Saturday, March 6, 2021

USS LCAC 32

 Escala 1:700 Hobbyboss (Score 3/10)


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The Landing Craft Air Cushion (LCAC) is a class of air-cushion vehicle (hovercraft) used as landing craft by the United States Navy's Assault Craft Units and the Japan Maritime Self-Defense Force (JMSDF). They transport weapons systems, equipment, cargo and personnel of the assault elements of the Marine Air/Ground Task Force both from ship to shore and across the beach. It is to be replaced by the SSC.

Concept design of the present day LCAC began in the early 1970s with the full-scale Amphibious Assault Landing Craft (AALC) test vehicle. During the advanced development stage, two prototypes were built. JEFF A was designed and built by Aerojet General in California, with four rotating ducted propellers. JEFF B was designed and built by Bell Aerospace in New Orleans, Louisiana. JEFF B had two ducted rear propellers similar to the proposed SK-10 which was derived from the previous Bell SK-5 / SR.N5 hovercraft tested in Vietnam. These two craft confirmed the technical feasibility and operational capability that ultimately led to the production of LCAC. JEFF B was selected as the design basis for today's LCAC.[3] The JEFF A was later modified for Arctic use and deployed in Prudhoe Bay to support offshore oil drilling.

The first 33 were included in the FY82-86 defense budgets, 15 in FY89, 12 each in FY90, FY91 and FY92, while seven were included in FY93. The first LCAC was delivered to the Navy in 1984 and Initial Operational Capability (IOC) was achieved in 1986. Approval for full production was granted in 1987. After an initial 15-craft competitive production contract was awarded to each of two companies, Textron Marine & Land Systems (TMLS) of New Orleans, La, and Avondale Gulfport Marine, TMLS was selected to build the remaining craft. A total of ninety-one LCAC have now been built. The final craft, LCAC 91, was delivered to the U.S. Navy in 2001.


On June 29, 1987, LCAC was granted approval for full production. Forty-eight air-cushion landing craft were authorized and appropriated through FY 89. Lockheed Shipbuilding Company was competitively selected as a second source. The FY 1990 budget request included $219.3 million for nine craft. The FY 1991 request included full funding for 12 LCACs and advance procurement in support of the FY 1992 program (which was intended to be nine craft). The remaining 24 were funded in FY92.[5]


The LCAC first deployed in 1987 aboard USS Germantown. LCACs are transported in and operate from all the U.S. Navy's amphibious-well deck ships including LHA, LHD, LSD and LPD. Ships capable of carrying the LCAC include the Wasp (3 LCACs), Tarawa (1), Anchorage (4), Austin (1), Whidbey Island (4–5), Harpers Ferry (2), and San Antonio (2) classes.


All of the planned 91 craft have been delivered to the Navy. Of these 91 LCACs, seventeen have been disassembled for Government-Furnished Equipment (GFE) or otherwise terminated for cost reasons, two are held for R&D, and 36 are in use on each coast at Little Creek, Virginia and Camp Pendleton, California. Eight minesweeping kits were acquired in 1994–1995. A service-life extension program (SLEP) to extend service life from 20 to 30 years for the remaining 72 active LCACs was begun in 2000 and is scheduled to be completed by 2018.[6]


The craft operates with a crew of five. In addition to beach landing, LCAC provides personnel transport, evacuation support, lane breaching, mine countermeasure operations, and Marine and Special Warfare equipment delivery.[3] The four main engines are all used for lift and all used for main propulsion. The craft can continue to operate, at reduced capability, with two engines inoperable. They are interchangeable for redundancy. A transport model can seat 180 fully equipped troops.[7] Cargo capacity is 1,809 sq ft (168.1 m2). The LCAC is capable of carrying a 60-ton payload (up to 75 tons in an overload condition), including one M-1 Abrams tank, at speeds over 40 knots. Fuel capacity is 5000 gallons. The LCAC uses an average of 1000 gallons per hour. Maneuvering considerations include requiring 500 yards or more to stop and 2000 yards or more turning radius. The bow ramp is 28.8 ft (8.8 m) wide while the stern ramp is 15 ft (4.6 m) wide. Noise and dust levels are high with this craft. If disabled the craft is difficult to tow. In recent years spray suppression has been added to the craft's skirt to reduce interference with driver's vision.

The LCAC is a dramatic innovation in modern amphibious warfare technology. It provides the capability to launch amphibious assaults from points over the horizon (OTH) from up to 50 nautical miles (93 km; 58 mi) offshore, thereby decreasing risk to ships and personnel and generating greater uncertainty in the enemy's mind as to the location and timing of an assault, thereby maximizing its prospects of success. The LCAC propulsion system makes it less susceptible to mines than other assault craft or vehicles. Due to its tremendous over-the-beach capability, the LCAC can access more than 80% of the world's coastlines. Previously, landing craft had a top speed of approximately eight knots (15 km/h; 9.2 mph) and could cross only 17% of the world's beach area. Assaults were made from a few miles off-shore. Its high speed complements a joint assault with helicopters, so personnel and equipment can be unloaded beyond the beach in secure landing areas. For 20 years, helicopters have provided the partial capability to launch OTH amphibious assaults. Now, with LCAC, landing craft complement helos in speed, tactical surprise and without exposing ships to enemy fire.

