Showing posts with label rail gun. Show all posts
Showing posts with label rail gun. Show all posts

Monday, December 20, 2010

Conventional War Dominance and the Railgun

Loyal Readers,

We're taking a break from the bleak world of WikiLeaks, Afghanistan, the Korean Peninsula crisis to focus on the longer-term picture of the world's superpowers. Here's why:

1) WikiLeaks will actually blow over. Sorry, Assange: one man can't bring down the Westphalian model of international relations.

2) Afghanistan will end. Whether it goes like Iraq (with a quiet, humble, half-victory) or like Vietnam (with a humiliating defeat), it won't have a long-term impact on the behavior (or, frankly, the security--terrorist attacks just aren't a serious threat to the stability of the United States, even if people die) of the major world powers.

3) The Korean Peninsula crisis won't become a war. No country in the mix (Russia, China, North Korea, South Korea, the US, or Japan) can actually gain from the measure, and North Korea knows it won't have Chinese support, and would thus get rolled over quickly. As unpredictable as North Korea is, it's not suicidal.

Anyway, now that you're not worried about any of that anymore, I want to think about the future--the control of the world as we know it, who will hold the reins, and how.

So we'll start out small: let's talk Railguns. My first caveat is that railguns will be horrifyingly expensive for a while, at least until one finds a way to fire a railgun projectile without destroying the rail itself (keep up the good work, engineers!). Some pretty awesome technological/business developments have been afoot (I won't repeat these narratives here).

A quick technical recap (longer, more exciting technical recap by Anton here): Railguns use magnets to launch projectiles at hypervelocity (Mach 7.5 or so). The projectiles have no explosives; the kinetic impact does the damage. Direct fire will lead to a near-instant kill; indirect fire allows travel of a few hundred miles in a few short minutes (the delay being due to the projectile lifting to about 500,000 ft to avoid air drag).

Expensive as they are, they're going to change the future of warfare, in a few ways that we should think about:

1) Even when we start killing each other in space, control of the oceans will remain the ultimate factor in geopolitical strength. When one controls the oceans, one controls international trade and transport. The US currently effectively controls international waters approximately everywhere (rare exceptions include areas near China), and will continue to do so. Russia and China are its biggest competitors for regional waters in the Pacific, but they are not positioned to control the Atlantic, and will end up competing against each other for control over the Pacific (where the US will continue to keep key alliances in South Korea, Japan, and the Philippines that allow it to project significant power in the area).

2) The United States will be "in the lead" in this technology, by a significant margin. Russia and China are not yet (at least to my knowledge) doing any serious work here. Russia has the pesky "Moskito," a powerful anti-ship weapon, but it fires at slower speeds and has a shorter range than a railgun (making it easier to potentially knock out of the sky).

3) Railguns are ultimately offensive weapons. Many weapons on modern US vessels are "defensive," in that they can be launched second and still be effective (modern jet fighter, AEGIS systems, etc). The railgun would win a naval battle with a coordinated first-strike; firing first means the engagement is over early, and firing second would probably just mean mutual destruction. The incentive with a railgun is to fire it first, rather than wait--thus the "offensive" descriptor.

The result of all this is that the world will likely remain relatively US-centric for some time, as it continues to control the seas. But it also means that there will be a new, natural instability in great power confrontations. For indeed, if the first shooter should win (or, at least, if the second shooter should suffer massive losses), then trigger fingers tend to get itchier.

The best example of this is World War I. Europe thought it has offensive technology (it didn't, but that's another story), and thus rushed to mobilize and press forward during a crisis that could have otherwise been spun down. In contrast, in World War II, Europe thought it had defensive technology (except the Germans, who realized otherwise), and thus cautiously appeased Germany while building the Maginot line.

When everybody believes they have offensive technology (they will), they're more prone to attack if they think they can win.

To be fair, China and Russia are unlikely to believe they can win against the US any time soon--the US has naval power projected everywhere and still has the military-industrial capability to start pumping out war machines at a moment's notice. The lesson of Pearl Harbor has been forgotten by no-one.

