Nimitz class aircraft carrier


USS Nimitz (CVN-68)
Class overview
Name: Nimitz class aircraft carrier
Builders: Newport News Shipbuilding Company
Operators:  United States Navy
Preceded by: Kitty Hawk-class aircraft carrier and
USS Enterprise
Succeeded by: Gerald R. Ford-class aircraft carrier
In commission: 3 May 1975
Planned: 10
Completed: 10
Active: USS Nimitz (CVN-68)
USS Dwight D. Eisenhower (CVN-69)
USS Carl Vinson (CVN-70)
USS Theodore Roosevelt (CVN-71)
USS Abraham Lincoln (CVN-72)
USS George Washington (CVN-73)
USS John C. Stennis (CVN-74)
USS Harry S. Truman (CVN-75)
USS Ronald Reagan (CVN-76)
USS George H.W. Bush (CVN-77)
General characteristics
Type: Aircraft carrier
Displacement: 100,000 to 104,600 long tons (100,000–106,300 t)[1]
Length: Overall: 1,092 feet (332.8 m)
Waterline: 1,040 feet (317.0 m)
Beam: Overall: 252 ft (76.8 m)
Waterline: 134 ft (40.8 m)
Draft: Maximum navigational: 37 ft (11.3 m)
Limit: 41 ft (12.5 m)
Propulsion: 2 × Westinghouse A4W nuclear reactors
4 × steam turbines
4 × shafts
260,000 shp (194 MW)
Speed: 30+ knots (56+ km/h; 35+ mph)
Range: Unlimited distance; 20-25 years
Complement: Ship's company: 3,200
Air wing: 2,480
Sensors and
processing systems:
AN/SPS-48E 3-D air search radar
AN/SPS-49(V)5 2-D air search radar
AN/SPQ-9B target acquisition radar
AN/SPN-46 air traffic control radars
AN/SPN-43C air traffic control radar
AN/SPN-41 landing aid radars
4 × Mk 91 NSSM guidance systems
4 × Mk 95 radars
Electronic warfare
and decoys:
SLQ-32A(V)4 Countermeasures suite
SLQ-25A Nixie torpedo countermeasures
Armament:
Armor: 2.5 in (64 mm) Kevlar over vital spaces[2]
Aircraft carried: 85–90 fixed wing and helicopters[3]

The Nimitz-class supercarriers are a class of ten nuclear-powered aircraft carriers in service with the United States Navy. With an overall length of 1,092 ft (333 m) and full-load displacements of over 100,000 long tons,[1] they are the largest capital ships in the world. Instead of the gas turbines or diesel-electric systems used for propulsion on many modern warships, the carriers use two A4W pressurized water reactors which drive four propeller shafts and can produce a maximum speed of over 30 knots (56 km/h) and maximum power of around 260,000 shp (190 MW). As a result of the use of nuclear power, the ships are capable of operating for over 20 years without refueling and are predicted to have a service life of over 50 years. They are categorized as nuclear-powered aircraft carriers and are numbered with consecutive hull numbers between CVN-68 and CVN-77.[Note 1]

All ten carriers were constructed by Newport News Shipbuilding Company in Virginia. USS Nimitz, the lead ship of the class, was commissioned on 3 May 1975, and USS George H. W. Bush, the tenth and last of the class, was commissioned on 10 January 2009. Since the 1970s, Nimitz-class carriers have participated in many conflicts and operations across the world, including Operation Eagle Claw in Iran, the Gulf War, and more recently in Iraq and Afghanistan.

The angled flight decks of the carriers use a CATOBAR arrangement to operate aircraft, with steam catapults and arrestor wires for launch and recovery. As well as speeding up flight deck operations, this allows for a much wider variety of aircraft than with the STOVL arrangement used on smaller carriers. An embarked carrier air wing consisting of up to around 90 aircraft is normally deployed on board. The air wings' strike fighters are primarily F/A-18E/F Super Hornets and F/A-18C Hornets, after the retirement of the F-14 Tomcat. In addition to their aircraft, the vessels carry short-range defensive weaponry for anti-aircraft warfare and missile defense.