The similarities between a Navy LCAC and an airplane are substantial. The craftmaster sits in a "cockpit" or command module with a headset radio on. He talks to air traffic control which for LCAC's is well-deck control located near a ship's sterngate. The ride feels like a plane in high turbulence. The craftmaster steers with a yoke, his feet are on rudder controls. The LCAC is similar to a helicopter in that it has six dimensions of motion. Operating the LCAC demands unique perceptual and psychomotor skills. In addition, with a machine as expensive and inherently dangerous as the LCAC, sound judgment and decision-making also play an important role. Concerns over escalating training cost, projections for an increased number of LCAC vehicles and crew, and a high attrition rate in training highlighted the importance of developing a more accurate means of selecting candidates. Attrition of operators and engineers has dropped from an initial high of 40% in 1988 to approximately 10–15% today.

In Fiscal Year 2000 the Navy started an LCAC Service Life Extension Program (SLEP) to add 10 years of design life to each craft. The SLEP will be applied to 72 LCACs, extending their service life from 20 to 30 years, delaying the need to replace these versatile craft.[3][8]


Without a SLEP the first LCAC would face retirement in 2004, based on a 20-year lifespan. Naval Sea Systems Command (NAVSEA) has been working with Textron Marine and Land Systems since April 1996 on LCAC SLEP research and development. The actual SLEP modifications are planned to be conducted in two phases.


Phase I. Over a period of several years electronics system recapitalization will take place at each Assault Craft Unit (ACU), where the craft are physically located. This will involve replacing current electronics components, which are increasingly becoming obsolete and unsupportable, with an open electronics architecture using easily upgraded, Commercial Off-The-Shelf (COTS) components. The new electronics suite will be more reliable and less costly to operate and maintain.


Phase II. Buoyancy box replacement will be conducted at the Textron Marine and Land Systems facility in New Orleans, LA, where Textron will use design changes, coatings, and changes in materials to increase the LCACs resistance to corrosion. Phase II will also include the electronics upgrade of Phase I, until the entire active fleet is outfitted with the new configuration. The new buoyancy box will incorporate improvements to damage stability and trim control of the LCACs.


NAVSEA transitioned from the research and development effort to the SLEP in 1999. Concurrently NAVSEA also considered additional SLEP options, including an enhanced engine to provide improved operation in excessively hot environments and an advanced skirt that is more reliable and cost effective.


The Navy continued the LCAC Service Life Extension Program in Fiscal Year 2001. This program combines major structural improvements with Command, Control, Communications, Computer and Navigation upgrades and adds 10 years to the service life, extending it to 30 years. In FY 2001, it was funded at $19.9 million and extended the service life of 1 craft. The SLEP is planned for a total of 72 craft.


The near-term focus will be on the "C4N" [Command, Control, Communications, Computers, and Navigation] program, to replace the crafts' obsolete equipment. This will focus on replacement of LN-66 radars with modern, high-power P-80 radar systems. Additionally, the SLEP will include an open-architecture concept, relying on modern commercial-off-the-shelf (COTS) equipment, which will allow much easier incorporation of later technology changes, such as the precision navigation system and communications systems ¾ fully interoperable with in-service and near-term future Joint systems ¾ now planned. The C4N program is to complete by 2010.


Through 2016, the Navy will look to incorporate other important service-life enhancements: Engine upgrades (ETF-40B configuration) that will provide additional power and lift particularly in hot (43 °C, 110 °F, and higher) environments, reduced fuel consumption, reduced maintenance needs, and reduced lift footprint; Replacement of the buoyancy box to solve corrosion problems, incorporate hull improvements, and "reset" the fatigue-limit "clock"; Incorporation of a new (deep) skirt that will reduce drag, increase performance envelope over water and land, and reduce maintenance requirements.[5]


As of September 2012, there are 80 LCACs in the U.S. Navy inventory. Of these 80 LCACs, 39 LCACs have undergone the SLEP conversion, 7 more SLEP conversions are in progress and 4 are awaiting induction. The FY 2013 budget authorized 4 SLEP conversions per year through FY 2018. The last of the 72 SLEP conversions will be delivered to the Navy in FY 2020. A number of LCACs are under development and testing at the Naval Support Activity Panama City in Panama City, Florida. When the first SLEP LCAC reached its 30 years of design service in 2015, it was to gradually be retired. In 2019, at which point the inventory of LCACs had fallen to 50, the USN began receiving the new Ship-to-Shore Connector (SSC), the LCAC-100.[8]


The USN inventory of LCACs will continue to fall, as the SLEP LCACs are retired, until 2023, when the inventory will reach a low of 40 SLEP LCACs and SSC LCAC-100s. The inventory will remain at 40 until 2026 when the production of SSC LCAC-100s will begin to outnumber the retirement of SLEP LCACs. Current projections foresee the inventory rising to 60 SSC LCAC-100s in 2031 and 72 SSC LCAC-100s on 2034.


Ship-to-Shore Connector

Main article: Ship-to-Shore Connector

The SSC LCAC-100 will have an increased payload of 73 short tons. It will have Pilot/Co-Pilot Dual Controls with a smaller crew (5) and a new Command, Control, Communications, Computers & Navigation (C4N) suite. It will also have engines offering 20% more power with new Full Authority Digital Engine Control (FADEC), a simpler and more efficient drive train with one gearbox per side, and a new Heating, Ventilation and Air Conditioning (HVAC) system. It will be constructed out of aluminum alloy 5083 which offers a lighter, stronger and performance in extreme environments, plus better corrosion resistance. Other improvements include an immersion grade wet deck coating system and its gear shaft and fan blades will be constructed with extensive composites. It will be able to operate with a 74 short ton load at a sustained speed of 35 knots (40 mph) in NATO Sea State 3–4 (waves heights of 4.1 to 8.2 feet, averaging 6.2 feet).

Japanese operations

Six LCAC are in use by the Japan Maritime Self-Defense Force. Approval for the sale was given by the United States Government on 8 April 1994. The craft were built by Textron Marine & Land Systems in New Orleans, Louisiana. Purchase of the first craft was included in the FY93 budget, second in FY95, third and fourth in FY99 and fifth and sixth in FY00.



