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USCGC Polar Sea (WAGB 11) - Wikipedia, the free encyclopedia

USCGC Polar Sea (WAGB 11)

From Wikipedia, the free encyclopedia

Career
Laid down:
Launched:
Commissioned: 1978
Decommissioned: still active
Fate: still active
General Characteristics
Displacement: 13,194 tons
Length: 399 ft (122 m)
Beam: 83.5 ft (25.5 m)
Propulsion: diesel electric or gas turbine
Speed: 15 knots (28 km/h)
Range: 28,275 miles
Icebreaking capacity: 6 ft (2 m) @ 3 knots (6 km/h) continuous, 21 ft (6 m) by Backing and Ramming
Complement: 141
Aircraft: 2 HH-65A Dolphin helicopters
Motto: Semper Paratus
(Always Ready)

The USCGC Polar Sea (WAGB 11) is a United States Coast Guard Heavy Icebreaker. Commissioned in 1978, the ship was built by Lockheed Shipbuilding and Construction Company of Seattle along with her sister ship, the USCGC Polar Star (WAGB 10).

Homeported in Seattle, Washington Polar Sea and Polar Star operate under the control of Pacific Area and coordinate their operations through the Ice Operations Section of the US Coast Guard.

Polar Sea is an outstanding Polar icebreaker with exceptional hull design, power, strength and weight. The design, which was the result of three years of research and testing, incorporates a number of innovative features that affect nearly every aspect of operations. Equipment on board is highly sophisticated. Polar Sea uses four different methods of electronic navigation to overcome the difficulties of high-latitude operations, and a computerized propulsion control system to effectively manage six diesel-powered propulsion generators, three diesel-powered ship's service generators, three propulsion gas turbines, and other equipment vital to the smooth operation of the ship. The extensive use of automation and low maintenance materials have greatly reduced staffing requirements.

Polar Sea's three shafts are turned by either a diesel-electric or gas turbine power plant. Each shaft is connected to a 16-foot(4.9-meter) diameter, four-bladed, controllable-pitch propeller. The diesel-electric plant can produce 18,000 shaft horsepower (13,425 kilowatts) and the gas turbine plant a total of 75,000 shaft horsepower (56 MW).

Polar Sea has sufficient hull strength to absorb the high-powered ice ramming common to her operations. The shell plating and associated internal support structure are fabricated from steel that has especially good low-temperature strength. The portion of the hull designed to ram ice is 1¾ inches thick (44 mm) in the bow and stern sections, and 1¼ inches thick (32 mm) amidships. The hull strength is produced almost entirely from the massive internal support structure. Polar Sea's hull shape is designed to maximize icebreaking by efficiently combining the forces of the ship's forward motion, the downward pull of gravity on the bow, and the upward push of the inherent buoyancy of the stern. The curved bow allows Polar Sea to ride up on the ice; then the bow is levered through the ice like a giant sledgehammer.

With such a sturdy hull and high power to back it up, the 13,000-ton (13,200-metric ton) Polar Sea is able to ram her way through ice up to 21 feet (6.4 m) thick and steam continuously through 6 feet (1.8 m) of ice at 3 knots (6 km/h).

USCGC Polar Sea (WAGB 11) alongside her sister ship USCGC Polar Star (WAGB 10) near McMurdo Station, Antarctica.
Enlarge
USCGC Polar Sea (WAGB 11) alongside her sister ship USCGC Polar Star (WAGB 10) near McMurdo Station, Antarctica.

Polar Sea has other unique engineering features designed to aid in icebreaking. An installed heeling system can rock the ship to prevent getting stuck in the ice. The system consists of three pairs of connected tanks on opposite sides of the ship. Pumps transfer a tank's contents of 35,000 US gallons (132 m³) to an opposing tank in 50 seconds and generate 24,000 foot·tons force (65 MN·m) of torque on the ship. That goes a long way in rocking Polar Sea loose from any tight spots.

Duty on an icebreaker is long and strenuous, especially when it involves being away from homeport for up to eight months out of the year. Careful consideration has been given to meet the needs of Polar Sea's crew of 15 officers and 126 enlisted. The ship has four sizable lounges, a library, a gymnasium, and a small ship's store. It also has its own U.S. Post Office, satellite pay telephones, amateur radio equipment, photo lab, and movie library. Bright colors and modern decor differ sharply from traditional military shipboard drabness.

Polar Sea carries two HH-65 Dolphin helicopters during major deployments. They support scientific parties, do ice reconnaissance, cargo transfer, and search and rescue as required. The Aviation Detachment comes from the Polar Operations Division at Coast Guard Aviation Training Center, Mobile, Alabama.

Polar Sea has a variety of missions while operating in polar regions. During Antarctic deployments, the primary missions include breaking a channel through the sea ice to resupply the McMurdo Research Station in the Ross Sea. Resupply ships use the channel to bring food, fuel, and other goods to make it through another winter. In addition, to these duties, Polar Sea also serves as a scientific research platform with five laboratories and accommodations for up to 20 scientists. The "J"-shaped cranes and work areas near the stern and port side of ship give scientists the capability to do at-sea studies in the fields of geology, vulcanology, oceanography, sea-ice physics and other disciplines.

In nautical history, Polar Sea holds several notable records. It is one of only three ships that has ever completely transited the Arctic Ocean and circumnavigated North America. On August 22nd 1994, Polar Sea was one of first two North American surface vessels to reached the North Pole.

Operations in the remote, hazardous and unforgiving polar regions make it necessary for the crew of Polar Sea to be highly self sufficient. The crew consists of personnel trained in navigation, engineering, welding, machinery repair, electronics, boat handling, firefighting, damage control, diving, medicine, and nearly every other kind of special skill that could possibly be needed.

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