Contents

Description

The Nimitz class carriers have an overall length of 1,092 ft (333 m) and a full-load displacement of about 100,000–104,000 long tons (102,000–106,000 metric tons).[4] They have a beam at the waterline of 135 ft (41 m), and the maximum width of their flight decks is 251 ft 10 in to 257 ft 3 in (77.76 m to 78.41 m) (depending on the variant). The ships' companies can number up to 3,200, not including an air wing of 2,480.[5]

Design

The Nimitz-class aircraft carriers were ordered to supplement the aircraft carriers of the Kitty Hawk class and Enterprise class, maintaining the strength and capability of the U.S. Navy after the older carriers were decommissioned.[6] The ships were designed to be improvements on previous U.S. aircraft carriers, in particular the Enterprise and Forrestal-class supercarriers, although the arrangement of the ships is relatively similar to that of the Kitty Hawk class.[7] Among other design improvements, the two reactors on Nimitz class carriers take up less space than the eight reactors used on Enterprise. Along with a more generally improved design, this means that Nimitz-class carriers can carry 90% more aviation fuel and 50% more ordnance when compared to the Forrestal class.

The U.S. Navy has stated that the carriers could withstand three times the damage sustained by the Essex class inflicted by Japanese air attacks during World War II.[3] The hangars on the ships are divided into three fire bays by thick steel doors that are designed to restrict the spread of fire. This addition has been present on U.S. aircraft carriers since World War II, after the fires caused by Kamikaze attacks.[8]

The first ships were designed around the time of the Vietnam War, and certain aspects of the design were influenced by operations there. To a certain extent, the carrier operations in Vietnam demonstrated the need for increased capabilities of aircraft carriers over their survivability, as they were used to send sorties into the war and were therefore less subject to attack. As a result of this experience, Nimitz carriers were designed with larger stores of aviation fuel and larger magazines in relation to previous carriers, although this was partly as a result of increased space available by the new design of the ships' propulsion systems.[9]

A major purpose of the ships was initially to support the U.S. military during the Cold War, and they were designed with capabilities for that role, including using nuclear power instead of oil for greater endurance when deployed in blue water, and the ability to make adjustments to the carriers' weapons systems on the basis of new intelligence and technological developments.[10] They were initially categorized only as attack carriers, but ships have been constructed with anti-submarine capabilities since USS Carl Vinson.[11][12] As a result, the ships and their aircraft are now able to participate in a wide range of operations, which can include sea and air blockades, mine laying, and missile strikes on land, air and sea.[13]

Because of a design flaw, ships of this class have inherent lists to starboard when under combat loads that exceed the capability of their list control systems. The problem appears to be especially prevalent on some of the more modern vessels. This problem has been previously rectified by using damage control voids for ballast, but a solution using solid ballast which does not affect the ship's survivability has been proposed.[4][14]

Construction

All ten Nimitz-class aircraft carriers were constructed between 1968 and 2006 at Newport News Shipbuilding Company, in Newport News, Virginia, in the largest drydock in the western hemisphere, dry dock 12, now 2,172 feet (662 m) long after a recent expansion.

Since USS Theodore Roosevelt, the carriers were manufactured in modular construction (USS George H.W. Bush was constructed from 161 'super-lift' modules). This means that whole sections could be welded together with plumbing and electrical equipment already fitted, improving efficiency. Using gantry cranes, the modules were lifted into the dry dock and welded. In the case of the bow section, these can weigh over 1,500,000 pounds (680 t).[15][16][17] This method was originally developed by Ingalls Shipbuilding and increases the rate of work because much of the fitting out does not have to be carried out within the confines of the already finished hull.[18]

The total cost of construction for each ship was around $4.5 billion.[Note 2][6]

Propulsion

All ships of the class are powered by two A4W nuclear reactors, kept in separate compartments. They power four propeller shafts and can produce a maximum speed of over 30 knots (56 km/h) and maximum power of 260,000 bhp (190 MW).[3] The reactors produce heat through nuclear fission which heats water. This is then passed through four turbines (manufactured by General Electric) which are shared by the two reactors. The turbines power the four bronze propellers, each with a diameter of 25 feet (7.6 m) and a weight of 66,000 pounds (30 t). Behind these are the two rudders which are 29 feet (8.8 m) high and 22 feet (6.7 m) long, and each weigh 110,000 pounds (50 t).[19] The Nimitz-class ships constructed since USS Ronald Reagan also have bulbous bows in order to improve speed and fuel efficiency by reducing hydrodynamic drag.[20] As a result of the use of nuclear power, the ships are capable of operating continuously for over 20 years without refueling and are predicted to have a service life of over 50 years.[19]

