Showing posts with label Arihant. Show all posts
Showing posts with label Arihant. Show all posts

January 5, 2014

Brazil's Future SSN - DCNS Assistance - Australian Interest?

Part's of this Submarine Matter's article were updated in 2016-2017 eg. this explains use of the name "Naval Group".

Many of the 2014, or earlier, links are "404" ie. "dead". This is unfortunate, but goes to show the value of Submarine Matters which goes as far back as 2007.


The French company DCNS (now Naval Group) is providing a package of four conventional subs and one nuclear sub that will be domestically built. Brazil is the first customer for this package and may not be the only customer. Such an industrial solution might be more promising option for Australia than other industrial mixes of all conventional, all nuclear or foreign built.

The conventional diesel-electric subs Naval Group is assisting Brazil to build are four slightly larger than usual Scorpenes. The first might be launched in 2015.

The nuclear propelled submarine Naval Group is helping Brazil build is dubbed the "SN-Br" or "SNBR" for Submarine-Nuclear-Brazil. It may be the SN-Br will have attributes of Naval Group SSNs - perhaps somewhere between 2,500 ton Rubis-Améthyste SSN and the not yet commissioned  5,000 ton Barracuda SSN. Such tonnage would make it small by 7,000+ ton  US, UK and Russian SSN standards. The SN-Br may feature all horizontal torpedo tubes or some additional VLS
see http://www.defenseindustrydaily.com/brazil-france-in-deal-for-ssks-ssn-05217/ The long delayed  SN-Br might be launched by 2030 and enter operation in 2034.

The Brazilian SSN (SN-Br's) Reactor

SN-Br will be powered by a nuclear reactor reportedly developed entirely by Brazil under Project Aramar.

Confusion or ambiguity about the extent of French content in the SN-Br's reactor may be due to French and Brazilian sensitivity about any criticisms that France is proliferating military nuclear technology to Brazil. Has France provided the French designed 2131-R Pressurized Water Reactor (PWR) technology for the SN-Br Project? Might Brazil finally build something like the French K15 reactor (miniaturised for the Barracuda).

In a similar vein Russia's extensive assistance in designing and building India's INS Arihant reactor has also largely been kept out of the news.

In any case the SN-Br reactor may use less proliferation sensitive Uranium of only 7% and 10% enriched - see http://www.nti.org/analysis/articles/brazil-submarine-import-and-export-behavior/ [more details below] - although this is hard to believe on power to weight and frequency of refuelling grounds.

The four conventional conventional subs (SSKs) and SN-Br are part of Brazil's program to build a navy that can defend its oil and trade interests in the South Atlantic. The SN-Br will also represent a revival of military uses of nuclear energy - noting that Brazil had discontinued its nuclear weapons program by 1990 http://www.nti.org/country-profiles/brazil/ .
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Australian Interest in Naval Group Brazilian Solution?
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[Situation in 2014 (not 2021) was...] For Australia's future submarine project, known as SEA 1000, Australia has several solutions to consider from submarine suppliers. So far this website has mentioned the TKMS German offer, TKMS as owner of Kockums is no longer allowing Kockums to bid for submarine orders, Spain's Navantia S-80, Japan's Soryu subs and the faint chance of US supplying Virginia-class SSNs.

The increasing need for Australia to domestically build submarines given the rundown in Australia's manufacturing industry will work against the remote possibility that Australia would opt for the Virginia Class SSNs. The unlikelihood of US technology transfer, small Australian production runs of Virginia subs and Australia's very low level of nuclear know-how are all reasons making the Virginia's unlikely.

The Naval Group solution of Australia building its own SSK or SSNs under Naval Group guidance may be the best fit as an industrial solution. While Naval Group has no experience making SSKs in the 4,000 ton range required by Australia Naval Group has experience making nuclear subs of that tonnage and greater. Due to Naval Groups lack of experience making a conventional propulsion system for a 4,000 tonne SSK, Australia may need to consider the propulsion system used by Japan's 4,000 tonne (submerged) Soryu class.