So what does it mean? If Russia and China see the world accurately, they will actually be less likely to want to confront the US on the seas, as any military confrontations with them will be likely to be even shorter and more decisive than before.

Russia will continue to focus internally and in its regional periphery for some time, trying to rebuild the military-industrial infrastructure necessary to challenge the European continent (where the US has much less military advantage). China, for its sake, will likely focus on regional power and influence, ensuring strong trade relations and security at its borders. Frankly, as much as there's a great deal of Sino-phobia out there, China has so many demographic problems building up that it will be focusing on its interior for decades as it attempts to avoid a socio-economic collapse. World Domination is not in Beijing's plans (though it may be in Moscow's).

So in the long-term, the US will remain the one power that exerts influence anywhere and everywhere, as long as it wants to. It will be able to bring powerful, high-speed offensive technology to bear in a short period, and be unchallenged in open waters. It will continue to struggle on land. It will worry about a Russian "takeover" of Europe (and eventually a German one) or a Turkish "takeover" of the Middle East, rather than Russian or Chinese challenges at sea.

There's more to this prediction than the railgun, but the railgun is the piece of technology that will push the Russians and Chinese to delay any plans to expand beyond their land influence for some time.

Saturday, February 23, 2008

Navy Acquires Experimental Rail Gun

In late January 2008, BAE Systems delivered a 32 Megajoule Laboratory Rail-Gun to the United States Navy. This spectacularly powerful weapon will eventually be capable of hitting a target the size of a car from more than 200 nautical miles away. Impact velocity will be somewhere between 7000 miles/hour to 44 000 miles/hour - 8 to 50 times the speed of sound! By comparison modern artillery weaponry can achieve a maximum projectile speed of about 3500 miles per hour. The best part is the projectile. It requires no propellant, it only weighs in at 7 pounds and, because it is basically a lump of metal, it’s cheap.

This weapon is incredibly powerful. Each shot packs more punch than a Tomahawk cruise missile.



Test firing of the 32MJ Railgun Lab Launcher.
Note the 'flames' trailing from the projectile. This is a result of the projectile traveling so fast that it essentially "burns the air", and not because there is some kind of propellant.


More after the jump.


Fearsome technical specifications aside, what are the implications of developing such a weapon? Will it have an impact (pardon the pun) on anyone besides enemies of the United States? The answer: Possibly.


Like most cutting-edge research, the real gains come from spinoff technology. Take the oft-cited moon missions from the 60's. Everything from medical imaging to ear thermometers are attributed to technology originally intended for space exploration missions. Hopefully there will be a similar result from development of the rail-gun.

Rail-guns operate by accelerating a ferro-magnetic projectile using strong magnetic fields (specifically the Lorentz force). One of the more obvious applications for this technology is launching objects into space/orbit. For decades scientists have speculated about building a large magnetic accelerator that would be capable of launching craft into space. It has the potential to drastically reduce the costs involved in sending something into orbit (like satellites, space station modules, etc). This would have many trickle down benefits for the many people like reducing communication costs, drastically decreasing transportation times for travellers (think New York to Paris in 30 minutes). Digging deeper, there is also a large amount of research being done to improve superconductors and power storage techniques (capacitors). Cheap high-temperature superconductors have thousands of potential applications: motors, fusion reactors, transformers, the list goes on.

So it can be shown that even though developing more destructive weaponry is arguably not the best thing to spend our money and time on at first blush, there are many benefits that could be had from such research. This doesn't just apply to rail-guns or weapons development in general however. Any technology that requires huge investment in resources can end up generating far more technology and beneficial results than initially expected. It should be something everyone should keep in mind when considering projects like the next moon/mars missions or the construction of the Large Hadron Collider.


More information about the rail-gun:
Details about the military's plans for the rail-gun on Military.com and Navweaps.com.

The basic theory of how a rail-gun works on Wikipedia.org.