Armament and protection

In addition to the aircraft carried onboard, the ships carry defensive equipment for direct use against missiles and hostile aircraft. These consist of either three or four NATO RIM-7 Sea Sparrow missile launchers designed for defense against aircraft and anti-ship missiles as well as either three or four 20 mm Phalanx CIWS missile defense cannon. USS Ronald Reagan has none of these, having been built with the RIM-116 Rolling Airframe Missile system, two of which have also been installed on USS Nimitz and USS George Washington. These will be installed on the other ships as they return for Refueling Complex Overhaul (RCOH).[3][14] Since USS Theodore Roosevelt, the carriers have been constructed with 2.5 in (64 mm) Kevlar armor over vital spaces, and earlier ships have been retrofitted with it: Nimitz in 1983–1984, Eisenhower from 1985–1987 and Vinson in 1989.[2][21]

The other countermeasures the ships use are four Sippican SRBOC (super rapid bloom off-board chaff) six-barrel MK36 decoy launchers, which deploy infrared flares and chaff to disrupt the sensors of incoming missiles; an SSTDS torpedo defense system; and an AN/SLQ-25 Nixie torpedo countermeasures system. The carriers also use Raytheon AN/SLQ-32(V) electronic warfare systems to detect and disrupt hostile radar signals in addition to the electronic warfare capabilities of some of the aircraft on board.[22][23]

The presence of nuclear weapons on board U.S. aircraft carriers since the end of the Cold War has neither been confirmed nor denied by the U.S. government. As a result of this, as well as concerns over the safety of nuclear power, the presence of a U.S. aircraft carrier in a foreign port has occasionally provoked protest from local people, for example when USS Nimitz docked in Chennai, India, in 2007. At that time, the Strike Group commander Rear Admiral John Terence Blake stated that: "The U.S. policy is that we do not routinely deploy nuclear weapons on board Nimitz."[24][25]

Carrier air wing

In order for a carrier to deploy, it must embark one of ten Carrier Air Wings (CVW).[Note 3] The carriers can accommodate a maximum of 130 F/A-18 Hornets[26] or 85–90 aircraft of different types, but current numbers are typically 64 aircraft. Although the air wings are integrated with the operation of the carriers they are deployed to, they are nevertheless regarded as a separate entity. As well as the aircrew, the air wings are also made up of support personnel involved in roles including maintenance, aircraft and ordnance handling and emergency procedures. Each person on the flight deck wears color-coded clothing to make their role easily identifiable.

A typical carrier air wing can include 12–14 F/A-18F Super Hornets as strike fighters; two squadrons of 10–12 F/A-18C Hornets, with one of these often provided by the U.S. Marine Corps (VMFA), also as strike fighters; 4–6 EA-6B Prowlers for electronic warfare; 4–6 E-2C Hawkeyes used for airborne early warning; C-2 Greyhounds used for logistics; and a Helicopter Antisubmarine Squadron of 6–8 SH-60F & HH-60H Seahawks. Aircraft that have previously operated from Nimitz-class carriers include F-14 Tomcats, S-3 Vikings, A-7 Corsair II and A-6E Intruder aircraft.[27]

Flight deck and aircraft facilities

The flight deck is angled at nine degrees, which allows for aircraft to be launched and recovered simultaneously. This angle of the flight deck was reduced slightly in relation to previous carriers, as the current design improves the air flow around the carrier.[9] Four steam catapults are used to launch fixed-wing aircraft, and four arrestor wires are used for recovery. The two newest carriers, Reagan and Bush, only have three arrestor wires each, as the fourth was used infrequently on earlier ships and was therefore deemed unnecessary. This CATOBAR arrangement allows for faster launching and recovery as well as a much wider range of aircraft that can be used on board compared with smaller aircraft carriers, most of which use a simpler STOVL arrangement without catapults or arrestor wires. The ship's aircraft operations are controlled by the air boss on the bridge.[7] Four large elevators transport aircraft between the flight deck and the hangars below. These hangars are divided into three bays by thick steel doors that are designed to restrict the spread of fire.[8]