BACKGROUND

NTI July 18, 2013 reported http://www.nti.org/analysis/articles/brazil-submarine-capabilities/ The Brazilian Navy's overall strategic goal is to gain an increased sea-denial capability, and it views submarines as a way to achieve that goal. Brazil's USD 8.3BN submarine development program (known as PROSUB) has set a goal of producing 15 diesel-electric submarines and 6 nuclear-powered submarines by 2034. These boats are slated to replace the older Tupi and Tikuna-class submarines. [9]

http://www.nti.org/analysis/articles/brazil-submarine-import-and-export-behavior/
In January 2008 Brazil signed a defense cooperation agreement with France that was followed up with an agreement on submarines in December of the same year. Detailed contracts were finally signed in September 2009, stipulating the terms of the submarine acquisitions and related technology transfer programs. [15] 

According to these agreements a strategic partnership was formed between the two countries to build four conventional Scorpène-class submarines as well as the hull for Brazil's planned nuclear powered submarine (referred to as 'SNBR'). Brazil is solely responsible for the nuclear parts of the 'SNBR' vessel, and the contract clearly states that "the Brazilian party will not receive assistance from the French party for the design, construction and putting into operation of the on-board nuclear reactor, the installations in the nuclear reactor compartment, and the equipment and facilities whose functions are primarily concerned with the reactor's operation or nuclear safety." [16]

From http://www.nti.org/analysis/articles/brazil-submarine-import-and-export-behavior/ [now a dead link] 

The fuel (most likely enriched to levels between 7% and 10% U-235) and the reactor will be provided by the Brazilian Navy's Aramar Technological Center in Ipero and based on the Nuclear-Electric Generation Laboratory (Laboratorio de Geracao Nucleo-Eletrica - LABGENE) and USEXA (a pilot uranium hexafluoride conversion plant) projects. [17] 

Furthermore, parts for a prototype 48MW pressurized water reactor (RENAP-11) have allegedly already been manufactured. Negotiations on a verification regime for Brazil's naval nuclear fuel involving the IAEA and the Brazilian-Argentine Agency for Accounting and Control of Nuclear Materials (ABACC) are ongoing. [18]

The 2009 contract also provides for the formation of a joint venture between Naval Group and Brazilian construction company Odebrecht Engenharia. [19] The joint venture covers the construction of a new shipyard and naval base at Sepetiba Bay (near Rio de Janeiro), as well as the production of the submarines themselves. [20] The total cost of the order is expected to be around $8.4 billion over 20 years for the completion of five submarines, the shipbuilding infrastructure, and the weapons system. The conventional submarines are rumored to cost an estimated $600 million each and the nuclear vessel is estimated at $1.5 billion.

[21] The first four submarines will be single-hull, conventional Scorpène-class attack submarines that are slightly modified for greater endurance and time between maintenance. This enables them to meet the operational requirements of patrolling and protecting the expansive Brazilian coast, offshore natural resources and sea-going commerce. [22] Similar to the deal with HDW in the 1980s, the contract with Naval Group states that construction on the nose of the first submarine will begin at the Naval Group shipyard in Cherbourg, France, and will then move to Brazil for completion at Sepetiba Bay.

[23] Assembly and construction of the remaining three conventional submarines, as well as the nuclear-powered variant, will take place entirely in Brazil, though many preassembled parts and components will be brought in from France. [24] Construction on the Scorpènes began in July 2011, with the first submarine slated to be commissioned into the Navy around 2017. [25] According to the construction schedule the last of the conventional submarines is due to be completed by 2025 and the nuclear vessel is expected to be finished by 2023.

[26] Seeking an increased sea-denial capability, the Brazilian Navy plans to procure fifteen diesel-electric submarines and six nuclear-powered submarines to replace the Tupi and Tikuna-class boats when those submarines are retired. The extent of foreign involvement in the development of these new submarines is unclear, but given the Brazilian emphasis on development of an indigenous submarine building capacity it seems likely that a significant amount of construction will take place domestically. [27]

FURTHER READING

See also:

Anthony Boadle of Reuters, March 1, 2013, [dead link]  http://www.reuters.com/article/2013/03/01/brazil-defense-submarines-idUSL1N0BT5WK20130301

ANU’s Stephan Fruehling wrote in ASPI Strategist a most interesting article on this:  Nuclear propulsion and the future of Australia’s submarine force of March 11, 2016, http://www.aspistrategist.org.au/nuclear-propulsion-and-the-future-of-australias-submarine-force/ [still available]

Pete

May 12, 2012

New Indian-Russian nuclear and military agreements, Canadian uranium soon.

Now that India's de facto weapons status has been accepted through lifting of Nuclear Supplier Group (NSG) sanctions India is working quickly to access uranium and nuclear technology. One nuclear and three military agreements were concluded with Russia this week. Another nuclear agreement, with Canada, is scheduled for signature in June 2010.

