Bell Offers Manned, Unmanned Tiltrotors for Navy’s Next Rotorcraft
The Bell 280 Valor is currently offered as a replacement for the U.S. Army’s H-60 helicopters, and Bell proposes they would be an ideal component of the Navy’s DMO concept. Bell
NATIONAL HARBOR, Md. — Bell, a Textron company, is marketing its manned and unmanned tiltrotor aircraft to be the eventual replacements for the Navy’s MH-60R/S helicopters.
Carl Forsling, Bell’s senior manager for military sales and strategy, told Seapower April 4 at the Navy League’s Sea-Air Space expo that the Bell tiltrotors would be ideal for implementation of the Navy’s Distributed Maritime Operations concept because of their speed, range and payload.
The two tiltrotors are the versions of the unmanned Bell 247 Vigilant and the manned Bell 280 Valor.
The Valor, currently offered as a replacement for the U.S. Army’s H-60 helicopters, is larger than the 247 and is designed to carry 8-12 passengers. It has two engines, one each at the wingtips driving a tiltrotor. Unlike those on the Bell-Boeing V-22 Osprey, the engines do not pivot, simplifying the mechanics of the movement and reducing cost. The marinized Valor would have a pivoting wing like the V-22 for storage in a ship’s hangar. The aircraft would be hardened for electromagnetic protection and be marinized for corrosion control in the salt-water environment. It would assume the roles of the MH-60S, including plane guard, rescue, medical evacuation and logistics.
The marinized unmanned Vigilant would replace the MH-60Rs on surface warships such as guided-missile destroyers. The folding rotors and pivoting wing would allow storage in a warships’ small helicopter hangars. The Vigilant could be used for roles including surveillance, antisubmarine warfare, precision strike and aerial refueling.
With both aircraft replacing helicopters, the speed and range advantage would allow the tiltrotors to cover more area at a faster rate, Forsling said, while carrying heavier payloads.
Navy’s CVM-22B Aircraft Adds Medevac Speed to Carrier Strike Group
A CVM-22B Osprey, from the “Sunhawks” of fleet logistics multi-mission squadron (VRM) 50, lands on the flight deck of the aircraft carrier USS Nimitz (CVN 68). At a Sea-Air-Space briefing, the V-22 program manager discussed the aircraft’s usefulness as a medevac solution. U.S. Navy / Mass Communications Specialist 3rd Class Joseph Calabrese
NATIONAL HARBOR, Md. — The U.S. Navy’s new CMV-22B Osprey tiltrotor carrier-onboard delivery aircraft’s capabilities have been a game-changer for medical evacuation from a carrier strike group, the Navy’s V-22 program official said.
The CMV-22B, which is replacing the catapult-launched C-2A Greyhound COD aircraft in the fleet, takes off and lands vertically. It is less dependent on carrier launch-and-recover cycles and, therefore, more flexible in its ability to quickly launch from the aircraft carrier and carry a medical patient to facilities ashore.
In addition to quicker launch capability, the range of the CMV-22B — which can be refueled in flight—give it an added ability to reach land-based medical facilities from farther out.
Marine Col. Brian Taylor, the Navy’s V-22 program manager, speaking April 4 to reporters at a Naval Air Systems Command (Booth 947) briefing the Navy League’s Sea-Air Space expo at National Harbor, Maryland, spoke of a medevac from the one of the two CMV-22B detachments from that have deployed on aircraft carriers to the Indo-Pacific region so far from Fleet Logistics Multimission Squadron 30 (VRM-30). A CVM-22B launched from the carrier with a medevac patient and was able to land in a helicopter landing pad at the naval hospital in Camp Foster, Okinawa, a feat that the C-2A would not have been able to accomplish.
Taylor MV-22B integrated well with carrier operations. He also said the Marine Corps’ MV-22B Osprey has qualified to operate from the hospital ship USNS Mercy.
The Osprey is operated by the U.S. Marine Corps, Air Force, and Navy and by the Japanese Self-Defense Force.
Taylor said the Osprey is expected to be in service through 2055. It reached initial operational capability in 2007. Under current contracts, production is expected to end in late 2024. The program office is focusing on sustainment and keeping the flow of parts and other resources necessary to keep the Osprey fleet operational through its service life.