Strike groups

When an aircraft carrier deploys, it takes a Strike Group, made up of several other warships and supply vessels which allow the operation to be carried out. The armament of the Nimitz class is made up only of short range defensive weapons, used as a last line of defense against enemy missiles and aircraft. The other vessels in the Strike Group provide additional capabilities, such as long range Tomahawk missiles or the Aegis Combat System, and also protect the carrier from attack. A typical Strike Group may include, in addition to an aircraft carrier: up to six surface combatants, including frigates, guided missile cruisers and guided missile destroyers (used primarily for anti-aircraft warfare and anti-submarine warfare); one or two attack submarines (for seeking out and destroying hostile surface ships and submarines); and an ammunition, oiler, and supply ship of Military Sealift Command to provide logistical support.[28] The precise structure and numbers of each type of ship can vary between groups depending on the objectives of the deployment.[29]

Design differences within the class

While the designs of the final seven ships (from USS Theodore Roosevelt) are slightly different from those of the earlier ships, the U.S. Navy nevertheless regards all vessels as a single class.[30] As the older carriers come in for Refueling and Complex Overhaul (RCOH), their nuclear power plants are refueled and they are upgraded to the standards of the latest ships. This is the most substantial overhaul the ships receive, although other refits may be performed to update the ships' equipment.[14][31] The ships were initially categorized only as attack carriers but have been constructed with anti-submarine capabilities since USS Carl Vinson. These improvements include better radar systems and facilities which enable the ships to operate aircraft in a more effective anti-submarine role, including the fitting of common undersea picture (CUP) technology which uses sonar to allow for better assessment of the threat from submarines.[11]

USS Theodore Roosevelt and those completed after her have slight structural differences from the earlier carriers such as improved protection for ordnance storage in their magazines. Other improvements include upgraded flight deck ballistic protection, first implemented on USS George Washington, and the high-strength low-alloy steel (HSLA-100) used for constructing ships since USS John C. Stennis.[7][32] More recently, older ships have had their flight decks refitted with a non-slip material fitted on new-build ships, to improve safety for both crew and aircraft.[33][34]

The final ship USS George H.W. Bush was designed as a "transition ship" to the Nimitz class replacement, the Gerald R. Ford class. Bush incorporates new technologies including improved propeller and bulbous bow designs, a reduced radar signature and electronic and environmental upgrades.[35][36] As a result, the ship's cost was US$6.2 billion, higher than that of the earlier Nimitz-class ships which each cost around US$4.5 billion.[37] To lower costs, some new technologies and design features were also incorporated into the USS Ronald Reagan, the previous carrier, including a redesigned island.[38]

Ships in class

The United States Navy lists the following ships in the Nimitz class:[30]

Ship Hull Number Laid down Launched Commissioned RCOH Homeport (2010) References
Nimitz CVN-68 22 June 1968 13 May 1972 3 May 1975 1998–2001 Naval Air Station North Island, San Diego, California
Naval Station Everett, Everett, Washington (2011)
[5][39]
Dwight D. Eisenhower CVN-69 15 August 1970 11 October 1975 18 October 1977 2001–2005 Naval Station Norfolk, Norfolk, Virginia [40][41]
Carl Vinson CVN-70 11 October 1975 15 March 1980 13 March 1982 2005–2009 Naval Air Station North Island, San Diego, California [42][43]
Theodore Roosevelt CVN-71 31 October 1981 27 October 1984 25 October 1986 2009– Naval Station Norfolk, Norfolk, Virginia [1][44]
Abraham Lincoln CVN-72 3 November 1984 13 February 1988 11 November 1989 Naval Station Everett, Everett, Washington
Naval Station Norfolk, Norfolk, Virginia (2011)
[45][46]
George Washington CVN-73 25 August 1986 21 July 1990 4 July 1992 Yokosuka Naval Base, Yokosuka, Japan [1][47]
John C. Stennis CVN-74 13 March 1991 11 November 1993 9 December 1995 Naval Base Kitsap, Bremerton, Washington [1][48]
Harry S. Truman CVN-75 29 November 1993 7 September 1996 25 July 1998 Naval Station Norfolk, Norfolk, Virginia [1][49]
Ronald Reagan CVN-76 12 February 1998 4 March 2001 12 July 2003 Naval Base Kitsap, Bremerton, Washington (2011) [1][50]
George H.W. Bush CVN-77 6 September 2003 9 October 2006 10 January 2009 Naval Station Norfolk, Norfolk, Virginia [51]