The simultaneous signing of nuclear and military agreements suggest "joint development of weapons systems and platforms" will continue Russia's assistance with India's submarine reactor (first deployed in the Arihant - see "Development" section here). As the reactor has only been at sea in the Arihant for several months, has not yet been operated at sea, it is highly likely that significant development and modification of the reactor will be required over the next two years.
The expected June 2010 agreement with Canada, in part providing for export of uranium to India, may also reduce India's interest in Australian uranium. Indian bitterness however, over Australia's uranium embargo, will still remain.

Agreement with Russia - Business Standard, December 8, 2009:

"India today signed a path-breaking civil nuclear agreement with Russia that will guarantee uninterrupted uranium fuel supplies for its atomic reactors and transfer of technology and also inked three military pacts.

The agreements were signed after talks between Prime Minister Manmohan Singh and Russian President Dmitry Medvedev at the Kremlin here, during which the two leaders spoke of the need for “pinpointed” strategies to deal with terrorism emanating from Pakistan and Afghanistan.

The defence agreements, aimed at moving away from a buyer-seller relationship, provide for joint development of weapons systems and platforms over a 10-year period up to 2020 and vital after-sales support for Russian equipment supplied to India to end ad hocism in this critical area.
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ITAR-TASS news agency reported that the two countries have finalised the Admiral Gorshkov aircraft carrier deal, an irritant in the bilateral relations.

Singh described the Inter-Governmental framework agreement for civil nuclear cooperation as a “major step” forward and said India was “very satisfied” at the development of bilateral atomic cooperation.

The deal is seen as going much more beneficial for India than the historic 123 atomic agreement with the US, which does not guarantee fuel supplies without any break."


Fute agreement with Canada - IBN Live, November 29, 2009:

"India and Canada have agreed on a civil nuclear deal that will enable New Delhi to access Canadian nuclear technology and uranium after a gap of 34 years. Prime Minister Manmohan Singh said the development "augurs extremely well" for the ties between the nations.

The deal is likely to be signed when Manmohan Singh goes to Canada to attend the G20 summit in June next year. The breakthrough was announced on Saturday after Manmohan Singh held talks with his Canadian counterpart Stephen Harper on the sidelines of the Commonwealth Heads of Government Meeting (CHOGM) at this Trinidad and Tobago capital."

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Pete

May 11, 2012

India's Nuclear Submarine Status


Useful diagram of Arihant and future weapons fit. Click to enlarge.
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The following article mostly appears to be a Press Release from the Indian Ministry of Defence with little critical analysis. Omissions seem to be:
- no comment that the Nerpa was to have been in Indian hands by late 2009 - this has now slipped to early 2010, and
- if Arihant is a "technology demonstrator" due to be inducted after two more years, where does this leave the advertised simultaneous construction of the second and third Arihants. The claim in August 2009 Second indigenous Indian nuclear submarine to be launched "soon"" therefore seems unfounded and unlikely to happen for at least three years. It would be folly to launch a second Arihant when the first is still under development.
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This Times of India article, December 3, 2009, reports.
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"NEW DELHI: India's first-ever indigenous nuclear submarine, aptly named INS Arihant (annihilator of enemies), should be ready for induction into Navy in another two years or so. With progress finally being made in fulfilling India's long-standing aim to have a credible `nuclear triad', or the ability to fire nukes from land, air and sea, the Navy now wants a well-balanced underwater strategic arm. This will include three SSBNs (nuclear-powered submarines with long-range strategic missiles) and six SSNs (nuclear-powered attack submarines) in the long-term. But much before all this, Navy will begin operating a nuclear submarine by early next year.
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That is when, after several glitches, India will finally get the 12,000-tonne `K-152 Nerpa' Akula-II class submarine from Russia on a 10-year lease. Nerpa, of course, will not come armed with long-range missiles due to international treaties like the Missile Technology Control Regime. But apart from being a potent hunter of enemy submarines, Nerpa will also help train Indian sailors in the complex art of operating, maintaining and deploying nuclear submarines like INS Arihant and its already-approved two follow-on vessels....
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The over 6,000-tonne INS Arihant will be more of `a technology demonstrator', rather than a fully-operational SSBN, for the subsequent follow-on nuclear submarines to follow. At present, the government has sanctioned well over Rs 30,000 crore for the ATV project to construct three submarines, with the third being of a much larger size. The `launch' of the 111-metre long INS Arihant by flooding the dry dock at the Shipbuilding Centre at Visakhapatnam on July 26 this year, in the presence of PM Manmohan Singh, marked India's entry into the select group of five nations -- US, UK, Russia, France and China -- capable of building nuclear submarines. But there is still a long way to go. It's only after its miniature 83 MW pressurised light-water reactor is `fired' sometime next year will INS Arihant begin its extensive sea-acceptance trials.
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Then only will the testing of 700-km range K-15 SLBMs (submarine-launched ballistic missiles) developed by DRDO to arm the submarine, which has four silos on its hump, come into play. K-15, of course, falls way short of the over 5,000-km range missiles of US, Russia and China. The last, for instance, has a huge fleet of 62 submarines, with at least 10 of them nuclear-powered, and is also ready with its new JL-2 SLBM, which has a strike range of over 7,200 km."
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Pete