Friday, March 5, 2021

USS Santa Fe SSN-763

 Scale 1:700 Brand Hobbyboss (Kit score 7/10)



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USS Santa Fe (SSN-763), a Los Angeles-class submarine, is the second ship of the United States Navy to be named for Santa Fe, New Mexico. The contract to build her was awarded to the Electric Boat Division of General Dynamics Corporation in Groton, Connecticut on 21 March 1986 and her keel was laid down on 9 July 1991. She was launched on 12 December 1992 sponsored by Mrs. Joy Johnson, and commissioned on 8 January 1994, with Commander Rodger P. Krull in command.

Santa Fe's maiden deployment was in 1997 to the Persian Gulf and Western Pacific. In 1998, she completed a Selected Restricted Availability in Pearl Harbor Naval Shipyard. In 1999, she was again deployed to the Persian Gulf and Western Pacific earning a Meritorious Unit Commendation and Coast Guard Meritorious Unit Commendation. In 2001, she deployed to the Western Pacific and Persian Gulf earning two Meritorius Unit Commendations as well as earning her first coveted CSS-7 Battle E.

Santa Fe deployed to the Western Pacific in September 2003 until March 2004. For this deployment she participated in ANNUALEX '03 with the Japanese Maritime Defense Force. The ship made port calls in Singapore, Guam, multiple times in Sasebo, Japan, and in Yokosuka, Japan in which she rode out a typhoon while in port. Santa Fe was awarded the Navy Unit Commendation, the second highest award given to a submarine, for actions completed on this deployment. She underwent a three-month Interim drydocking in October 2004.


After the ship completed sea trials and other various workups she then completed a two-month Eastern Pacific Deployment that started in May 2005. After returning to her homeport of Pearl Harbor in June 2005, she again deployed to the Western Pacific on 9 August 2005. During this deployment she participated in Exercise Malabar with the Indian Navy. Santa Fe was the second U.S. nuclear submarine to participate in the exercise and also to port in Goa, India. After Malabar, the ship made a brief stop in Phuket, Thailand. She was the first U.S. submarine to visit Phuket since 2001. The ship returned to Pearl Harbor in February 2006. She made the transit to the East Coast in July 2006, surfacing near the North Pole on the way and stopping in Brest, France.


USS Santa Fe completed a major repair period lasting 18 months at the Portsmouth Naval Shipyard in Kittery, Maine.[citation needed] After undergoing sea trials at Naval Submarine Base Kings Bay, Georgia and transiting through the Panama Canal, she has returned to her homeport of Pearl Harbor, HI.


After shipyard she completed a six-month Western Pacific deployment from May–November 2009, after stops in Singapore, Saipan, Guam, Okinawa, JP, and Yokosuka, JP. She received the Battle "E" Award in January 2010.


Santa Fe returned 24 August 2011 to Joint Base Pearl Harbor-Hickam after successfully completing a six-month deployment to the western Pacific region. During this deployment Santa Fe skillfully conducted four operations of great importance to national security by safely operating in a demanding and challenging undersea environment, directly enhancing fleet, theater and national objectives. The crew displayed exceptional tactical skill, tenacity and perseverance while operating under extremely challenging conditions to prepare the battle space for future operations. Santa Fe's tactical acumen was further displayed by their highly successful participation in Exercise Malabar, a bilateral exercise with the Indian navy. Port calls included Sasebo, Japan (x3), Chinhae, South Korea; Yokosuka, Japan; Guam, and Subic Bay, Philippines. In recognition of their outstanding performance, Santa Fe received the COMSUBRON 7 Battle "E" Award and was awarded the Navy Unit Commendation by the Secretary of the Navy.

Awards

2000 - Arleigh Burke Fleet Trophy for most improved ship in the Fleet.

2001 - Marjorie Sterrett Battleship Fund Award

2001, 2004, 2009, and 2011, 2015 - COMSUBRON 7 Battle Efficiency "E" Award.

2003, 2012 - Navy Unit Commendation by the SECNAV (2nd highest award that can be given to a Naval vessel)

2006 - Navy Meritorious Unit Commendation

United States

Name: USS Santa Fe

Namesake: The City of Santa Fe, New Mexico

Awarded: 21 March 1986

Builder: General Dynamics Electric Boat

Laid down: 9 July 1991

Launched: 12 December 1992

Sponsored by: Joy Johnson

Commissioned: 8 January 1994

Homeport: Pearl Harbor

Identification:

MMSI number: 369970220

Callsign: NSFE

Status: in active service

General characteristics

Class and type: Los Angeles-class submarine

Displacement:

6,000 long tons (6,096 t) light

6,927 long tons (7,038 t) full

927 long tons (942 t) dead

Length: 110.3 m (361 ft 11 in)

Beam: 10 m (32 ft 10 in)

Draft: 9.4 m (30 ft 10 in)

Propulsion: S6G nuclear reactor

Speed:

Surfaced:20 knots (23 mph; 37 km/h)

Submerged: +20 knots (23 mph; 37 km/h) (official)

Complement: 12 officers, 98 men

Sensors and

processing systems: BSY-1/BQQ-10 passive sonar, BQS-15 detecting and ranging sonar, WLR-8 fire control radar receiver, WLR-9 acoustic receiver for detection of active search sonar and acoustic homing torpedoes, BRD-7 radio direction finder

Armament: 4 × 21 in (533 mm) bow tubes, 10 Mk48 ADCAP torpedo reloads, Tomahawk land attack missile block 3 SLCM range 1,700 nautical miles (3,100 km), Harpoon anti–surface ship missile range 70 nautical miles (130 km), mine laying Mk67 mobile Mk60 captor mines





