JS Nichinan
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JS ''Nichinan'' (AGS-5105) is the only ship of her type of
oceanographic research ship Oceanography (), also known as oceanology, sea science, ocean science, and marine science, is the scientific study of the ocean, including its physics, chemistry, biology, and geology. It is an Earth science, which covers a wide range of top ...
for the
Japan Maritime Self-Defense Force The , abbreviated , also simply known as the Japanese Navy, is the maritime warfare branch of the Japan Self-Defense Forces, tasked with the naval defense of Japan. The JMSDF was formed following the dissolution of the Imperial Japanese Navy ( ...
.


Development

With the shift to passive
anti-submarine warfare Anti-submarine warfare (ASW, or in the older form A/S) is a branch of underwater warfare that uses surface warships, aircraft, submarines, or other platforms, to find, track, and deter, damage, or destroy enemy submarines. Such operations ar ...
, the collection of marine environmental data is required for efficient execution of maritime operations, and seafloor topography /
sediment Sediment is a solid material that is transported to a new location where it is deposited. It occurs naturally and, through the processes of weathering and erosion, is broken down and subsequently sediment transport, transported by the action of ...
,
tidal currents Tides are the rise and fall of sea levels caused by the combined effects of the gravitational forces exerted by the Moon (and to a much lesser extent, the Sun) and are also caused by the Earth and Moon orbiting one another. Tide tables c ...
/ geomagnetism, and water temperature / salt content, etc. Marine weather was interrelated and needed to be measured precisely. For this reason, the Maritime Self-Defense Force built the in the plan of 1967, and in 1969, it newly formed the Marine Operations Corps as its operation unit and started marine environment information activities. After that, in the 1950s, and were installed, and ocean observations were carried out with a system of four vessels. Of these, this ship was planned as a substitute for the 42AGS, which was scheduled to be removed in the latter half of the 1990s, and was approved for construction in the 1996 plan based on the medium-term defense capability development plan.


Design

In terms of design, it is said to be a performance-enhancing type of , and the ship type has also the same long forecastle, but the displacement is increased by 1,000 tons or more. The same is true for the apparently distinctive bow bow sheave. In order to reduce wave-making resistance and prevent interference with underwater acoustic equipment at the bottom of the ship (acoustic obstruction due to air bubbles, etc.), a U-shaped frame is used for the bow and a V-shaped frame is used for the stern. Was done. The adoption of bulbous bow was the first for an ocean observation ship. The observation side is on the starboard side, and the stern deck is used as the observation work deck in consideration of the effects of stools and waves of various equipment. An A-frame crane is installed at the stern and a break-action crane is installed at the center of the port side of the observation work deck in order to put the equipment into the sea and collect it. A telescopic crane is installed at the 2nd deck level. A rear control room is installed at the rear of the 1st deck for centralized monitoring and remote control of various equipment on the observation work deck, including break-action cranes. In addition, there is an equipment storage just below the observation work deck, which is connected by a lift. As the anti-sway device, U-shaped tube type anti-sway tanks (ART) are installed on both sides of the central part of the 1st deck. The standard fin stabilizer on an escort ship is ineffective without a certain amount of footsteps, but the ocean observation ship has many opportunities to berth and observe due to the nature of its mission, so it can be effective even at low speeds. The tank method was chosen. In addition, this ART system is said to be a type called Stabilo Ace that automatically predicts and diminishes upset. In addition, the crew of female SDF personnel is taken into consideration, and as a residential area for women, there is an officer's bedroom (for 2 people) near the officer's room on the 2nd deck and a staff's living area (for 8 people) in the central part of the 1st deck. It has been placed. Also, on this ship, as the first attempt as a self-defense ship, the design of her captain's room was ordered from a private designer, which is very excellent. The engine compartment is divided into two compartments, a machine room and a propulsion motor room, and the cockpit and emergency command post is located on the second deck. A diesel-electric system is used for the main engine to reduce underwater radiation noise. It is equipped with two Mitsubishi Heavy Industries S16U diesel generators and one Mitsubishi S8U diesel generator as generators, and a variable pitch propeller is driven by two propulsion motors. In addition, these generators also serve as power supply to the propulsion generator and the onboard services, and will be an integrated electric propulsion system. In order to reduce underwater radiation noise, the main engine and main generator are double anti-vibration support, and auxiliary equipment such as the hull is also anti-vibration support with anti-vibration rubber and anti-vibration pipe joints as with conventional ships. The vibration damping material is installed on the outer panel of the hull at the bottom of the ship. The variable-pitch propeller is also a large-diameter 5-wing high-skewed propeller, and the shaft rotation speed is also reduced. In order to suppress the shaft inclination as much as possible, the height of the propulsion motor itself was kept low and placed on the side as much as possible. In addition, it is equipped with two side thrusters on the bow (thrust of 9 tons each) and one on the stern (thrust of 12 tons) to improve low-speed motion performance in the presence of wind and tide.