Service history

1975–1989

One of the first major operations in which the ships were involved was Operation Eagle Claw launched by USS Nimitz in 1980 after she had deployed to the Indian Ocean in response to the taking of hostages in the U.S. embassy in Tehran.[13] Although initially part of the U.S. Atlantic Fleet,[52] Eisenhower relieved Nimitz in this operation after her service in the Mediterranean Sea.[39] Nimitz conducted a Freedom of Navigation exercise alongside the aircraft carrier USS Forrestal in August 1981 in the Gulf of Sidra, near Libya. During this exercise, two of the ship's F-14 Tomcats shot down two Libyan aircraft in what became known as the Gulf of Sidra incident.[53] In 1987, Vinson participated in the first U.S. carrier deployment in the Bering Sea,[54] and Nimitz provided security during the 1988 Olympic Games in Seoul.[55]

1990–2000

The two most significant deployments the Nimitz class was involved in during the 1990s were the Gulf War and its aftermath, and Operation Southern Watch in southern Iraq. All active vessels were engaged in both of these to some extent, with Operation Southern Watch continuing until 2003.[56] However, most carriers in operation in Operation Desert Shield and Operation Desert Storm played supporting roles, with only Roosevelt playing an active part in combat operations. Throughout the 1990s and more recently, Nimitz-class carriers have been deployed as part of humanitarian missions. While deployed in the Gulf War, Lincoln was diverted to the Indian Ocean to participate alongside 22 other ships in Operation Fiery Vigil, evacuating civilians following the eruption of Mt. Pinatubo on Luzon Island in the Philippines. In October 1993, Lincoln deployed to Somalia to assist UN humanitarian operations there, spending four weeks flying patrols over the area around Mogadishu while supporting U.S. troops during Operation Restore Hope. The same ship also participated in Operation Vigilant Sentinel in the Persian Gulf in 1995.[46] Roosevelt flew patrols in support of the Kurds over northern Iraq as part of Operation Provide Comfort in 1991. In 1996, George Washington played a peacekeeping role in Operation Decisive Endeavor in Bosnia and Herzegovina.[57] In 1999, Roosevelt was called to the Ionian Sea to support Operation Allied Force alongside other NATO militaries.[58]

2001–present

Truman's maiden deployment was in November 2000. The carrier's air wing flew 869 combat sorties in support of Operation Southern Watch, including a strike on Iraqi air defense sites on 16 February 2001, in response to Iraqi surface-to-air missile fire against United Nations coalition forces.[59]

After the 11 September attacks, Vinson and Roosevelt were among the first warships to participate in Operation Enduring Freedom in Afghanistan. Vinson sailed towards the Persian Gulf intending to support Operation Southern Watch in July 2001. This changed in response to the attacks, and the ship changed course to travel towards the North Arabian Sea, where she launched the first airstrikes in support of the operation on 7 October 2001.[60] Following the attacks, Stennis and Washington participated in Operation Noble Eagle, carrying out homeland security operations off the West Coast of the United States. All active ships have been involved to some extent in Iraq and Afghanistan since that time. This included the invasion in 2003, as well as providing subsequent support for Operation Iraqi Freedom since then.[61]

The carriers have also provided aid after natural disasters; in 2005, Lincoln supported Operation Unified Assistance in Indonesia after the December 2004 tsunami,[62] and Truman provided aid after Hurricane Katrina later in 2005.[63] The Reagan Carrier Strike Group performed humanitarian assistance and disaster relief operations in the Philippines in June 2008 after Typhoon Fengshen, which killed hundreds from the central island regions and the main island of Luzon.[64] In January 2010 Vinson operated off Haiti, providing aid and drinking water to earthquake survivors as part of the U.S. led Operation Unified Response, alongside other major warships and hospital ship Comfort.[65]

Refueling Complex Overhaul

In order to refuel their nuclear power plants, the carriers each undergo a Refueling Complex Overhaul (RCOH) once in their service lives. This is also the most substantial overhaul the ships undergo while in service and involves bringing the vessels' equipment up to the standards of the newest ships. The ship is placed in dry dock, and essential maintenance is carried out including painting of the hull below the waterline and replacement of electrical and mechanical components such as valves. Because of the large time periods between the ships' constructions, the armament and designs of the newer ships are more modern than those of the older ships. In RCOH, the older ships are refitted to the standards of the newer ships, which can include major upgrades to the flight deck, aircraft catapults and combat systems as well as other upgrades such as improved radar systems, although precise details can vary significantly between the ships. The improvements normally take around four years to complete. The RCOH for USS Theodore Roosevelt, which began in 2009, will reportedly cost US$ 2.4 billion.[66][67][68] Planned Incremental Availability is a similar procedure, although it is less substantial and does not involve refueling of the nuclear power plants.[69]