Thursday, March 4, 2021

USS LCU 1655

 Escala 1:700 Hobbyboss (Score 7/10)



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The LCU 1466, 1610 and 1627 class vessels are operated by the United States Navy at support commands.[10][11] They are a self-sustaining craft complete with living accommodations and mess facilities for a crew of thirteen.[9] They have been adapted for many uses including salvage operations, ferry boats for vehicles and passengers, and underwater test platforms. Each LCU is assigned a non-commissioned-officer-in-charge (NCOIC) (Craft Master) who is either a Chief Petty Officer or Petty Officer First Class in the Boatswain's Mate, Quartermaster or Operations Specialist rating. These vessels have bow ramps for onload/offload, and can be linked bow to stern gate to create a temporary pier-like structure. Its welded steel hull provides high durability with deck loads of 3,900 kg/m2 (800 pounds per square foot). Arrangement of machinery and equipment has taken into account built-in redundancy in the event of battle damage. The craft features two engine rooms separated by a watertight bulkhead to permit limited operation in the event that one engine room is disabled. An anchor system is installed on the starboard side aft to assist in retracting from the beach. These vessels are normally transported to their areas of operation onboard larger amphibious vessels such as LSDs, LHDs and LHAs. The 40-year-old craft will be replaced under LCU 1700[12] (ex-Surface Connector (X) Recapitalization, or SC(X)R), project starting in FY2017

Name: LCU 1466, 1610 and 1627 classes

Operators: United States Navy

Active: 32[9]

General characteristics

Displacement: see table

Length: see table

Beam: see table

Draft: see table

Propulsion: see table

Speed: see table

Range: see table

Endurance: 10 days[9]

Capacity: see table

Troops: see table

Sensors and

processing systems: LN 66 or SPS-53 I band navigation radar

Armament: 2 × Browning .50 caliber machine guns





Wednesday, March 3, 2021

USS LCAC 31

 Escala 1:700 Hobbyboss (Score 3/10)



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The Landing Craft Air Cushion (LCAC) is a class of air-cushion vehicle (hovercraft) used as landing craft by the United States Navy's Assault Craft Units and the Japan Maritime Self-Defense Force (JMSDF). They transport weapons systems, equipment, cargo and personnel of the assault elements of the Marine Air/Ground Task Force both from ship to shore and across the beach. It is to be replaced by the SSC.

Concept design of the present day LCAC began in the early 1970s with the full-scale Amphibious Assault Landing Craft (AALC) test vehicle. During the advanced development stage, two prototypes were built. JEFF A was designed and built by Aerojet General in California, with four rotating ducted propellers. JEFF B was designed and built by Bell Aerospace in New Orleans, Louisiana. JEFF B had two ducted rear propellers similar to the proposed SK-10 which was derived from the previous Bell SK-5 / SR.N5 hovercraft tested in Vietnam. These two craft confirmed the technical feasibility and operational capability that ultimately led to the production of LCAC. JEFF B was selected as the design basis for today's LCAC.[3] The JEFF A was later modified for Arctic use and deployed in Prudhoe Bay to support offshore oil drilling.

The first 33 were included in the FY82-86 defense budgets, 15 in FY89, 12 each in FY90, FY91 and FY92, while seven were included in FY93. The first LCAC was delivered to the Navy in 1984 and Initial Operational Capability (IOC) was achieved in 1986. Approval for full production was granted in 1987. After an initial 15-craft competitive production contract was awarded to each of two companies, Textron Marine & Land Systems (TMLS) of New Orleans, La, and Avondale Gulfport Marine, TMLS was selected to build the remaining craft. A total of ninety-one LCAC have now been built. The final craft, LCAC 91, was delivered to the U.S. Navy in 2001.


On June 29, 1987, LCAC was granted approval for full production. Forty-eight air-cushion landing craft were authorized and appropriated through FY 89. Lockheed Shipbuilding Company was competitively selected as a second source. The FY 1990 budget request included $219.3 million for nine craft. The FY 1991 request included full funding for 12 LCACs and advance procurement in support of the FY 1992 program (which was intended to be nine craft). The remaining 24 were funded in FY92.[5]


The LCAC first deployed in 1987 aboard USS Germantown. LCACs are transported in and operate from all the U.S. Navy's amphibious-well deck ships including LHA, LHD, LSD and LPD. Ships capable of carrying the LCAC include the Wasp (3 LCACs), Tarawa (1), Anchorage (4), Austin (1), Whidbey Island (4–5), Harpers Ferry (2), and San Antonio (2) classes.


All of the planned 91 craft have been delivered to the Navy. Of these 91 LCACs, seventeen have been disassembled for Government-Furnished Equipment (GFE) or otherwise terminated for cost reasons, two are held for R&D, and 36 are in use on each coast at Little Creek, Virginia and Camp Pendleton, California. Eight minesweeping kits were acquired in 1994–1995. A service-life extension program (SLEP) to extend service life from 20 to 30 years for the remaining 72 active LCACs was begun in 2000 and is scheduled to be completed by 2018.[6]


The craft operates with a crew of five. In addition to beach landing, LCAC provides personnel transport, evacuation support, lane breaching, mine countermeasure operations, and Marine and Special Warfare equipment delivery.[3] The four main engines are all used for lift and all used for main propulsion. The craft can continue to operate, at reduced capability, with two engines inoperable. They are interchangeable for redundancy. A transport model can seat 180 fully equipped troops.[7] Cargo capacity is 1,809 sq ft (168.1 m2). The LCAC is capable of carrying a 60-ton payload (up to 75 tons in an overload condition), including one M-1 Abrams tank, at speeds over 40 knots. Fuel capacity is 5000 gallons. The LCAC uses an average of 1000 gallons per hour. Maneuvering considerations include requiring 500 yards or more to stop and 2000 yards or more turning radius. The bow ramp is 28.8 ft (8.8 m) wide while the stern ramp is 15 ft (4.6 m) wide. Noise and dust levels are high with this craft. If disabled the craft is difficult to tow. In recent years spray suppression has been added to the craft's skirt to reduce interference with driver's vision.

