According to foreign media reports, scientists contemplate that in the future journey to Mars, a high-tech spacecraft will be used, adopting a series of “nuclear hockey†type advances, and the nuclear nucleus will be impacted by magnetic pulses and in a hockey-like manner. In a special structure. Currently, the team of physicists from the University of Alabama in Huntsville will soon deliver a new high-tech system and call it Z-pinch. Structurally, it appears to be "light", and it can be thought of as working like a star's "heart."
A "hockey" type magnetic pulsed engine spacecraft designed by scientists.
According to Dr. Jason Cassibry, associate professor of engineering at the University of Alabama-Huntsville campus, "We are currently working hard to develop a small, lightweight pulsed fusion system that will be used in deep space in the future. Detection and other tasks. If this device is placed on a spacecraft flying to Mars, then it only takes six to eight weeks to reach Mars instead of six to eight months.†Kaxi Burley and his research The team plans to create a reaction device that resembles the shape of hockey and converts lithium and hydrogen nucleus into a final mass of purified energy.
There is a small device that is only two inches wide and one inch thick. The overall size is less than three inches. The device is made of lithium barium (LH2), the lightest metal element. The nuclear fusion reaction is the reaction process of the sun's core position. It is a process in which four helium cores combine to form a helium nucleus and release energy. Experiments at the Department of Engineering at the University of Alabama at Huntsville will open this cycle and control nuclear collisions with extremely high precision.
In order to co-ordinate the relevant meetings of the experiment, scientists from the University of Alabama's Huntsville Department of Engineering, Boeing, NASA Marshall Space Flight Center, and a growing number of other participants will open the "Tenth Module No. 2 "The machine power generator, the DM2, and the L3 communication pulse power supply will be designed using the US Department of Defense weapon test program in Tarahoe in the 1990s. The "Ten-decade Module No. 2" generator will be relocated to the Redstone Arsenal this summer. This is where NASA will build rockets and satellites. Like a photographer's flashlight, the "Tenix Module No. 2" power generator includes a capacitive device that stores charge and releases it to form a plasma.
When passing through the current, a compressed plasma magnetic field is generated, which is the Z-pinch effect. According to Jason Casbury, an associate professor of engineering at the University of Alabama at Huntsville, the energy generated is equivalent to 20% of the world's total energy output. It is not only of great energy but also of small size. More than your finger size. But such a powerful energy can only last for a very short time, only 100 billionths of a second. According to scientists participating in the research, we must first test this conceptual study design, run our model and make actual measurements. The device is also unstable, such as ionized particles will take away a lot of heat It will also test whether the theory behind the magnetic pulse advancing model is valid.
Once we have a good understanding of its operating mechanism, we can apply it to the spacecraft propeller. Physicists hope that one day they will be able to use "solar energy" to produce energy through nuclear fusion. The energy engineering involved in the University of Alabama's Huntsville School of Engineering involves mainstream controlled nuclear fusion with unique design and application procedures. There are also differences between nuclear fusion devices designed in the Future Energy Project under the United States Department of Energy. Jason Casbury, associate professor of engineering at the University of Alabama at Huntsville, believes that the device will change the era of chemical rockets and we are developing a very lightweight power system.
If this research progresses continuously, a new type of device will be derived. Its working principle is to use an electromagnetic field to form a nozzle to eject the reactants, and at the same time, to capture additional divergent energy for recycling and re-enter the charging system. This is the next area in the Z pinching technology that will be solved. Its core part is the pulse engine. Like other rocket engines, it looks like a teapot. It works by converting cold matter into energy and high-temperature gas and pushing the spacecraft forward.
In the nuclear pulse engine's working process, the generated thrust is obviously insignificant compared with the power of the space shuttle's main engine. For interplanetary spacecraft hundreds of tons at a time, there seems to be no sense of thrust. But scientists believe that such a spacecraft will perform a rapid acceleration process in the Earth's orbit for several weeks and then advance towards the target planet. (Everett/Compilation)
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