Symbolic and diplomatic roles

Because of their status as the largest warships in the U.S. Navy, the deployment of an aircraft carrier can fulfill a symbolic role, not just in terms of a deterrent to an enemy, but often as a diplomatic tool, in strengthening relations with allies and potential allies. The latter of these functions can take place either as a single visit to a country, in which senior naval officers are allowed to observe the operating of the carrier and to interact with its senior officers,[70] or as part of an international task force. This can be in combat operations, such as Operation Allied Force in 1999,[71] or other deployments involving training, such as RIMPAC. In addition, carriers have participated in international Maritime Security Operations, combating piracy in the Persian Gulf and off the coast of Somalia.[72][73]

Accidents and incidents

As on most large warships, there have been several incidents involving the death or injury of one or more crew members, although most have involved freak accidents or failures, such as a man overboard as a result of poor weather. One of the highest-profile incidents was on 26 May 1981, when an EA-6B Prowler crashed on the flight deck of Nimitz, killing 14 crewmen and injuring 45 others.[13][74] Forensic testing of the personnel involved showed that several tested positive for marijuana. While this was not in itself found to have directly caused the crash, the findings of the investigation provoked the introduction of mandatory drug testing of all service personnel.[75][76]

In cases of ditched aircraft, pilots have been able to eject safely in several cases. However, fatal aircraft crashes have occurred; in 1994, Lt. Kara Hultgreen, the first female F-14 Tomcat pilot, was killed while attempting to land on board Lincoln during a training exercise.[46]

Fires have also caused damage to the ships; in May 2008, while being transferred to her current homeport at Yokosuka Naval Base in Yokosuka, Japan, George Washington suffered a serious fire which cost US$70 million in repairs and injured 37 sailors. The fire was caused by unauthorized smoking in an area near improperly stored flammable refrigerant.[77][78][79]

Future

Nimitz class ships were designed to have a fifty-year service life.[80] At the end of the service life, ships will be decommissioned. This process will first take place on Nimitz and is estimated to cost from US$750 to $900 million. This compares with an estimate of US$53 million for a conventionally powered carrier. Most of the difference in cost is attributed to the deactivation of the nuclear power plants and safe removal of radioactive material and other contaminated equipment.[81] A new class of carriers, the Gerald R. Ford class, is being constructed to replace previous vessels after decommissioning. Ten of these are expected, and the first will enter service in 2015 to replace USS Enterprise. The rest of these new carriers will gradually replace the oldest Nimitz vessels as they reach the end of their service life.[82] The new carriers will have a similar design to Bush (using an almost identical hull shape) but will also have further technological and structural improvements.[83]