The LCAC is a dramatic innovation in modern amphibious warfare technology. It provides the capability to launch amphibious assaults from points over the horizon (OTH) from up to 50 nautical miles (93 km; 58 mi) offshore, thereby decreasing risk to ships and personnel and generating greater uncertainty in the enemy's mind as to the location and timing of an assault, thereby maximizing its prospects of success. The LCAC propulsion system makes it less susceptible to mines than other assault craft or vehicles. Due to its tremendous over-the-beach capability, the LCAC can access more than 80% of the world's coastlines. Previously, landing craft had a top speed of approximately eight knots (15 km/h; 9.2 mph) and could cross only 17% of the world's beach area. Assaults were made from a few miles off-shore. Its high speed complements a joint assault with helicopters, so personnel and equipment can be unloaded beyond the beach in secure landing areas. For 20 years, helicopters have provided the partial capability to launch OTH amphibious assaults. Now, with LCAC, landing craft complement helos in speed, tactical surprise and without exposing ships to enemy fire.

The similarities between a Navy LCAC and an airplane are substantial. The craftmaster sits in a "cockpit" or command module with a headset radio on. He talks to air traffic control which for LCAC's is well-deck control located near a ship's sterngate. The ride feels like a plane in high turbulence. The craftmaster steers with a yoke, his feet are on rudder controls. The LCAC is similar to a helicopter in that it has six dimensions of motion. Operating the LCAC demands unique perceptual and psychomotor skills. In addition, with a machine as expensive and inherently dangerous as the LCAC, sound judgment and decision-making also play an important role. Concerns over escalating training cost, projections for an increased number of LCAC vehicles and crew, and a high attrition rate in training highlighted the importance of developing a more accurate means of selecting candidates. Attrition of operators and engineers has dropped from an initial high of 40% in 1988 to approximately 10–15% today.

In Fiscal Year 2000 the Navy started an LCAC Service Life Extension Program (SLEP) to add 10 years of design life to each craft. The SLEP will be applied to 72 LCACs, extending their service life from 20 to 30 years, delaying the need to replace these versatile craft.[3][8]


Without a SLEP the first LCAC would face retirement in 2004, based on a 20-year lifespan. Naval Sea Systems Command (NAVSEA) has been working with Textron Marine and Land Systems since April 1996 on LCAC SLEP research and development. The actual SLEP modifications are planned to be conducted in two phases.


Phase I. Over a period of several years electronics system recapitalization will take place at each Assault Craft Unit (ACU), where the craft are physically located. This will involve replacing current electronics components, which are increasingly becoming obsolete and unsupportable, with an open electronics architecture using easily upgraded, Commercial Off-The-Shelf (COTS) components. The new electronics suite will be more reliable and less costly to operate and maintain.


Phase II. Buoyancy box replacement will be conducted at the Textron Marine and Land Systems facility in New Orleans, LA, where Textron will use design changes, coatings, and changes in materials to increase the LCACs resistance to corrosion. Phase II will also include the electronics upgrade of Phase I, until the entire active fleet is outfitted with the new configuration. The new buoyancy box will incorporate improvements to damage stability and trim control of the LCACs.


NAVSEA transitioned from the research and development effort to the SLEP in 1999. Concurrently NAVSEA also considered additional SLEP options, including an enhanced engine to provide improved operation in excessively hot environments and an advanced skirt that is more reliable and cost effective.


The Navy continued the LCAC Service Life Extension Program in Fiscal Year 2001. This program combines major structural improvements with Command, Control, Communications, Computer and Navigation upgrades and adds 10 years to the service life, extending it to 30 years. In FY 2001, it was funded at $19.9 million and extended the service life of 1 craft. The SLEP is planned for a total of 72 craft.


The near-term focus will be on the "C4N" [Command, Control, Communications, Computers, and Navigation] program, to replace the crafts' obsolete equipment. This will focus on replacement of LN-66 radars with modern, high-power P-80 radar systems. Additionally, the SLEP will include an open-architecture concept, relying on modern commercial-off-the-shelf (COTS) equipment, which will allow much easier incorporation of later technology changes, such as the precision navigation system and communications systems ¾ fully interoperable with in-service and near-term future Joint systems ¾ now planned. The C4N program is to complete by 2010.


Through 2016, the Navy will look to incorporate other important service-life enhancements: Engine upgrades (ETF-40B configuration) that will provide additional power and lift particularly in hot (43 °C, 110 °F, and higher) environments, reduced fuel consumption, reduced maintenance needs, and reduced lift footprint; Replacement of the buoyancy box to solve corrosion problems, incorporate hull improvements, and "reset" the fatigue-limit "clock"; Incorporation of a new (deep) skirt that will reduce drag, increase performance envelope over water and land, and reduce maintenance requirements.[5]


As of September 2012, there are 80 LCACs in the U.S. Navy inventory. Of these 80 LCACs, 39 LCACs have undergone the SLEP conversion, 7 more SLEP conversions are in progress and 4 are awaiting induction. The FY 2013 budget authorized 4 SLEP conversions per year through FY 2018. The last of the 72 SLEP conversions will be delivered to the Navy in FY 2020. A number of LCACs are under development and testing at the Naval Support Activity Panama City in Panama City, Florida. When the first SLEP LCAC reached its 30 years of design service in 2015, it was to gradually be retired. In 2019, at which point the inventory of LCACs had fallen to 50, the USN began receiving the new Ship-to-Shore Connector (SSC), the LCAC-100.[8]


The USN inventory of LCACs will continue to fall, as the SLEP LCACs are retired, until 2023, when the inventory will reach a low of 40 SLEP LCACs and SSC LCAC-100s. The inventory will remain at 40 until 2026 when the production of SSC LCAC-100s will begin to outnumber the retirement of SLEP LCACs. Current projections foresee the inventory rising to 60 SSC LCAC-100s in 2031 and 72 SSC LCAC-100s on 2034.