Last year the Marine Corps deactivated one MV-22B squadron — VMM-166 — as part of Commandant Gen. David Berger’s Force Design 2030 initiatives. Faced with the possibility of excess MV-22Bs in inventory, Taylor said his office is looking at inventory management of the fleet to develop a long-term plan, with an option that some Ospreys may be placed in storage, available as attrition aircraft.
Navy’s Flight I/II DDGs Get UAS Capability with Textron’s Aerosonde
The Aerosonde UAS has been deployed on a Navy Arleigh Burke-class guided missile destroyer in the 7th Fleet. TEXTRON SYSTEMS
ARLINGTON, Va. — The Aerosonde unmanned aerial system has been deployed on a U.S. Navy Arleigh Burke-class guided-missile destroyer serving in the U.S. 7th Fleet, giving the Flight I/II DDG — which does not have the organic helicopter facilities of the Flight IIA and subsequent versions of the DDG — an organic aerial surveillance capability.
Wayne Prender, Textron Systems’ vice president for Air Systems, told Seapower March 31 the DDG — which he was not at liberty to name — deployed with an Aerosonde system on board in March. The system is being operated under a contractor-owned/contractor-operated arrangement.
Prender said a second DDG would deploy with an Aerosonde system later this year. He also said that for three years an Aerosonde system has been operational on board the Lewis B. Puller-class expeditionary sea base ship USS Hershel “Woody” Williams in support of the U.S. 2nd Fleet.
Prender said the deployments are “helping to set the calculus for real-world operations.”
The Aerosonde can carry a variety of sensors including an electro-optical camera, an Automatic Information System receiver, and other special payloads. The UAS can perform wide-area search, expanding the search horizon of the host ship. The system is fully integrated into the ship’s combat information center.
The UAS uses less fuel — about one pound per hour — than an MH-60 helicopter, which burns about 1,000 pounds per hour. The Aerosonde uses heavy fuel, the same fuel used by the ship’s turbines, so no provision for a different fuel is needed.
An Aerosonde can be operated by a team of three contractor personnel. The fixed-wing version can be launched and recovered in Sea State 4 and is recovered by a net rigged on the host ship. A vertical takeoff and landing version, which carries a lighter payload but can be launched more quickly, will be deployed on a ship later this year.
President, First Lady Celebrate Commissioning of USS Delaware
President Joe Biden and First Lady Jill Biden, the ship sponsor, celebrated the commissioning of the Virginia-class fast attack submarine USS Delaware (SSN 791) Saturday, April 2. U.S. NAVY
WILMINGTON, Delaware — President Joe Biden and First Lady Jill Biden, the ship sponsor, celebrated the commissioning of the Virginia-class fast attack submarine USS Delaware (SSN 791) Saturday, April 2, in a ceremony in Wilmington, Delaware.
Biden previously represented the state of Delaware for 36 years in the U.S. Senate.
Due to COVID restrictions in place at the time, there was no traditional commissioning ceremony held when USS Delaware was commissioned administratively on April 4, 2020. On that day, the submarine was underway and became the first U.S. Navy ship commissioned while submerged.
Saturday’s ceremony followed the script of a traditional commissioning and was held in commemoration of the milestone.
“This latest Navy ship to carry the Delaware name is part of a long tradition of serving our nation proudly and strengthening our nation’s security,” Biden said. “Not just us, but our allies and partners around the world as well.”
As the ship sponsor, Jill Biden performed the traditional honor of calling for the crew to man the ship and “bring her to life,” a ceremonial procession following the commemorative setting of the first watch.
“This vessel will always uphold the First State’s motto of ‘Liberty and Independence,’” she said. “It’s difficult to put into words what it means to be a part of the USS Delaware family. It’s an incredible honor that I take seriously. I’ve seen the heart of this crew and it makes me proud and humbled to be your shipmate for life.”
USS Delaware is the 18th Virginia-class submarine built, as well as the eighth and final Block III Virginia-class sub. The Block III submarines are notable for replacing 12 vertical launch tubes for Tomahawk Land Attack Missiles with two larger, 87-inch diameter launch tubes, capable of carrying larger payloads, among other advancements.
“The men who serve — and will serve — aboard the USS Delaware will bear our state’s name for decades to come as they defend our nation,” said U.S. Sen. Tom Carper of Delaware, the event’s keynote speaker. “Through their sacrifice and service, may we grow even closer to that more perfect union.”
