Posted on 04/02/2006 8:09:45 AM PDT by Flavius
TEHRAN, Iran - Iran announced its second major missile test in a week, saying Sunday it has successfully fired a high-speed underwater missile capable of destroying huge warships and submarines. ADVERTISEMENT click here
The Iranian-made missile has a speed of 223 mph underwater, Gen. Ali Fadavi, deputy head of the Navy of the elite Revolutionary Guards, said.
He called it the fastest underwater missile in the world but it has the same speed as the Russian-made VA-111 Shkval, developed in 1995 and believed to be the world's fastest, three or four times faster than a torpedo.
It was not immediately known if the Iranian missile, which has not yet been named, was based on the Shkval, or if it can carry a nuclear warhead.
"It has a very powerful warhead designed to hit big submarines. Even if enemy warship sensors identify the missile, no warship can escape from this missile because of its high speed," Fadavi told state-run television.
The missile test was conducted during the third day of large-scale military maneuvers by tens of thousands of the elite Revolutionary Guards in the Persian Gulf and the Arabian Sea.
Iran on Friday test-fired the Fajr-3 missile, which can avoid radars and hit several targets simultaneously using multiple warheads. The Guards said the test was successful.
The missile tests and war games coincide with increasing tension between Iran and the West over Tehran's controversial nuclear program.
The United States and its allies believe Iran is seeking to develop nuclear weapons, but Tehran denies that, saying its program is for generating electricity.
The U.N. Security Council has demanded that Iran halt its uranium enrichment activities. But Tehran said its activities are "not reversible."
Iran launched an arms development program during its 1980-88 war with Iraq to compensate for a U.S. weapons embargo. Since 1992, Iran has produced its own tanks, armored personnel carriers, missiles and a fighter plane.
So this is what they meant by a radar evading missile.
The Kursk...
Iran's underground missiles
-1 May 1996
Mysterious tunnels being built along the coast of Iran will house long-range ballistic missiles, says a senior US commander who also reported that Iran was negotiating missile purchases with North Korea.
Back
Just a few days after their 'earthquake' eh?
Peaceful missile tests, no doubt.
Iran delinda est.
Do we really think the Iranians have developed a Skval torpedo or that the Russians have sold them one of their most modern weapon systems?
Sounds very unlikley to me, but we'll see if this will be confirmed.
Thank you Russia, can't wait for Iran to give the Checnens a nuke or too.
High-speed underwater missile ping
http://www.cbc.ca/fifth/main_armstrade.html
VA-111 Shkval underwater rocket
In 1995 it was revealed that Russia had developed an exceptionally high-speed unguided underwater missile which has no equivalent in the West. Code-named the Shkval (Squall), the new weapon travels at a velocity that would give a targeted vessel very little chance to perform evasive action. The missile has been characterized as a "revenge" weapon, which would be fired along the bearing of an incoming enemy torpedo. The Shkval may be considered a follow-on to the Russian BGT class of evasion torpedoes, which are fired in the direction of an incoming torpedo to try to force an attacking to evade (and hopefully snap the torpedo's guidance wires). The weapon was deployed in the early 1990s, and had been in service for years when the fact of its existence was disclosed.
Development begain in the 1960s, when the Research Institute NII-24 (Chief Designer Mikhail Merkulov) involved in the artillery ammunition research was instructed to launch the development of underwater high-speed missile to fight nuclear-powered submarines. On 14 May 1969, pursuant to a government resolution, NII-24 and GSKB-47 merged into the Research Institute of Applied Hydromechanics (NII PGM), which formed the basis of the present day 'Region' Scientific Production Association. Advances in the development of jet engines and fuel technologies, as well as outstanding results in the research of body motion under cavitation made it possible to design a unique missile with a dived speed much greater than that of conventional torpedoes.
When the suction on the low-pressure side of the propeller blade dips below ambient pressure [atmospheric plus hydrostatic head] the propeller blade cavitates -- a vacuum cavity forms. There is water vapor in the cavity, and the pressure is not a true vacuum, but equal to the vapor pressure of the water. High-speed propellers are often designed to operate in a fully-cavitating (supercavitating) mode. A high speed supercavitating projectile, while moving in the forward direction, rotates inside the cavity. This rotation leads to a series of impacts between the projectile tail and the cavity wall. The impacts affect the trajectory as well as the stability of motion of the projectile. The present paper discusses the in-flight dynamics of such a projectile. Despite the impacts with the cavity wall, the projectile nearly follows a straight line path. The frequency of the impacts between the projectile tail and cavity boundary increases initially, reaches a maximum, and then decreases gradually. The frequency of impacts decreases with the projectile's moment of inertia.