May 10, 2012

Controversy Over SLBMs for India's Arihant Submarine (ATV)


Arihant and its proposed K-15 (Sagarika) and the Agni IIISL missiles. (click to enlarge) Diagram  drawn from a very comprehensive Arihant article at http://weapons.technology.youngester.com/2009/08/ins-arihant-in-news-and-photos.html
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My previous post has drawn an interesting raft (or submersible) of queries and comments. They'll take a while to answer or at least to generate more questions. I'll respond in red in the next 2-3 days:

"A" said, Tuesday, February 01, 2011 1:01:00 AM

"Hi Pete, i think it is quite premature to assume that k-15 will be the mainstay SLBM fielded by indian submarines for next 20 years because already the indian media has reported the existence and launch of K-4 SLBM early last year.This SLBM is reported to have a range of 3500 kms and another missile of range 5000 kms+ is also under development.Another test of this missile is planned early this yaer.These are believed to be operationalised by 2017-2020."

Hi "A"

You're right that its premature to be certain that the K-15 (aka Sagarika and B-05) will be India's standard SLBM for 2 decades. Alternate developments are even less probable. The K-15 has been tested in a semi-submersible environment (from a pontoon) and has had a number of land launches where range and accuracy were tested.

Apparently the K-4 had a limited pontoon "cold" launch test after all (allegedly tested in January 2010 according to the Government sources telling India Today associate editor Sandeep Unnithan. The K-4 apparently "breached the surface" meaning its rocket motors (if installed) were not tested, no flight occured, hence no range claims could be tested see - http://livefist.blogspot.com/2010/11/mag-report-indias-secret-k-missile.html  Significantly the K-4 is reported to be 10 metres long/tall (oddly the same length/height as the K-15) and 1.3 metres diametre while Agni III is reported to be 17 metres long/tall and 2 metres in diameter. These are two measurable indicators of how fundamentally different the K-4 and Agni III apparently are. http://gentleseas.blogspot.com/2008/01/indian-ki15-agni-3-missiles-in-atv.html of January 2008 on the K-15 launch. Meanwhile the variously labelled Agni III SL/K-X/K-4 has only been flight tested from land. The gulf between testing and developing a land based missile and an SLBM is very wide. Its like saying a successful test of a Minuteman IV indicates progress with a Trident II. The US never made the connection. Dimensions and the technical requirements of a submerged "cold" launch mean there is a great difference between land missiles and SLBMs.

It is also notable that the Arihant will only carry 4 Agni III SLs according to information in August 2008 when Arihant was launched - see http://gentleseas.blogspot.com/2009/08/arihant-indias-first-homebuilt-nuclear.html. Even then the armament expectations for Arihant were murky  - it was first to be armed with BrahMos, then K-15, then Agni III SLs.

Four Agni IIIs does not constitute an adequate war load compared to India's competitors, which vary from 12 (likely MIRVed) SLBMs on Chinese SSBNs, 16 for UK and France and 24 on US subs. This is also in the absence of any evidence that India has developed a MIRV (multiple warheads on each missile) capability. China has a decent chance of shooting down 4 Agni III warheads but not 240 (24 x 10 MIRVed) warheads from one US SSBN. This makes Arihant an unviable SSBN.

This also means India will need to develop a whole new class of nuclear submarine to fill the SSBN niche. New submarine classes often take 2 decades to develop. Although India could perhaps retrofit a 16 missile "plug" onto an Arihant style base.