USS Delaware is homeported at Submarine Base New London in Groton, Connecticut, where it operates under Submarine Squadron 12 and its Commodore, Capt. Matthew Boland.
The submarine is the seventh U.S. Navy ship to be named for the First State, but first in more than a century. The first ship to be named Delaware was a 24-gun frigate launched in July of 1776, the month the Continental Congress adopted the Declaration of Independence.
Kid-Friendly Expo Showcases STEM to Kick Off Sea-Air-Space 2022
(Left to right) Trisha Anand, 8, and Mary Bodoh, 9, enjoy playing with bubbles after a science experiment at STEM Expo 2022. SOLARES PHOTOGRAPHY
The 2022 STEM Expo, which kicked off Sea-Air-Space 2022 April 3, marked the largest crowd yet for the science- and fun-focused event, geared to students in the fifth to 12th grades.
The popular expo featured hands-on “mad science” demonstrations with dry ice, electricity, chemical reactions, robots, military animals and more, including nearly two dozen exhibits.
A performance by the U.S. Coast Guard Drill Team led the event, which also included a large and very popular version of the game Battleship; a nitrogen ice cream station, an edible version of some of the mad science experiments; and a unique building event with Tinker Man, who builds large, complex structures from children’s toys.
“It is great to see so much attention at the booth,” said Heather Deagle, a member of HII’s STEM team. “These kids are the future. It is their talent and contributions that will have an impact on shaping future technologies — and being part of this STEM event is a great opportunity to display our commitment to the education of these future generations.”
The expo encourages students to pursue coursework and careers in STEM and reaches underserved communities to promote STEM education.
The “champion” sponsor for the event was HII, whose booth included everything from a 3D printer to a REMUS unmanned underwater vehicle. Sponsors included CACI, L3Harris, Raytheon Technologies and Lockheed Martin.
Through the years, HII has made numerous investments in STEM education programs; partnerships with local high schools, community colleges and technical schools to develop trade-based curriculum; summer internships for both students and teachers; and industry-leading apprentice schools at the company’s two shipyards.
Lockheed Martin Marks Delivery of 500th C-130J Super Hercules
An HC-130J Super Hercules long range surveillance aircraft sits on a runway in Waco, Texas, following its arrival May 11, 2017, to begin installation of the Minotaur Mission System Suite. U.S. Coast Guard
ARLINGTON, Va. — The 500th C-130J Super Hercules aircraft built by Lockheed Martin (Booth 1001) has been delivered to its customer, the company announced March 15.
The aircraft, Lockheed Martin C-130 construction number 5934, is a C-130J-30 version that was delivered to the 130th Airlift Wing, a unit of the West Virginia Air National Guard based at McLaughlin Air National Guard Base in Charleston, West Virginia. The wing is replacing its older C-130 Hercules aircraft with new C-130J-30s.
The C-130J Super Hercules represents a significant advancement in performance, technology and airlift capability over the older C-130 Hercules family of aircraft. The C-130J is equipped with the more powerful Rolls-Royce AE 2100D3 turboprop engines, six-bladed GE-Dowty R391 composite propellers, modern avionics and mission systems. The Super Hercules features dual head-up displays, an integrated defensive suite, automated maintenance fault reporting, and a rear ramp door capable of opening at airspeeds of up to 250 knots. It has greater speed, range lift capacity, climb rate, cruise altitude and short-field performance than the legacy C-130.
The C-130J Super Hercules is the current production model of the legendary C-130 Hercules aircraft. The C-130J first flew in 1996 and entered service in 1999. It is now the airlift aircraft of choice of 26 operators in 22 nations.
The U.S. military services operate the largest C-130J Super Hercules fleet in the world. The U.S. Air Force and Air National Guard collectively operate C-130J, C-130J-30, AC-130J Ghostrider, EC-130J Commando Solo, HC-130J Combat King II, MC-130J Commando II and WC-130J Weatherbird variants. The Marine Corps operates the KC-130J tanker version and a C-130J as part of the Blue Angels Flight Demonstration Team. The Coast Guard operates a version of the HC-130J which is different than the version used by the Air Force for search, rescue and logistics. The U.S. Navy is planning to test a version of the C-130J-30 for the Take Charge and Move Out (TACAMO) strategic communications mission.
