clair and Detroit rivers. The potential for shoreline or shore structure damage due to an increase in vessel size was reviewed on both a conceptual and site-specific basis. Ship-induced waves were ruled out as a damage mechanism since the analysis showed that the contemplated increases in vessel size would not significantly affect wave heights in the nearshore zone. Propeller wash was discounted for similar reasons. Ship-induced drawdown was determined to be the major potential damage mechanism. While larger ships potentially produce more damage, this potential is significant only in severely restricted channel sections for the size increase considered here. By far the most significant factor in ship-related damage potential is vessel speed. In almost all areas, the effect of an increase in vessel size could be eliminated by a reduction in vessel speed of 1-2 mph. (Author).


Effect of Vessel Size on Shoreline and Shore Structure Damage Along the Great Lakes Connecting Channels

Effect of Vessel Size on Shoreline and Shore Structure Damage Along the Great Lakes Connecting Channels
Author: James L. Wuebben
Publisher:
Total Pages: 69
Release: 1983
Genre: Great Lakes (North America)
ISBN:

Download Effect of Vessel Size on Shoreline and Shore Structure Damage Along the Great Lakes Connecting Channels Book in PDF, ePub and Kindle

In conjunction with the Great Lakes connecting channels and harbors study, this report examines the potential damage to the shore and shore structures due to an increase in vessel size. The areas considered in this report are the United States shorelines along the St. Marys, St. Clair and Detroit rivers. The potential for shoreline or shore structure damage due to an increase in vessel size was reviewed on both a conceptual and site-specific basis. Ship-induced waves were ruled out as a damage mechanism since the analysis showed that the contemplated increases in vessel size would not significantly affect wave heights in the nearshore zone. Propeller wash was discounted for similar reasons. Ship-induced drawdown was determined to be the major potential damage mechanism. While larger ships potentially produce more damage, this potential is significant only in severely restricted channel sections for the size increase considered here. By far the most significant factor in ship-related damage potential is vessel speed. In almost all areas, the effect of an increase in vessel size could be eliminated by a reduction in vessel speed of 1-2 mph. (Author). In conjunction with the Great Lakes connecting channels and harbors study, this report examines the potential damage to the shore and shore structures due to an increase in vessel size. The areas considered in this report are the United States shorelines along the St. Marys, St. Clair and Detroit rivers. The potential for shoreline or shore structure damage due to an increase in vessel size was reviewed on both a conceptual and site-specific basis. Ship-induced waves were ruled out as a damage mechanism since the analysis showed that the contemplated increases in vessel size would not significantly affect wave heights in the nearshore zone. Propeller wash was discounted for similar reasons. Ship-induced drawdown was determined to be the major potential damage mechanism. While larger ships potentially produce more damage, this potential is significant only in severely restricted channel sections for the size increase considered here. By far the most significant factor in ship-related damage potential is vessel speed. In almost all areas, the effect of an increase in vessel size could be eliminated by a reduction in vessel speed of 1-2 mph. (Author).


Winter Navigation on the Great Lakes

Winter Navigation on the Great Lakes
Author: James L. Wuebben
Publisher: DIANE Publishing
Total Pages: 59
Release: 1995
Genre: Great Lakes (North America)
ISBN: 1428914749

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Final Environmental Impact Statement

Final Environmental Impact Statement
Author: United States. Army. Corps of Engineers. Detroit District
Publisher:
Total Pages: 836
Release: 1988
Genre: Harbors
ISBN:

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Summary of Preliminary Feasibility Studies for Great Lakes Connecting Channels and Harbors Study

Summary of Preliminary Feasibility Studies for Great Lakes Connecting Channels and Harbors Study
Author:
Publisher:
Total Pages: 80
Release: 1982
Genre: Channels (Hydraulic engineering)
ISBN:

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"The study is to determine the feasibility of further commercial navigation improvements to the connecting channels, locks, and harbors on the upper four Great Lakes, and the extent of any federal interest. Preliminary feasibility studies have been completed. In response to the commercial navigation proglems, needs, and opportunities, several alternative structural plans were evaluated... A non-structural plan... and a No action plan were also evaluated."--Syllabus.