Ship-to-Shore Connector

Main article: Ship-to-Shore Connector

The SSC LCAC-100 will have an increased payload of 73 short tons. It will have Pilot/Co-Pilot Dual Controls with a smaller crew (5) and a new Command, Control, Communications, Computers & Navigation (C4N) suite. It will also have engines offering 20% more power with new Full Authority Digital Engine Control (FADEC), a simpler and more efficient drive train with one gearbox per side, and a new Heating, Ventilation and Air Conditioning (HVAC) system. It will be constructed out of aluminum alloy 5083 which offers a lighter, stronger and performance in extreme environments, plus better corrosion resistance. Other improvements include an immersion grade wet deck coating system and its gear shaft and fan blades will be constructed with extensive composites. It will be able to operate with a 74 short ton load at a sustained speed of 35 knots (40 mph) in NATO Sea State 3–4 (waves heights of 4.1 to 8.2 feet, averaging 6.2 feet).

Japanese operations

Six LCAC are in use by the Japan Maritime Self-Defense Force. Approval for the sale was given by the United States Government on 8 April 1994. The craft were built by Textron Marine & Land Systems in New Orleans, Louisiana. Purchase of the first craft was included in the FY93 budget, second in FY95, third and fourth in FY99 and fifth and sixth in FY00.





Tuesday, March 2, 2021

USS Winsconsin BB-64


Escala 1:350 Mini Hobbie Models (Score 4/10)







Scale 1:700 Brand Hasegawa (Kit score 3/10)






Escala 1:700 Trumpeter (Score 4/10)







El USS Wisconsin (BB-64) es un acorazado clase Iowa, segundo buque de la Armada de los Estados Unidos en ser nombrado en honor del estado de Wisconsin. Fue construido en el Astillero Naval de Filadelfia, Filadelfia, Pensilvania, y botado el 7 de diciembre de 1943, segundo aniversario del ataque a Pearl Harbor, amadrinado por la esposa del Gobernador de Wisconsin, Walter Goodland.

Durante su carrera el acorazado sirvió en el teatro del Pacífico en el transcurso de la Segunda Guerra Mundial, donde bombardeó fortificaciones japonesas, y escoltó portaaviones en los ataques aéreos contra posiciones enemigas. Durante la Guerra de Corea el Wisconsin disparó contra objetivos norcoreanos en apoyo de las operaciones terrestres de las tropas de los Estados Unidos y Corea del Sur, tras lo que fue puesto fuera de comisión en las Flotas de reserva de la Armada de los Estados Unidos, conocida como «Flota de Almacenaje». Fue reactivado el 1 de agosto de 1986 y modernizado como parte del plan de 600 barcos de la armada estadounidense, participando en la Operación Tormenta del Desierto en enero y febrero de 1991.

El Wisconsin fue dado de baja por última vez en septiembre de 1991, habiendo obtenido un total de 6 Estrellas de Combate por su servicio durante la Segunda Guerra Mundial y la Guerra de Corea, así como un Elogio de Unidad Naval por su servicio durante la Guerra del Golfo. Actualmente es un barco museo gestionado por Nauticus, el Centro Marítimo Nacional en Norfolk (Virginia). El Wisconsin fue retirado del registro naval el 17 de marzo de 2006 y el 14 de diciembre de 2009 fue donado para su uso permanente como museo. El 15 de abril de 2010 la Ciudad de Norfolk se hizo oficialmente con la propiedad del barco.

El Wisconsin fue uno de los acorazados rápidos planeados en 1938 por la Subdirección de diseño preliminar de la Oficina de la Construcción y Reparación. Era el tercero de los cuatro de los acorazados clase Iowa.1

Su quilla fue puesta en grada el 25 de enero de 1941, en ​​el astillero naval de Filadelfia. Fue botado el 7 de diciembre de 1943, siendo la madrina del acto la Sra. Goodland, esposa de Walter S. Goodland, el gobernador de Wisconsin, y asignado el 16 de abril de 1944, con el capitán Earl E. Stone al mando.2 3

La batería principal del Wisconsin consistía en nueve cañones de 410 mm, que podía disparar 2700 libras de proyectiles perforantes de blindaje a unos 32 km. Su batería secundaria consistía en 20 cañones de 130 mm en diez torretas dobles, que podían disparar a blancos de hasta 16 km de distancia. Con la llegada del poderío aéreo y la necesidad de ganar y mantener la superioridad aérea llegó la necesidad de proteger a la creciente flota de portaaviones aliados, para lo cual, el Wisconsin fue equipado con una serie de cañones antiaéreos Oerlikon 20 mm y Bofors 40 mm para defender a las compañías aliadas de los ataques aéreos enemigos. Cuando se reactivó en 1986 se eliminaron los cañones antiaéreos de 20 mm y 40 mm, y fue equipado con montajes Phalanx CIWS para la protección contra misiles y aviones enemigos y cajas lanzadoras blindadas y lanzadores Quad Cell diseñados para disparar misiles Tomahawk y Harpoon, respectivamente.4

El Wisconsin es el acorazado estadounidense de numeración más alta construido. A pesar de que su quilla fue puesta después de que la del USS Missouri (BB-63), fue asignado antes que este.1 5 6 Por lo tanto la construcción del Wisconsin comenzó después y terminó antes que la de el Missouri.