These are some of the 17 different mission configurations of the C-130J used worldwide for transport (military and commercial), humanitarian aid delivery, aerial firefighting, natural disaster relief support, medevac, search and rescue, special operations, fire support, weather reconnaissance, atmospheric research and aerial refueling.
The C-130J-30 is a version of the Super Hercules, which has an extended fuselage (15 feet, or 4.6 meters) when compared to the basic C-130J. As such, it can carry 30% more passengers and cargo than the basic C-130J and 50% more container delivery system bundles.
The rugged C-130 family of aircraft has been in serial production longer than any other military aircraft in the U.S. inventory. The first C-130A made its first flight in 1954 and entered service in 1956. Since the first C-130 rolled of the Lockheed Martin production line, more than 2,100 were built before production switched to the C-130J. It is flown out of more than 70 nations and has been certified to support upwards of 100 different mission capabilities in its lifetime.
“No aircraft in history, production or operation matches the C-130 Hercules in terms of its versatility. The C-130J both extends and expands this reputation thanks to increased speed, integration and strength,” said Rob Toth, director of Business Development for Lockheed Martin’s Air Mobility and Maritime Missions line of business.
As a retired U.S. Air Force Special Operations MC-130H navigator, Toth has experience flying and commanding operations with both legacy and C-130J aircraft.
“The legacy Hercs were great aircraft. The C-130J offers a more enhanced flying experience, especially with the advanced situational awareness and added power,” he said. “You the value of those attributes across all mission scenarios, especially with the maritime patrol, search and rescue, special operations and aerial refueling requirements supported by the U.S. Marine Corps and Coast Guard.”
To date, the Navy is the only U.S. government operator to not have a J in its fleet. Currently the Navy flies C-130s for transport and for 20 years (1963-1993) on the TACAMO missions.
Lockheed Martin is honored to have the Super Hercules selected for TACAMO testing — possibly bringing it back to where it all began, Toth said.
“We are working closely with NAVAIR to support an aggressive acquisition strategy that prioritizes both speed of acquisition and affordability to accelerate recapitalization of one of our nation’s most important capabilities — survivable, reliable, and endurable communications between the president and the nation’s nuclear forces,” Toth adds. “We are proud to be at the heart of this effort and confident that the Super Hercules will deliver the critical capability our nation needs.”
With SPY-6, Navy Has Radar to Match the Range of its Missiles
The SPY-6(V)1 is being installed on Flight III Arleigh Burke-class DDGs. This air-and-missile-defense radar has been installed on the future USS Jack H. Lucas (DDG 125), shown here, scheduled to join the fleet in 2024. HII
ARLINGTON, Va. — The SPY-6 air and missile defense radar, the first of which has been installed on a guided-missile destroyer, will give the Navy a sensor worthy of its long-range Standard SM-3 Block IIA surface missiles, Raytheon officials said.
Briefing reporters April 1, Ken Spurlock, Raytheon’s Strategic Missile Defense Requirements & Capabilities director, said the SM-3 missile “out-shot” the capabilities of earlier radars — presumably the SPY-1 on earlier DDGs. With the SPY-6, the SM-3 “can engage at the maximum range possible” for the missile.
Spurlock said the SPY-6 allows a ship to provide air and missile defense simultaneously, provide regional defense organically, offer greater clarity of the battlespace, give more defense in depth, reduce the risk of fratricide and reduce the number of missiles needed to defeat a target.
Also briefing was Michael Nulk, Raytheon’s associate director, Requirements and Capabilities – Naval Power, said the SPY-6 will give commanders the discrimination capability to make better decisions and to “change their shot doctrine.”
“There is no other radar with the surface maritime capabilities of SPY-6,” Wes Kremer, president of Raytheon Missiles & Defense, said in a March 31 release. “SPY-6 is the most advanced naval radar in existence, and it will provide our military a giant leap forward in capability for decades to come.”
Raytheon Missiles & Defense was awarded a $651 million Naval Sea Systems Command contract, with options totaling $2.5 billion, for “hardware, production and sustainment for full-rate production” of the SPY-6 family of radars. The contract provides for five years of production for radars for up to 31 U.S. Navy ships of seven types.
Scott Spence, naval radars executive director at Raytheon Missiles & Defense, also briefing reporters, said the company had 46 SPY-6 shipsets under contract, with six of those in work at the Raytheon plant. He said the enlarged footprint of the SPY-6 production will help reduce sustainment costs.