In addition I think there is insufficient evidence, thus far, that Arihant's reactor is even operating. The Indian PMs speech in August 2008 indicated considerable Indian reliance on Russia for assistance in building Arihant (particularly the reactor http://gentleseas.blogspot.com/2009/08/arihant-indias-first-homebuilt-nuclear.html ). If India is also placing some reliance on Russia for developing and launching the theoretical Agni III SL from a submerged submarine India may have the kind of setbacks Russia is experiencing with the RSM-56 Bulava missile http://en.wikipedia.org/wiki/RSM-56_Bulava#Troubles.  5 test failures out of 11.

Russia may prove of limited assistance and reliability (remembering ongoing Gorshkov delay and delays with Nerpa). Assuming India will not build a completely homegrown SLBM when mature technology is out there some intended or unintended (espionage) gathering from the US or UK may be in order. Alternatively with France's "record" (highly suspected testing and joint development of Israel's nuclear deterrent) help from France may be more explicit - especially if rolled in with the sale of 6 more Scorpenes (a current tender?) to India.

Naturally much of the above is speculation, but it may throw up likelihoods :) All this is not to disparage India - noting that Australia's homebuilt experience consists of 6 below average Collins SSKs.

Regards

Pete

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PointSingularity86 said on February 01, 2011 4:26:00 AM
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"Information sharing may well occur amongst those countries that see China as a potential threat"

Did u basically mean all countries? :P No not all countries. Information sharing might quietly occur between those countries that trust each other and/or they see the others' information on (say) Chinese SSN movements, as valuable. Sharing countries might also have a sound relationship with India. For example Russia would be an information sharing ally with India (but not directly with ther US) because Russia sees China as a threat and Russia has the facilities to track Chinese SSN's and then pass on the interlligence to India :P. 
In contrast North Korea (NK) is distrusted by all and is unlikely to have adequate tracking intelligence facilities about Chinese SSNs. NK would see China as an ally sometimes but also a potential threat. NK would be out of the intel sharing loop.   :P

One observation, the Nicobar islands (well I almost forget they're ours ;) are close to Malacca straits. Actually, I suppose there's no way a ship can pass Malacca strait and bypass Nicobar islands! If India monitors Great Nicobar seas and perhaps Andaman Island seas as well. , it will detect everything that moves thru Malacca!
So nuke subs can watch the open Indian Ocean south of Malacca. The Nicobar's certainly occur to the the terrestrial (island) eye view. There may also be sound reasons why particular undersea geographical formations or water conditions might also be concentrated on by India's undersea sensor arrays. The arrays may not need to connect with closest landfalls/islands - power/optical fibre signals might connedct directly with the Naval Base at Vishakhapatnam. Also the fairly fixed paths of India's spy satellites may influence surveillance choices. Further, the patrol areas asigned to allies would affect India's own surveillance efforts. 

.... Or maybe say hello to Oz and beg for Uranium more frequently (u knw, Mr. Krishna can't do daily begging down under)
or maybe steal some from Oz without saying hello... lol
God this uranium begging business has gone a bit too far! :P Amen to that PS86! The uranium embargo is a needless irritant to good Australian relations with India! :P

btw, I was thinking, a nuke sub's constrained only by supplies onboard (food more precisely) . In wartime (the last patrol...) food availability might be the only limitation. However in peace - for the US anyway, a voyage might be just 4-5 months (less than food stocks) because the Blue or Gold crews need to return due to: a degree of physical and mental exhaustion and sleep debt (less sleep than desirable), the need to see loved ones, need to perform maintenance or repairs for about a month on the SSN or SSBN (eg software and hardware updates might be needed for the computerised combat systems). Some nuclear missiles and torpedoes might need to be reconditioned or swapped due to chemical changes always going on in the nuclear warheads. Crews need to train and relax. Much training cannot be done on an operational sub, simulators or training subs might be used - see this http://www.pigboats.com/bg/bluegold.html for more info. P

. do u hav any idea why don't they just do some underwater fishing to solve that? ;)"

Since the mid nineteenth century foraging (living off the land or even sea) by the military has become quite rare due to the availability of compact rations, particularly in tins. Logistic systems can now cope. Modern militaary also use a division of labour to maximise the effctiveness of the minority (about 10%) on the front line. :P

Subs are about the least likely unit to forage due to the need to remain submerged - need to remain stealthy, and the stringent manpower availability. Fishing is also labor  time intensive and only preduces protein. Would take about half the crew to suspend all activity to catch, scale, clean and can the fish...P

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Invalid said February 01, 2011 6:40:00 PM
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Hi Pete

Thanks for the clarification. Unless the sensors density is too high, they may not be able to distinctly identify submarines from the container traffic. I think computer software and hardware would filter out commercial ship sounds The Hunt for the Red October is reputedly realistic in parts - such as the sonarman equipment and capabilities.

