Chapter 104, Stellar Thermal Imbalance Problem
At first, the giant planetary spacecraft has been flying at a high speed, and then getting closer and closer to the star, the speed will slowly decrease, and only after docking into a suitable stellar orbit will it consider stopping to slow down, and then it can plunder the resources on the surface of the star.
High-speed moving objects, it is difficult to approach the star, the star is a burning fireball, you must know that the rocket jet flame, have great thrust, and the energy released by the star burning, will be even more huge, its thrust is also very huge, any material close to it, in the case of high-speed operation, will be pushed away, it is difficult to get close to the star, and only after reducing its own speed to a certain extent, under the huge gravitational pull of the star, it is possible to slowly approach the star.
Thermal radiation has a thrust, that is, the area far away from the star, as long as there is light, there will be a solar sail effect, but their thrust will be determined according to the strength of the thermal radiation, there is no doubt that in the position very close to the star, the effect of the solar sail will be extremely strong, the solar sail effect and the gravitational pull of the star, will form an increase or decrease to offset the effect, and can affect the matter to fall into the star, only the matter itself decelerates, can do this.
In order to reduce the speed, the giant planetary spacecraft wasted a lot of resources to be realized, more than ten years later, it was parked into the low earth orbit of the star, orbiting the star at a lower speed, and the thermal radiation of the star was reflected by the reflective material of the giant planetary spacecraft, and part of the residual thermal radiation was also absorbed by the thermal insulation material, and after a series of adjustments, the giant planetary spacecraft completed the tidal lock, and its own side will always face the star, and this side will extend out of the super huge straw, Sucking the material on the star, under the combination of the huge gravitational pull and the huge suction force of the straw itself, it completes the plundering of the material on the surface of the star.
On the sunny side, the ultra-long and huge heat sink is quickly extended, which can effectively remove the heat of the giant planetary spacecraft itself, and will play a good role in heat dissipation and cooling.
There is simply no shortage of energy here, and a massive surplus of energy is the problem that needs to be solved urgently. Because it is too close to the star, and the large-scale plundering of the star, there will be a surplus of heat, and the ultra-long and huge heat sink alone is of course far from enough, and it is not an exaggeration to say that it is a drop in the bucket.
What to do?
Only the looted high-temperature materials can be effectively mined by teleporting them to the unexpected area of the Kuiper Belt through the internal teleportation array, and using the ultra-low temperature environment over there to cool these high-temperature materials.
This is another transformation, the teleportation array of the giant planetary spaceship is connected with the giant straw, and the use of magnetic restraint and other measures for thermal insulation, the other side of the teleportation and receiving port, is set up as a self-movable teleportation array, these teleportation arrays are installed at the tail end of the asteroid spacecraft, and then the asteroid spacecraft has been driving, so that the high-temperature materials ejected from the teleportation array are naturally cooled behind, and the asteroid spacecraft is just like that on the periphery of the Kuiper belt, orbiting the stars, Its tail is followed by the high-temperature material that has just been ejected, after a long time of natural cooling, it will become solid, and finally form an infinite solid matter curve, at the back end of this material curve, there will be a large number of spaceships over there to capture the material, after the full load, it will travel to the nearby teleportation array, through these teleportation arrays, teleported to the inside of the giant planetary spaceship, and then carry out some series of sorting, smelting, storage and manufacturing, etc.
This process is indeed very troublesome, but if you want the material of the star, you can only do this, there is no other more effective way, under such a stellar plunder strategy, after the material can be obtained in large quantities, the speed of development has entered the fast lane.
This kind of stellar predatory behavior is no problem in a short period of time, but it continues like this, the reduction of stellar matter, its mass decreases, the star's own gravity will also change, and its own heat balance will also change, among which the change of heat balance is the most deadly, it will make the star enter the red giant stage in advance, and after expanding to a certain critical point, it is a helium explosion, such a thing is not what Tan Qiusheng wants to see.
In order to solve the problem of temperature imbalance caused by excessive plundering of matter by stars, Tan Qiusheng can only intervene humanly, how easy is it to do such a thing?
The star is so huge, the energy generated every second is more than 150 Tsar thermonuclear weapons (each Tsar Bomba is equivalent to 50 million TNT equivalent explosion energy), and the energy that the earth gets from the sun every second is only equivalent to 5 million tons of coal, and the light energy of one day makes human beings sigh, and soon Tan Qiusheng will solve the problem of the temperature imbalance of the entire star, and the difficulty can be imagined.
If you want to make the stellar thermal imbalance, it will take a long time to plunder before it appears, which means that Tan Qiusheng still has a lot of time to prepare.
There are several ways to solve the problem:
First, throw a large number of thermonuclear weapons on the star, continue to bomb it, the problem of thermal imbalance can be solved, the disadvantage is that you need to prepare countless thermonuclear weapons, according to the calculation of dozens of large-yield thermonuclear weapons per second, it will take about 2.4 million a day, which is very troublesome, and will make the surface of the star extremely unstable, which will affect the normal plundering operation of the giant planetary spacecraft.
Second, the use of high-energy laser beams, to the star continuous heating, is to plunder the high-temperature substance, after a series of energy conversion, and then return the energy to the star, the advantage is that the high-temperature material can rely on itself to cool off, will not have a drastic impact on the star, can effectively control in the thermal equilibrium state, the disadvantage is that such a thing is very difficult to implement, there is no efficiency, complex energy conversion process, and a large number of laser beams, will occupy a lot of space, This will inevitably squeeze out the space of other facilities, such as the space for production, storage warehouses, giant straw devices, etc., and if these spaces are occupied, then the plundering and utilization of these materials will inevitably be seriously affected, which is to demolish the east wall and make up the west wall, not to mention, it is still a huge project to transform these things, and it will be extremely troublesome.
3. The improved version of the solar eclipse plan, put a large number of giant reflective lenses, orbit in the orbit of the star, and reflect the thermal radiation released by the star back to the star, as long as the number is sufficient, only 20% of the thermal radiation energy is reflected back in the early stage, so as to ensure that the heat of the star is not out of balance for a long time, and then as long as the proportion of thermal radiation reflection is gradually increased.
When the mass of the star shrinks to a certain extent, due to the lack of its own gravity and heat, it will not be able to produce nuclear fusion on its own, and it will degenerate into a gas giant at that time, and then there will be no need to mine it so much.
There are no obvious disadvantages of this plan, there are many advantages, the process is simple, it can be mass-produced, it is very material-saving, and the thermal balance adjustment of the star is very flexible, and it is not easy to make mistakes.
And this thing, there is also a very great effect, that is, it can easily change the environment, as long as a large number of the light of the stars is refracted to the battlefield area, then the focused area will mutate into a hell on earth, and the scorching environment will burn all enemies, such a cheap and practical thing, of course, can not be let go. Read the latest chapter of "Obsessive Survival Claw Book House" for free for the first time.