Apparently fired from standard 533mm torpedo tubes, Shkval has a range of about 7,500 yards. The weapon clears the tube at fifty knots, upon which its rocket fires, propelling the missile through the water at 360 kph [about 100 m/sec / 230 mph / 200-knots], three or four times as fast as conventional torpedoes. The solid-rocket propelled "torpedo" achieves high speeds by producing a high-pressure stream of bubbles from its nose and skin, which coats the torpedo in a thin layer of gas and forms a local "envelope" of supercavitating bubbles. Carrying a tactical nuclear warhead initiated by a timer, it would destroy the hostile submarine and the torpedo it fired. The Shkval high-speed underwater missile is guided by an auto-pilot rather than by a homing head as on most torpedoes.
There are no evident countermeasures to such a weapon, its employment could put adversary naval forces as a considerable disadvantage. One such scenario is a rapid attack situation wherein a sudden detection of a threat submarine is made, perhaps at relatively short range, requiring an immediate response to achieve weapon on target and to ensure survival. Apparently guidance is a problem, and the initial version of the Shkval was unguided However, the Russians have been advertising a homing version, which runs out at very high speed, then slows to search.
A prototype of the modernised "Shkval", which was exhibited at the 1995 international armaments show in Abu Dhabi, was discarded. An improved model was designed with a conventional (non-nuclear) warhead and a guided targeting system, which substantially enhances its combat effectiveness. The first tests of the modernised Shkval torpedo were held by the Russian Pacific Fleet in the spring of 1998.
The 'Region' Scientific Production Association has developed developed an export modification of the missile, 'Shkval-E'. Russia began marketing this conventionally armed version of the Shkval high-speed underwater rocket at the IDEX 99 exhibition in Abu Dhabi in early 1999. The concept of operations for this missile requires the crew of a submarine, ship or the coast guard define the target's parameters -- speed, distance and vector -- and feeds the data to the missile's automatic pilot. The missile is fired, achieves its optimum depth and switches on its engines. The missile does not have a homing warhead and follows a computer-generated program.
On 05 April 2000 the Russian Federal Security Service [FSB] in Moscow arrested an American businessman, Edmond Pope, and a Russian accomplice, on charges of stealing scientific secrets. A FSB statement said it confiscated "technical drawings of various equipment, recordings of his conversations with Russian citizens relating to their work in the Russian defense industry, and receipts for American dollars received by them." Pope, a retired US Navy captain who spent much of his career working in naval intelligence, was at the time of his arrest the head of a private security firm. On 20 April 2000 the FSB revealed that Pope had been seeking plans the Shkval underwater missile. Pope was detained during an informal contact with a Russian scientist who had participated in the Shkval's creation.
The arrest of Daniel Howard Kiely, deputy head of the Applied Research Laboratory at Pennsylvania State University, came almost simultaneously. The laboratory led by Mr. Kiely has for many years been developing torpedoes for US warships and submarines. Professor Kiely had joined Pope in Moscow to offer technical advice and determine the tasks for Pope's further activity. Kiely was interrogated as a witness. His testimony and objects confiscated during the search proved his involvement in Pope's activities. Later the 68-year-old professor was released and allowed to return to the United States.
The objective of the High-Speed Undersea Weaponry project at the US Office of Naval Research is to develop the vehicle guidance, control and maneuvering capabilities for the quick reaction weapons. High-speed weapons could offer an advantage for Anti Submarine Warfare (ASW) "close encounter" scenarios. The overall system response of a high-speed weapon for breaking off engagements with enemy submarines would be measured in seconds, rather than minutes. The High-Speed Undersea Weapons project has three tasks; Vehicle Guidance, Vehicle Control, and Test Bed Development. Vehicle Guidance deals with homing sensors, signal processing, waveform design, and autopilot commands that are used to guide (either autonomously or with external interaction) the weapon to its target. Vehicle control deals with control and maneuvering of the high-speed weapon with emphasis on stabilizing the supercavitating bubble cavity, and optimizing the flow for low drag. Technical issues include instability due to vehicle planing and tail slap, interaction between cavity with propulsion exhaust, and propulsion system transients, including startup. Test Bed Development is an ongoing effort that develops a test platform to test and evaluate S&T candidate systems such as homing systems, vehicle control, and propulsion systems.
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There are no evident countermeasures to such a weapon
I wonder what the USNavy employs as a not so evident standoff weapon?
Probably more then just one of their most modern weapon systems. That missile they also fired was probably that stealth Russian missile they talked about just over a year ago.
Why would the Iranians let us know they have it. That takes the element of surprise away. They really must think they are invincible.
About 4 1/4 miles range with a nuclear warhead? Shoot and duck! When your warhead is a nuke and the distance is 4 miles you really don't need anything this fancy.
Note to good guys: If anything Iranian gets within 10 miles, kill it.
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