Does China / India have any ally around the Malacca Straits ? None of them have to an extent we can say that India had Singapore as an ally. Due to effective diplomacy of India, Singapore is not seeing India as an enemy and not as an ally too. Intelligence alliances can occur between strategic and economic competitors. Much happens quietly with the public unaware. I mention Singapore due to intuition that it and India (and Israel for that matter) all are threated be actual or pential Muslim threats, all have able, high tech submarine services to track "enemy" submarines and ships. Singapore also participated in MALABAR 2007 http://en.wikipedia.org/wiki/MALABAR_Naval_Exercise This exercise was hosted by India and it was a thinly disguised containment of China activity. :P

I always wonder why can't submarines propeller blade change its shapes slightly some might change or the cylinder shroud may change position (with lose in efficiency ofcourse) so that its broadband noise & cavitation noise signature can vary. The propellers are frequently kept from public view because photography may reveal alot including likely acoustic characteristics (including excess cavitation noise likelihood). Even the way propellers are made "milled" is often secret. :P

Invalid said Hi PointSingularity86,

You don't have to go near Nicobar Islands after you exit from Malacca strait. Ships can hug coastlines of Malaysia, Thailand & Burma. After they reach Burma, they can move into Bay of Bengal and then to Indian Ocean."

May 8, 2012

Nerpa Nuclear Submarine Almost, Nearly, in Indian hands

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Strategypage December 30, 2009, has written a well rounded report on India's new Nerpa/Chakra (Akula II) submarine. "Chakra" can be translated as "spinning wheel like weapon" or "force centre" :
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"Cursed Boat Heading For India - December 30, 2009: The Russian Akula II SSN (nuclear attack submarine) Nerpa, built for India, has finally completed its sea trials and was accepted into Russian service. But this will be temporary, as India is supposed to take possession in five months.
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The Indian crew for the sub has been ready for over a year now, Most of the delay arose 13 months ago, when, while undergoing sea trials, there was an accidental activation of the fire extinguisher system. This killed twenty sailors and civilians, and injured more than twenty. There were 208 people aboard the sub at the time, most of them navy and shipyard personnel there to closely monitor all aspects of the sub as it made its first dives and other maneuvers. The source of the fatal accident was poor design and construction of the safety systems on the sub. This accident led to sailors and shipyard technicians being fearful of going to sea on the boat. So the sea trials were delayed, even after repairs were made.
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Once in Indian service, the Nerpa will be called the INS Chakra (the same name used by the Charlie class Russian sub India leased from 1988-91). The post-accident modifications on the Nerpa cost $65 million. The lease arrangement has India paying $178,000 a day, for ten years, for use of the sub.

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The 7,000 ton Akula IIs requires a crew of 51 highly trained sailors. It was Indian money that enabled Russia to complete construction on at least two Akulas. These boats were less than half finished at the end of the Cold War. This was another aftereffect of the collapse of the Soviet Union. Several major shipbuilding projects were basically put on hold (which still cost a lot of money), in the hopes that something would turn up. In this case, it was Indians with lots of cash. The Indian crew was, apparently, to take possession of the INS Chakra last Summer [July 2009], and take it back to India. But this won't happen until May.

Traditionally, when a new ship losses lots of people during sea trials, it is regarded as "cursed" and unlucky. Sailors can be a superstitious, especially when there are dead bodies involved. It's not known if India will have any problems with this."

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Comment

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Not only will Nerpa/Chakra be a new addition to the Indian Navy and training platform it will also provide an opportunity to transfer technology and operational lessons to India's indigenous Arihant submarine project. The Arihant was launched in 2009. As reported in this blog, four more submarines (perhaps two more SSNs and two larger SSBNs) in the Arihant Class (or having some commonlaity with the Arihant) may be launched by 2020.
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The extreme expense that India has gone to in financing completion of two Russian Akula IIs (Nerpa and another) followed by the high expected daily lease cost for a 10 year period reinforces the technology transfer expectation of this project.
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Pete

July 28, 2009

INS Arihant Launched July 26, 2009

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The most complete photo(?) image (above) of Arihant to date. Courtesy of India Today.
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The slide (above) depicts insides of the Arihant. It is from an Indian Department of Atomic Energy (DAE) powerpoint presentation reproduced by Indian NDTV and other media outlets.