Spence noted the last transmitter that Raytheon builds for the SPY-1 radar will be delivered in April, concluding 41 years of production for the SPY-1.
The SPY-6 family includes the SPY-6(V)1, being installed on Flight III Arleigh Burke-class DDGs. The (V)1 has four flat antenna faces each with 37 radar module assemblies. This air-and-missile-defense radar has been installed on the future USS Jack H. Lucas (DDG 125), scheduled to join the fleet in 2024. The second shipset has been delivered for installation on the future USS Ted Stevens (DDG 128).
The SPY-6(V)2 Enterprise Air Surveillance Radar (EASR) has a rotating face with nine RMAs. The (V)2 will equip the America-class and Wasp-class amphibious assault ships, San Antonio-class amphibious transport dock ships, and Nimitz-class aircraft carriers.
The SPY-6(V)3 EASR has three fixed faces each with nine RMAs. The (V)3 will be installed on Ford-class aircraft carriers and Constellation-class guided-missile frigates.
The SPY-6(V)4 EASR will have four fixed faces each with 24 RMAs. The (V)4 will be back-fitted on some Flight IIA Arleigh Burke-class DDGs.
Builders, Suppliers of Navy Ships Facing Inflation Costs for Materials
USS Gerald R. Ford (CVN 78) transits the Atlantic Ocean, March 30, 2022. U.S. NAVY / Mass Communication Specialist 3rd Class Jackson Adkins
ARLINGTON, Va. — The price inflation hitting American consumers also is hitting the shipyards that builds ships for the U.S. Navy, which are facing increased costs for the materials used to build the ships and their components, said two executives who chair shipbuilder and supplier industrial base coalitions.
Suppliers who were not given advance funding especially are vulnerable to price inflation, which could have long-term effects in driving up the cost of the ships the Navy plans to procure. In addition, the shipbuilders are facing daunting labor shortages in the current tight labor market.
David Forster, a retired Navy captain, Global Strategy Executive of Naval Services, Rolls-Royce North America Inc., and chairman of the Amphibious Warfare Industrial Base Coalition, and Rick Giannini, chairman of the Aircraft Carrier Industrial Base Coalition and CEO of Milwaukee Valve, described the industrial base challenges of the fiscal 23 budget and Future Years Defense Plan in an April 1 interview with Seapower.
Giannini said inflation is the top concern of the aircraft carrier industrial base, especially to those suppliers who did not receive advance funding during the COVID-19 pandemic. He said the block buy of CVNs 80 and 81 saved the taxpayers money because it allowed suppliers to order advance materials, which are now in hand and unaffected by the inflation now hitting the industry.
Giannini’s company, Milwaukee Valve, uses a large amount of nickel and copper in its aircraft carrier components, which it ordered as soon as possible for two CVNs and was able to lock in the low costs before the current inflation. He said the prices of nickel have jumped and that suppliers that did not or could not order earlier were now facing the effects of inflation.
The ACIBC chairman said the CVN block buy is going well from his perspective and the ACIBC is working to show Congress the benefits of a two-CVN buy, including the advance procurement of materials that helps the suppliers to have the materials on hand when the builder needs them, making for a smooth build rate.
Forster said the Navy’s efforts to award contracts early during the first two years of the COVID pandemic “saved a lot of jobs” and gave credit to James “Hondo” Geurts, then assistant secretary of the Navy for research, development and acquisition, for his successful efforts to advance funding to shipbuilders and in turn to their suppliers.
Forster said the three to 3.5 year build cycle for amphibious assault ships was in place and good for the stability of the industrial base, but the Navy’s 2023 budget plan to end procurement of the Flight II San Antonio-class amphibious transport dock ships after a “handshake deal” for a block buy was disappointing and illustrated the ambiguity of the plans, especially since Marine Corps Commandant Gen. David Berger supported a requirement of 31 large- and medium-size amphibious warfare ships. In concert with the 2023 budget calling for the decommissioning of four dock landing ships, the Navy’s budget is at odds with its plans to a build a force structure of 31 amphibious warfare ships.
Forster also noted the procurement of the light amphibious warship had slid until 2025, a further challenge to stability for the workforce.
