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Why is SpaceX not using aerospike?
SpaceX isn’t using single stage to orbit vehicles. They have a two-stage vehicle. The first stage has engines optimized for sea level external pressure, and the second stage has an engine optimized for vacuum. They don’t need aerospike engines and wouldn’t significantly benefit from them.
Why is the aerospike engine not used?
In aerospike the pressure (and temperature) of the gas remains very high all along the spike surface, and the sharp tip leaves very little room for cooling systems. You have a lot of extra-hot, very dense gas in contact with the narrow spike that must pass all the coolant and dissipate the heat somehow, not to melt.
Is aerospike engine better?
Advantages and Disadvantages of Using an Aerospike Nozzle: The aerospike nozzle has 90\% overall better performance than the conventional bell shaped nozzle. The efficiency at low altitudes is much higher because the atmospheric pressure restricts the expansion of the exhaust gas.
Does SpaceX use Aerospikes?
Mr Dodd then asked why the team chose not to use aerospike, a type of rocket engine that maintains its aerodynamic efficiency across a wide range of altitudes, while using 25 to 30 percent less fuel. However, Musk had a surprising response.
How do Rockets not melt?
How are rocket engine nozzles able to survive very high temperatures without melting? The temperature of the gaseous products exiting from the nozzle is higher than the melting point of the nozzle material.
Why are rocket nozzles bell shaped?
The bell-shaped or contour nozzle is probably the most commonly used shaped rocket engine nozzle. The bell or contour shape is designed to impart a large angle expansion for the gases right after the throat. The nozzle is then curved back in to give a nearly straight flow of gas out the nozzle opening.
Who invented the aerospike engine?
Rocketdyne Propulsion &
The aerospike engine is being developed from groundwork laid in the 1960s and 1970s by the Rocketdyne Propulsion & Power unit of The Boeing Company in Canoga Park, Calif.
How do engines cool in space?
Regenerative cooling, in the context of rocket engine design, is a configuration in which some or all of the propellant is passed through tubes, channels, or in a jacket around the combustion chamber or nozzle to cool the engine. This is effective because the propellents are often cryogenic.
How does a de Laval nozzle work?
The gas flow through a de Laval nozzle is isentropic (gas entropy is nearly constant). As the gas exits the throat the increase in area allows for it to undergo a Joule-Thompson expansion wherein the gas expands at supersonic speeds from high to low pressure pushing the velocity of the mass flow beyond sonic speed.
Why don’t we use aerospike engines in modern rockets?
That means short test runs of aerospike engines, proving all the benefits, are perfectly viable – but the experimental rigs are shut down before they could overheat and suffer critical damage. They just couldn’t run continuously for as long as a typical rocket needs to lift payload to orbit.
What is an aerospike and how does it work?
This is what an aerospike does, and it uses the pressure of the air surrounding it to have the same effect as the bell of a traditional rocket engine. The two main types of aerospikes which have been developed are the annular or round ones and the linear or straight ones. The round ones are where they get their name from.
What is a Rocketdyne aerospike?
As a follow-on to the successful J-2 engine that was used on the Saturn 3rd stage, Rocketdyne set about developing and building both the toroidal and linear aerospikes using the turbopumps and engine infrastructure of the J-2. One of the biggest problems with aerospike engines is the cooling of the spike.
Why did NASA cancel the aerospike program?
The NASA funded aerospike research was cancelled for reasons that didn’t have much to do with the aerospikes itself, but that boil down to political choices and technical issues with other parts of the projects they were part of. One aerospike engine would have been an upgrade to the Saturn V, another one was for the Venture Star.