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Though launched on July 26, 2009 the complete shape of Arihant still appears to be classified (based on the heavy restrictions on photos permitted).
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There has been much speculation over the last two years about the size and design of India's Advanced Technology Vessel (ATV) nuclear sub program. Now the "launching" of the Arihant indicates that the weapons fit is as expected (K-15 then Agni III (K-4)). Early reports were of a Russian Charlie sized ATV 4 - 5,000+ tons. Puzzling and perhaps a pointer to the smaller vessel (for 3 vessels at least) was the 80 MW reactor reported all along. As it turns out India is planning to buld three Arihant Class then two larger SSBNs (carrying 12 Agni IIIs?) perhaps of the Akula II size?. So all in all I suspect our theories were mostly right ;)
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India's first locally built nuclear submarine (Arihant is Sanskrit for "Slayer of Enemies") was launched on July 26, 2009 at the Naval Dockyard at Visakhapatnam on India's east coast. The hull is complete. The boat is floating. The reactor will be started soon - Indian sources report. The Indian Navy is being rather cautious with their new boat. One report claims the Navy didn't want a media launch but were overruled by the Prime Minister's Office since the PM was under attack for perceived concessions to Pakistan and needed to burnish his national security credentials.
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The media were not allowed to take photos and they only saw Arihant after it was floated (thus hiding a good portion of the hull (sonar, prop ?) under water. Arihant is being built in a semi enclosed dock to keep it out of view of overhead satellites.
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The submarine is 110 meter long with an eventual crew of 70-100 men. For its first 3 years of trials 10-20 technicians (mainly Indians but some Russians) are likely to be onboard.
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Once designated the ATV, INS Arihant is the lead vessel of the class. The second and third submarines of the Arihant Class are due to be launched in 2010 and 2011. The three submarines of the class may be in commission with the Indian Navy by 2015-18.
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Development
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The ATV project started with the intent to design nuclear-powered fast attack submarines (SSNs). As nuclear armed nations placed greater reliance on the sea leg (SSBNs) of the nuclear triad and less on the more vulnerable air (bombers) and land legs (fixed silos and mobile launchers) India altered the course of the project towards producing SSBNs.
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The Plutonium Recyling Project (PRP) at the Indira Gandhi Centre for Atomic Research (IGCAR) Kalpakkam was a cover name behind which BARC, a facility of the Department of Atomic Energy (DAE), built India’s first indigenous submarine Pressurised Water Reactor (PWR). This submarine reactor is in the so called "half boat" hull DAE built for testing prior to building the actual submarine (the Arihant) with an identical reactor. Both the land-test and reactor fitted in Arihant generate around 80 MW, powered by 40% enriched uranium. The relatively low HEU of 40% suggests regular refueling (every 10 years?) might be necessary. The Rare Materials Project (RMP) at Ratnahalli near Mysore, another DAE facility, produced the enriched uranium.
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The initial version of the land-test reactor ran into technical obstacles and delay after which Russian help was sought to resolve the design glitches during the early 2000s. Significantly Indian Prime Minister Singh at the July 26, 2009, launch thanked “our Russian friends for their consistent and invaluable cooperation, which symbolises the close strategic partnership that we enjoy with Russia”.
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The hulls for this class are built by L&T's Hazira shipbuilding facility in the state of Gujarat, northwestern India. . Tata Power built the control systems for the submarine. The systems for the steam turbine integrated with the PWR are supplied by Walchandnagar Industries.
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Future Weapons Fit
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The Arihant class may possibly be first armed with the BrahMos supersonic cruise missile but more likely it will have 4 tubes, each holding 3 x K-15 "Sagarika" SLBMs, see LAUNCHING PLATFORMS FOR PROJECT K-15 - so the Arihant may first field 12 K-15s. Then eventually one "K-X" SLBM per tube. The K-X is a version under development of the Agni-III IRBM. (hereinafter called the naval Agni III) - so four naval Agni IIIs per Arihant sub.
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The K-15s will be fired from under water. After the cold launch phase a booster will kick with one or more stages raising it to a 20 km altitude followed by a parabolic path to a target up to 750km distant. The K-15 missiles, developed by the DRDO, are already under production. The DRDO has test-fired them several times from submerged pontoons off the coast of Visakhapatnam. They can carry both conventional and nuclear warheads. They are 10.4 metres tall and weigh 6.3 tonnes each. Their warheads weigh about a 1,000 kg.