Durante su carrera, el Wisconsin sirvió en el teatro de operaciones del pacífico durante la Segunda Guerra Mundial, donde bombardeó fortificaciones japonesas durante la batalla del Golfo de Leyte, y escoltó a los portaaviones estadounidenses que lanzaron los ataques contra las posiciones enemigas.

Durante la Guerra de Corea, el USS Wisconsin bombardeó objetivos de Corea del Norte en apoyo de las operaciones de desembarco de Naciones Unidas y Corea del Sur, tras lo cual, fue dado de baja y asignado a la flota de reserva de los Estados Unidos.

Fue reactivado el 1 de agosto de 1986 y modernizado como parte del programa de la armada 600 buques, y participó en 1991 en la Guerra del golfo.

El Wisconsin fue dado de baja finalmente en 1991, con 6 estrellas de combate por su servicio en la Segunda Guerra Mundial y en la Guerra de Corea, así como una citación de la armada por sus servicios en 1991 durante la guerra del golfo. Actualmente, se preserva como buque museo, en el museo naval de Hampton Roads en Norfolk, Virginia. El Wisconsin dejó de aparecer en los listados del registro naval de buques el 17 de marzo de 2006, y actualmente, se espera su donación para su uso permanente como buque museo.

Historial
Astillero               Philadelphia Naval Shipyard
Clase     Clase Iowa
Tipo       Acorazado
Autorizado         12 de junio de 1940
Iniciado                25 de enero de 1941
Botado                 7 de diciembre de 1943
Asignado             16 de abril de 1944
22 de octubre de 1988
Baja       8 de marzo de 1958
30 de septiembre de 1991
Destino                cedido el 17 de marzo de 2006
buque museo
Características generales
Desplazamiento              45 000 toneladas
58 000 a plena carga
Eslora    270,43 metros
Manga 32,98 metros
Calado 11,6 metros
Armamento       9 Cañones Mark 7 16" (406 mm)
20 Cañones Mark 12 5" (127 mm)
80 Cañones anti-aéreos 40/60
49 Cañones anti-aéreos 20 mm
Propulsión          212 000 Cv
Velocidad           33 nudos (61 km/h)
Autonomía         28 500 km
Tripulación         1859 hombres
Aeronaves         2 hidroaviones


USS Barry DDG-52

 Escala 1:700 Marca Hobbyboss (Kit Score 8/10)



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USS Barry (DDG-52) is an Arleigh Burke-class guided missile destroyer, commissioned in 1992. Barry is the fourth United States Navy ship named after the "Father of the American Navy", Commodore John Barry (1745–1803). Its homeport is Naval Station Yokosuka, Japan. Several improvements over Arleigh Burke exist on this ship and all following Arleigh Burke-class destroyers. They include the ability to refuel a helicopter and several other small improvements.


Barry has received many awards, including the Battenberg Cup for the years 1994, 1996, and 1998—making Barry one of only three ships (as of 2008) to have won the prestigious award three times. She has also been awarded the Battle E award 4 times, and received the Golden Anchor and Silver Anchor Awards for retention. More recently, in 2004 Barry received the Arleigh Burke Fleet Trophy for being the most improved ship in the Atlantic Fleet.

Barry's keel was laid down on 26 February 1990 at the Ingalls Shipbuilding shipyard in Pascagoula, Mississippi. She was launched on 10 May 1991, and christened on 8 June 1991 by her sponsor, Rose Cochran, wife of United States Senator Thad Cochran. Barry was commissioned into the U.S. Atlantic Fleet on 12 December 1992 and was placed under the command of Commander Gary Roughead. The commissioning ceremony took place at Naval Station Pascagoula in Pascagoula, Mississippi.


Following ship's commissioning, Barry underwent Post Delivery Test and Trials (PDT&T). During this period, Barry tested every major system on board. An Operational Propulsion Plant Examination (OPPE) was conducted, with Barry receiving an overall grade of Excellent. Combat Systems Ship Qualifications Trials (CSSQT) were also conducted that included 13 missile firings.


In April 1993, Barry underwent Final Contract Trials (FCT) before returning to Ingalls Shipbuilding in May 1993 for a three-month Post Shakedown Availability (PSA). This availability included a 4-week dry-docking that included installation of the Navy's new generation Advanced Technology Design propellers, designed to reduce cavitation at high speed and improve fuel economy. Other improvements included installation of an Electro-Optical Sighting System (EOSS), application of Passive Countermeasure System (PCMS) material, tank stiffening and installation of a gray water collection system.


On 21 October 1993, Captain Gary Roughead, Barry's first commanding officer, was relieved by Commander James G. Stavridis. Barry was under command of (tactical) Destroyer Squadron 26 in 1993, 1994 and 1995, while administratively part of Destroyer Squadron 2.


In November 1993, Barry received orders to proceed to Haiti to take part in Operation Support Democracy. Barry's duties included enforcing the embargo of arms and petroleum products to the island nation.


1994

In January 1994, Barry completed her first combined Combat Systems Assessment (CSA)/Cruise Missile Tactical Qualification (CMTQ), achieving one of the Atlantic Fleet's highest score to date. In March, Barry participated in exercise MAYFLYEX 94 where her Aegis combat system successfully engaged and destroyed several Exocet anti-ship cruise missiles. In April, Barry wrapped up her preparations for her first overseas combat deployment by participating in FLEETEX 2–94 with other units of the George Washington Battle Group. A highlight of this exercise was a covert SEAL team extraction in shallow water only a few miles off the Carolina coast, successfully validating the stealth characteristics of the DDG-51 class.