See also

Notes

Footnotes
  1. ^ The letters CVN denote the type of ship: "CV" is the hull classification symbol for aircraft carriers, and "N" indicates nuclear-powered propulsion. The number after the CVN means that this is the 68th "CV", or large aircraft carrier.
  2. ^ All monetary values are adjusted for inflation to 2000s figures
  3. ^ Although there are ten carrier air wings in the U.S. Navy, they are numbered between CVW-1 (USS Enterprise) and CVW-17 (USS Carl Vinson)
Citations
  1. ^ a b c d e f g Polmar, p. 112
  2. ^ a b Fontenoy, Paul E. (2006). Aircraft carriers: an illustrated history of their impact. ABC-CLIO Ltd. p. 349. ISBN 978-1851095735. 
  3. ^ a b c d Gibbons, Tony (2001). The Encyclopedia of Ships. London, United Kingdom: Amber Books. p. 444. ISBN 978-1-905704-43-9. 
  4. ^ a b Wolfson, Dianna. "A Solution to the Inherent List on Nimitz Class Aircraft Carriers" Defense Technical Information Center 2004
  5. ^ a b "USS Nimitz (CVN 68) Multi-Purpose Aircraft Carrier". Naval Vessel Register. 2004. http://www.nvr.navy.mil/nvrships/details/CVN68.htm. Retrieved 18 December 2009. 
  6. ^ a b Ronald O'Rourke (2005). "Navy CVN-21 Aircraft Carrier Program: Background and Issues for Congress". US Department of the Navy. http://www.history.navy.mil/library/online/navycvn21.htm. Retrieved 18 December 2009. 
  7. ^ a b c Polmar, p. 113
  8. ^ a b Darwin, Robert; Bowman, Howard; Hunstad, Mary; Leach, William; Williams, Frederick (2005). Aircraft Carrier Flight and Hangar Deck Fire Protection: History and Current Status. Defense Technical Information Center. p. 10. http://handle.dtic.mil/100.2/ADA432176. Retrieved 2011-07-01. 
  9. ^ a b Friedman, p. 316
  10. ^ Jim Wilson "21st Century Carrier Force" Popular Mechanics October 1998, pp. 58–66
  11. ^ a b Sandra I. Erwin (July 2003). "7th Fleet Experiment Probes Navy's Near-Term Concerns". National Defense Industrial Association. http://www.nationaldefensemagazine.org/ARCHIVE/2003/JULY/Pages/7th_Fleet3817.aspx. Retrieved 31 December 2009. 
  12. ^ Patricia Kime (September 2003). "Navy Should Bolster Crisis Planning for Theater ASW". Navy League of the United States. http://www.navyleague.org/sea_power/sep_03_12.php. Retrieved 31 December 2009. 
  13. ^ a b c "Cold War Ship – Nimitz class". Royal Air Force Museum London. 2008. http://www.nationalcoldwarexhibition.org/explore/ship.cfm?ship=Nimitz%20Class. Retrieved 21 December 2009. 
  14. ^ a b c "Aircraft Carriers – CVN". U.S. Navy. 6 November 2009. http://www.navy.mil/navydata/fact_display.asp?cid=4200&tid=200&ct=4. Retrieved 19 December 2009. 
  15. ^ "CVN 78 Construction & Facilities". Northrop Grumman Shipbuilding. http://www.sb.northropgrumman.com/products/geraldrfordclass/construction/index.html. Retrieved 30 May 2010. 
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  18. ^ "Our Heritage: Litton Industries". Northrop Grumman Shipbuilding. http://www.northropgrumman.com/heritage/index.html. Retrieved 30 May 2010. 
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  20. ^ Yardley, Roland; Schank, John; Kallimani, James (2007). A Methodology for Estimating the Effect of Aircraft Carrier Operational Cycles on the Maintenance Industrial Base: Technical Report. RAND Corporation. p. 30. ISBN 978-0833041821. 
  21. ^ Wertheim, p. 884
  22. ^ Wertheim, p. 885
  23. ^ Polmar, p. 108
  24. ^ "Nimitz docks off Chennai to 'build new relations with India'". The Indian Express. 3 July 2007. http://www.indianexpress.com/news/nimitz-docks-off-chennai-to-build-new-relat/203639/. Retrieved 11 January 2010. 
  25. ^ "NAM and Nimitz". Frontline. 14–27 July 2007. http://www.hinduonnet.com/fline/fl2414/stories/20070727000806200.htm. Retrieved 11 January 2010. 
  26. ^ "Navy Aircraft Carriers: Cost Effectiveness of Conventionally and Nuclear-powered Carriers
  27. ^ Lambeth, p. 89Lambeth, Benjamin (2005). American Carrier Air Power At The Dawn Of A New Century. RAND Corporation. p. 138. ISBN 0-8330-3842-7. 
  28. ^ Stevens, p. 24
  29. ^ Polmar, p. 37
  30. ^ a b "Aircraft Carriers – CV, CVN". Fact File. U.S. Navy. 12 October 2007. http://www.navy.mil/navydata/fact_display.asp?cid=4200&tid=200&ct=4. Retrieved 10 January 2009. 
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References

Bibliography
  • Friedman, Norman (1983). U.S. aircraft carriers: an illustrated design history. Annapolis, Maryland: Naval Institute Press. ISBN 978-0870217395. 
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  • Wertheim, Eric (2007). The Naval Institute Guide to Combat Fleets of the World: Their Ships, Aircraft and Systems. Annapolis, Maryland: Naval Institute Press. ISBN 978-1591149552. 

Further reading

External links