He also advocates the Navy procure a replacement for the amphibious assault ship USS Bonhomme Richard, which was scrapped after a devastating fire in July 2020, having been modified for operation of the F-35B strike fighter.
Giannini said the second major concern of the shipbuilders and its supplier industrial base was the workforce, which is stressed by the difficulty of hiring skilled labor. He cited the increasing age of the workforce and the retirements earlier than planned as a consequence of the COVID-19 pandemic.
The Navy’s shipbuilding and ship retirement plans for 2023 and the Future Years Defense Plan and are likely to face intense scrutiny from the armed services committees in Congress, who have pushed back against retirement plans for several ships in the recent past and have been critical of the Navy’s “divest to invest” strategy.
DoD Releases Fiscal Year 2021 Freedom of Navigation Report
Arleigh Burke-class guided-missile destroyer USS Barry (DDG 52) transits the Taiwan Strait during a routine transit in 2021. U.S. NAVY / Mass Communication Specialist 3rd Class Justin Stack
ARLINGTON, Va. — The Department of Defense released on April 1 its annual Freedom of Navigation Report for fiscal year 2021. During the period from Oct. 1, 2020, through Sept. 30, 2021, U.S. forces operationally challenged 37 different excessive maritime claims made by 26 different claimants throughout the world.
Excessive maritime claims are inconsistent with international law as reflected in the Law of the Sea Convention. They include a variety of restrictions on the exercise of navigation and overflight rights and other freedoms. Unlawful maritime claims — or incoherent theories of maritime entitlements — pose a threat to the legal foundation of the rules-based international order. If left unchallenged, excessive maritime claims could limit the rights and freedoms enjoyed by every nation.
Upholding freedom of navigation as a principle supports unimpeded lawful commerce and the global mobility of U.S. forces. DoD’s freedom of navigation operations demonstrate the United States will fly, sail, and operate wherever international law allows.
DoD’s regular and routine operational challenges complement diplomatic engagements by the U.S. State Department and supports the longstanding U.S. national interest in freedom of the seas worldwide.
Each year, DoD releases an unclassified summarized FON Report identifying the broad range of excessive maritime claims that are challenged by U.S. forces. It also includes general geographic information to describe the location of FON assertions while still maintaining operational security of U.S. military forces.
CNO, Indonesian Navy Chief Meet; Discuss Maritime Security
Chief of Naval Operations Adm. Mike Gilday, shown speaking to the U.S. Naval Academy’s Silent Drill Team at the christening ceremony for the future Jack H. Lucas (DDG 125) in Pascagoula, Mississippi, March 26. U.S. NAVY / Cmdr. Courtney Hillson
WASHINGTON — Chief of Naval Operations Adm. Mike Gilday met with Chief of the Indonesian Navy Adm. Yudo Margono, at the Pentagon, March 30, the CNO’s public affairs office said in a release.
This was their first meeting, during which the two leaders discussed the importance of maritime security and exchanged views on regional and global security issues.
“Working alongside our Allies and partners has never been so important. Today’s maritime challenges require interoperability and presence,” said Gilday. “Together we will continue to keep the maritime commons open and free as we promote the security, stability, and prosperity of the Indo-Pacific.”
The two leaders exchanged views about security issues in the Indo-Pacific, underscoring the importance of the U.S.-Indonesian bilateral relationship.
“The purpose of this visit is to enhance relationships and partnerships between the two navies that have been well established so far,” said Margono.
Gilday emphasized a commitment to continuing dialogue and building upon our strong bilateral defense relationship.
“For more than 70 years, Indonesia has been a valued partner,” said Gilday. “There is a strong strategic partnership between Indonesia and the U.S. and I am grateful for our long history of collaboration, cooperation, and training,” said Gilday.
Gilday and Margono also reviewed progress made in recent years in military-to-military cooperation to increase exercises and training, as well as regular defense policy dialogues.
U.S. and Indonesia operate together around the globe regularly. Indonesia has been part of the CARAT exercise series since it began in 1995. After 27 years of annual training events between the armed forces, CARAT Indonesia remains a model for cooperation that has evolved in complexity and enables both navies to refine operations and tactics in response to both traditional and non-traditional maritime security challenges.
The U.S.-Indonesian relationship is strengthened through training. For the first time, Indonesia has two midshipman attending the U.S. Naval Academy.