On 20 May 1994, Barry departed Norfolk, Virginia on her first Mediterranean deployment. During Barry's maiden deployment, she served alongside the aircraft carrier USS George Washington as the backdrop for the 50th anniversary of D-Day. Barry also sailed the Mediterranean and Adriatic Seas as "Red Crown" in support of the No-Fly Zone over Bosnia-Herzegovina.


On 7 October 1994, Barry received orders to proceed to the Persian Gulf in response to Iraq's massing of troops on the Kuwaiti border. In what would become known as Operation Vigilant Warrior, Barry's participation included escort of both George Washington and an amphibious assault group to anchorage off Kuwait City. Barry also served as alternate Persian Gulf Anti-Air Warfare Coordinator (AAWC), and principal Tomahawk strike platform during the crisis. Barry received a Meritorious Unit Commendation, the Southwest Asia Service Medal, the Armed Forces Service Medal, and the NATO Medal for her actions during the deployment and returned home to Norfolk, Virginia on 17 November 1994.


1995

In January 1995, Barry began a three-month SRA at Moon Engineering located in Portsmouth, Virginia. This SRA included the Women at Sea (WAS) modification.


2004

In March 2003 she was assigned to Destroyer Squadron 26.[1]


In 2004, Barry participated at the annual Fleet Week in New York City.


2006

In 2006, Barry joined USS Gonzalez in providing cover for Orient Queen, a cruise ship chartered by the United States to help evacuate American citizens during the 2006 Israeli-Lebanon conflict.[2]


2011

On 1 March 2011 Barry was dispatched to the Mediterranean Sea in response to the 2011 Libyan civil war. On 19 March 2011, the Navy reported that Barry fired 55 Tomahawk cruise missiles to suppress the Libyan air defense system in support of United Nations Security Council Resolution 1973.[3][4] The official codename for the U.S. part of the operation is Operation Odyssey Dawn.[5] On 28 March, Barry assisted a U.S. Navy P-3C Orion from Patrol Squadron Five and an A-10 Thunderbolt aircraft attacking a group of three Libyan Coast Guard boats which were firing upon merchant vessels.[6]


2013

In late August 2013 she was ordered, alongside her sister ships Gravely, Mahan and Ramage to patrol the eastern Mediterranean Sea in response to rising rumors of an imminent military intervention in the Syrian civil war.


2016

In early 2016, Barry conducted a hull swap with USS Lassen, in which the two crews switched ships. Lassen operated out of Yokosuka from 2005 to 2016. Barry completed midlife modernization prior to making the switch and was outfitted with Aegis Baseline 9, the latest combat system, which is capable of defensive and offensive operations against aircraft, cruise missiles, ballistic missiles, surface ships, submarines and shore targets. Barry also received a fully integrated bridge, quality-of-life upgrades, and advanced galley during refit.[citation needed]


2020

On 10 April and 24 April 2020, Barry transited the Taiwan Strait.[7]


Awards

Navy Unit Commendation - (Jan 1994-Dec 1997, Oct 1997-Apr 1998, 5-31 Mar 2011)

Navy Meritorious Unit Commendation - (2-8 Jun 1994, Jun-Nov 1994, Apr-Sep 2002, Jan 2011-Nov 2012)

Navy E Ribbon - (1994, 1996, 1997, 1998, 2011, 2013, 2020)

Humanitarian Service Medal - (Jul-Aug 2006)

Battenberg Cup - (1994, 1996, 1998)

General characteristics

Class and type: Arleigh Burke-class destroyer

Displacement:

Light: approx. 6,800 long tons (6,900 t)

Full: approx. 8,900 long tons (9,000 t)

Length: 505 ft (154 m)

Beam: 66 ft (20 m)

Draft: 31 ft (9.4 m)

Propulsion: 4 General Electric LM2500-30 gas turbines, two shafts, 100,000 total shaft horsepower (75 MW)

Speed: >30 knots (56 km/h; 35 mph)

Range:

4,400 nautical miles at 20 knots

(8,100 km at 37 km/h)

Complement:

33 commissioned officers

38 chief petty officers

210 enlisted personnel

Sensors and

processing systems:

AN/SPY-1D 3D radar (Flight I,II,IIa)

AN/SPY-6 AESA 3D radar (Flight III)

AN/SPS-67(V)2 surface-search radar

AN/SPS-73(V)12 surface-search radar

AN/SPG-62 fire-control radar

AN/SQS-53C sonar array

AN/SQR-19 tactical towed array sonar

AN/SQQ-28 LAMPS III shipboard system

Electronic warfare

& decoys:

AN/SLQ-32(V)2 Electronic Warfare System

AN/SLQ-25 Nixie Torpedo Countermeasures

MK 36 MOD 12 Decoy Launching System

MK 53 Nulka Decoy Launching System

AN/SLQ-39 CHAFF Buoys

Armament:

1 × 29 cell, 1 × 61 cell Mk 41 vertical launching systems with 90 × RIM-156 SM-2, BGM-109 Tomahawk or RUM-139 VL-ASROC missiles

2 x Mk 141 Harpoon Missile Launcher SSM

1 × Mark 45 5/54 in (127/54 mm)

2 × 25 mm chain gun

4 × .50 caliber (12.7 mm) guns

2 × 20 mm Phalanx CIWS

2 × Mk 32 triple torpedo tubes

Aircraft carried: Can Land/Refuel 1 Helicopter, Cannot embark