The 750 km range K-15 is an interim weapon (vastly shorter range, less throw weight than the Chinese SLBM JL-2) on the way to the naval Agni III). It is the naval Agni III which may be equivalent to the JL-2 but an Arihant will only have 4 naval Agni IIIs.
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This unique ability of a nuclear submarine to completely conceal itself underwater for up to 6 months will make it the most potent leg in in the nuclear triad. This is especially important given India's declared (though to date theoretical) no-first-use nuclear doctrine (which apparently does not apply to Pakistan). The nuclear submarine will provide a lethal second-strike capability to retaliate against a conceivable first preemptive strike by an enemy (mainly China).
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The Arihant class hull features twin flank-array sonars and Rafael broadband expendable anti-torpedo countermeasures.
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After launching of the 3 Arihant Class subs Indian planners envisage development of two SSBN size submarines - probably of similar size (12,000 ton) and design to the Akula II that India is due to lease from Russia early next year.
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Why has Arihant been officially unveiled now, in such an incomplete condition? Perhaps due to:

- national pride

- the Navy had to show it was getting somewhere. The need of the Indian Navy and weapons development organisations to show the public and politicians where the huge amount of development money, man hours and other resources have gone. Although the submarines were first envisaged in the 1970s ongoing problems, mainly with the reactor, have lead to delays.

- the Indian PM was under attack for perceived concessions to Pakistan and needed to burnish his national security credentials.

- a means of indicating great power status. Only the five permanent members of the UN Security Council (P5) have been able (or permitted) to develop and build nuclear submarines - that is the United States, RussiaFranceBritainChina. India has now forced its way into the nuclear sub owning club on the way to its broader campaign of achieving (P6) membership.

- the India-U.S. nuclear deal represents de facto recognition of India’s nuclear weapons program. This makes the unveiling at this time of a nuclear submarine that will be nuclear armed less politically sensitive.

- probably the most important reason to unveil now is to give the appearance of keeping up with China - to a limited extent. Arihant is a clear sign that India is looking to meet the future regional naval threat from China. The Chinese fleet of 62 submarines, with at least 10 of them nuclear-powered, is on the way to fielding the new JL-2 SLBM.
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The Chinese JL-2 missile has a strike range of over 7,200 km. When fired by Jin SSBNs from protected Chinese waters (the Jins need protection from highly active US anti-submarine forces) a JL-2 is capable of reaching India and Australia (including Perth and Brisbane). The required range would be 12,000 km to hit the continental US from Chinese protected waters around the SSBN base at Sanya, on Hainan Island, China.
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Some Extra Points
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It seems the DAE ran a facility called "Plutonium Recycling Project" that had nothing to do with Plutonium or recycling. With the Arihant launch, they threw open the doors of a facility restricted even to other DAE scientists and let the media take photos. They toured the "half boat" reactor and interviewed Anil Kakodar who stated they were able to build reactors to power future aircraft carriers if the Indian government so requested.
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The sub design is interesting. Nothing like the Charlie class. In the early 90s, India built two German HDW209 subs at Mazagon docks in Bombay and studied plans for the Project 75 Scorpenes. I think they learned quite a lot from those western boats. There is also a Russian Kilo that has been undergoing mid life refit for half a decade just meters away from the facility where the ATV was assembled. It has been literally cut open. Some speculate that the delay in refit was actually for training ATV-Arihant workmen.
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The limber slots and sail mounted planes don't look anything like the Akula (of the coming Nerpa/Chakra). Yet the Russian Ambassador to India stated in an interview that the ATV is based on the Akula:
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A high percentage of Indian arms equipment still has a high Russian content - with Arihant benefitting from Indian access to Western sub technology and those 140 Russian consultants.
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There is still the Agni SLBM version to be produced and the matter of its range. Given that India has been producing large diameter solid rockets (for its civilian space programme) for a lot longer than China, we may see this missile gap also close.
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Charting the development of the Arihant Class, particularly its reactor(s) and armament, is an ongoing process. More posts will follow.
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Pete