Equipment

For general ocean observation, it is equipped with a water temperature recorder, an ultrasonic Doppler multi-layer current meter, a moored self-recording current meter (AICM-2F), a shipboard meteorological observation device, and a microwave wave height meter. It is also equipped with a buoy suspension type sound wave propagation measuring device (WQM-10B), a subsidence type sound wave propagation measuring device (EMB), and a seafloor return loss measuring device (BLMS) for underwater acoustic observation. The equipment related to the laying of acoustic observation equipment is grouped in the front half of the ship, and a large sheave and gantry crane are installed on the bow. Ocean surveying equipment includes a sea beam 2112 type multi-narrow beam sounder installed on the bottom of the bridge, a mud sampler, and a proton magnetometer (magnetic resonance magnetometer). In order to process and analyze these observation data and collected specimens, the first observation room is set up behind the bridge at the 3rd deck level, and the second observation room is set up behind the first deck. Of these, the first observation room is equipped with an observation data integration processing device that can accurately edit and record so that post-processing on land is easy after adding metadata such as time and position to the collected data. As for the onboard boats, 11-meter work boats are mounted on the dabit on the deck of the poop on both sides of the chimney, of which the port side boats are equipped with shallow sea echo sounders and towed side scan
sonar Sonar (sound navigation and ranging or sonic navigation and ranging) is a technique that uses sound propagation (usually underwater, as in submarine navigation) to navigate, measure distances ( ranging), communicate with or detect objects o ...
. It is said to be an observation work boat. In addition, it is equipped with a roped
unmanned underwater vehicle Unmanned underwater vehicles (UUV), also known as underwater drones, are submersible vehicles that can operate underwater without a human occupant. These vehicles may be divided into two categories: remotely operated underwater vehicles (ROUVs) an ...
(ROV) for underwater work such as cable repair. It is usually mounted on the deck room that is continuous with the deck of the ship tower, and is lifted and lowered by the A-frame crane at the stern. Made in the United States, it weighs about 5.5 tons in the air, has a total length of about 2.9 meters, a width of about 1.8 meters, and a height of about 2.4 meters. It is equipped with two manipulators and a water jet excavator as work equipment. She is said to have a pressure resistance of 1,000 meters and a working depth of 400 meters.


Construction and career

''Nichinan'' was
laid down Laying the keel or laying down is the formal recognition of the start of a ship's construction. It is often marked with a ceremony attended by dignitaries from the shipbuilding company and the ultimate owners of the ship. Keel laying is one ...
on 7 August 1997 and launched on 1 June 1998 by
Mitsubishi Heavy Industries is a Japanese Multinational corporation, multinational engineering, electrical equipment and electronics corporation headquartered in Tokyo, Japan. MHI is one of the core companies of the Mitsubishi Group and its automobile division is the prede ...
Shimonoseki file:141122 Shimonoseki City Hall Yamaguchi pref Japan01s3.jpg, 260px, Shimonoseki city hall is a Cities of Japan, city located in Yamaguchi Prefecture, Japan. , the city had an estimated population of 248,193 in 128,762 households and a pop ...
Shipyard. She was commissioned on 24 March 1999 and was incorporated into the Marine Service Corps and deployed in
Yokosuka is a city in Kanagawa Prefecture, Japan. , the city has a population of 373,797, and a population density of . The total area is . Yokosuka is the 11th-most populous city in the Greater Tokyo Area, and the 12th in the Kantō region. The city i ...
. In response to the
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caused by the 2011 off the Pacific coast of Tohoku Earthquake, Yokosuka departed urgently to dispatch a disaster. Around 2:00 pm on November 30, 2013, the cable of an unmanned underwater vehicle (ROV) was broken in the
Tsugaru Strait The is a strait between Honshu and Hokkaido in northern Japan connecting the Sea of Japan with the Pacific Ocean. It was named after the western part of Aomori Prefecture. The Seikan Tunnel passes under it at its narrowest point 12.1 miles ...
s, and it went missing. There was concern about the impact on the vehicle. The Maritime Self-Defense Force has neglected to report on this matter until January 29, 2014, when there was a newspaper report, and
Defense Minister A ministry of defence or defense (see spelling differences), also known as a department of defence or defense, is the part of a government responsible for matters of defence and military forces, found in states where the government is divid ...
Itsunori Onodera is a Japanese politician of the Liberal Democratic Party and a member of the House of Representatives in the Diet (national legislature). He served as the Minister of Defense from 2012 to 2014 and again from 2017 to 2018. Early life and educa ...
has criticized the response. On December 1, 2015, the Oceanographic Command Group was reorganized into the Oceanographic Command and Anti-submarine Support Group, and was incorporated into the 1st Oceanographic Observatory, which was newly formed under the same group. At around 2:45 am on July 20, 2016, a 27-year-old male chief sailor disappeared while sailing about 30 km east of Amami Oshima in Kagoshima Prefecture. The chief officer searched by aircraft or ship, thinking that he might have fallen into the sea, but the search was terminated at 8:00 pm on July 27.


Gallery

File:AGS-5105 にちなん (1).jpg, JS ''Nichinan'' underway, dat unknown File:JMSDF AGS5105 Nichinan.jpg, JS ''Nichinan'' on 9 April 2004 File:AGS5105Nichinan.jpg, JS ''Nichinan'' on 3 March 2012 File:横須賀基地に停泊中のしょうなん.JPG, JS ''Nichinan'' and JS Shōnan on 11 October 2012 File:JMSDF AGS 5104 Wakasa 20121223-03.JPG, JS Wakasa and JS ''Nichinan'' on 23 December 2012 File:JMSDF AGS 5104 Wakasa 20121223-02.JPG File:JS Wakasa and JS Nishinan at Yokosuka.jpg, JS ''Wakasa'' and JS ''Nichinan'' on 27 April 2015 File:JS Nichinan(AGS-5105) left front view at JMSDF Yokosuka Naval Base April 30, 2018.jpg, JS ''Nichinan'' on 30 April 2018 File:Bridge of JS Nichinan(AGS-5105) left side view at JMSDF Yokosuka Naval Base April 30, 2018 01.jpg File:Bridge of JS Nichinan(AGS-5105) left side view at JMSDF Yokosuka Naval Base April 30, 2018 02.jpg File:Bow of JS Nichinan(AGS-5105) left front view at JMSDF Yokosuka Naval Base April 30, 2018 01.jpg


Citations


References

* Takao Ishibashi "''All Maritime Self-Defense Force Ships 1952-2002''" (Namiki Shobo, 2002). * "''World Ships Special Edition 66th Collection Maritime Self-Defense Force All Ship History''" (Gaijinsha, 2004) {{DEFAULTSORT:Nichinan 1998 ships Ships built by Mitsubishi Heavy Industries Auxiliary ships of the Japan Maritime Self-Defense Force Research vessels of Japan