Genius of the Rules-Style System

Chapter 702 Micro optical tube embedding technology

The theoretical group and the Z-wave group have a lot of work. Among them, the busiest and most stressful person is Ruan Wenye. He is the leader of the Z-wave group and has become the direct person in charge of the energy space research project.

The energy space research project will definitely become a very large project. The initial domestic investment is expected to be 5 billion, and the project scale is conservatively estimated to exceed 10 billion.

This scale is certainly not as large as a spacecraft, but the two are not the same type of project.

The spacecraft is a manufacturing project, divided into several groups, dedicated to researching core technologies, and finally manufacturing the spacecraft. The research on energy and space is a scientific research project worth more than 10 billion, which is similar to the particle collision project.

This kind of project is more academic in nature, rather than specifically used to manufacture something.

As the leader of the project team, Ruan Wenye needs to participate in a lot of work.

The first is location selection.

The project has just been demonstrated and announced to the public, so the site must be selected quickly.

The project cannot be carried out at the experimental site of the Z-wave group, mainly because of the scale problem. Many institutions will send scientific research teams. It is roughly estimated that physicists will need more than two hundred people, computer engineers, materials engineers, optical engineers, etc., and five will be needed. More than a hundred people, plus other staff, the number of people involved in the project easily exceeds a thousand.

To ensure the life and work of over a thousand top scholars and engineers, plus supplies, materials, construction supplies, etc., the minimum number of people directly covered by the project will exceed 5,000.

The scale of more than five thousand people is enough to form a small town.

Therefore, site selection is still very complicated. It is best for the site to be far away from the center of the capital, but it should not be too far for convenience.

Finally, after a series of inspections, the project location was selected as a scenic spot two hundred kilometers south of the capital. There is a small lake inside the scenic spot, surrounded by mountains on three sides, with beautiful scenery and a very good environment.

The energy space research project was decided to be carried out here. The project involves not only material transmission, but also another related large project——

Study on the physical properties of the Z-wave coverage area.

This project has been demonstrated for a long time.

Because it requires many physicists to participate in the work, requires a very large investment, and due to confidentiality issues, whether it should be open to the international community is still under discussion and has not been possible.

Now we are selecting a site to conduct energy space research, and we can also conduct research on Z-wave physical characteristics in the future. We are still very serious about investing in road construction.

Various plans were completed quickly and construction work soon began.

In addition to some necessary buildings and living facilities, the core equipment required by the main experimental site includes various types of Z-wave generators, large-scale anti-gravity equipment, single-sided anti-energy barrier devices, and a large number of detection devices.

The latter is the most expensive and troublesome, because the detection involves particle-related content.

Various tiny detection devices require targeted design, procurement, and manufacturing by top physicists.

Particle analysis requires high detection accuracy, which is basically laboratory standard, and the price is naturally not cheap.

The most depressing thing is that experiments will involve explosions, and perhaps one experiment will damage many carefully designed and manufactured devices.

Ruan Wenye felt heartbroken when he thought about it. After he got into work, he found that money was flowing like water, and many things would come to him. It was really annoying. He complained to Zhao Yi, "It will be much easier for you." .Look at me, I’ve almost broken my leg this month.”

Zhao Yi was reading the information without even raising his head. "You can also choose not to do it. For example, you can report to your superiors that you are not feeling well and let others take over the work. I believe many people are willing to come and suffer."

"——!!"

Ruan Wenye was almost vomiting blood from the shock. As the leader of the Z-wave group, he is considered the core figure in mysterious research. Even if he is really sick, he must persevere, otherwise a lot of senior people will compete for him. Rush to be the person in charge.

Tired, of course!

However, work must be done, and it is simply impossible to give up the position.

He thought for a long time and said firmly, "I am here for the development of science and technology, for the motherland and the people, and I must have the courage to sacrifice myself. I am not afraid of hardship or fatigue. Even if one day my body really breaks down, I have to stick to it too!”

"——!"

Zhao Yi finally raised his head and gave a thumbs up to Ruan Wenye.

Be aware!

No matter what you think in your heart, when you say something similar, it sounds really contagious. No wonder so many leaders——

Cough, cough!

In fact, it was reasonable for Ruan Wenye to complain to Zhao Yi. At the beginning of the project, the theory team and the Z-wave team worked together.

It was different later.

Because the theoretical team is only responsible for the experimental design work, after the design is completed, it will at most participate in the design of the detection device, and the Academy of Sciences sent a quantum physics team to accept a lot of related work.

Then, it was easy for the theory group.

Zhao Yi's job was to read the report and conduct a brief review. Qiu Chengwen, Edward Witten, and Zhang Qican simply went to do research together without worrying about the project at all.

At the same time, many international institutions are also communicating with China to discuss joining in R\u0026D work. It is very simple to say. If other institutions want to do R\u0026D together, they just need to pay money, enter, and be assigned work. They can The benefit is sharing of experimental data.

These data are very precious and will allow them to understand some contents of space theory and also include some characteristics of Z waves.

Some foreign institutions can produce Z waves through efficient excitation through anti-energy barriers, so that Z waves in a stable direction can be obtained.

This kind of excited Z wave is in its most initial state. The maximum transmission distance is no more than ten kilometers, and the Z wave efficiency is not high.

Other institutions mainly lack the underlying spatial theory, and the efficiency of research through continuous experiments is very, very low.

If they could learn more about space theory, they might be able to improve related technologies.

In fact, it is almost impossible to truly control Z waves in a short time because they still have direct theoretical gaps.

For example, magnetic field theory.

Z waves are triggered by rapid changes in the magnetic field. Many foreign scientists realize that Z waves are related to magnetic fields, but they lack spatial correlation theory and it is difficult to connect the two because it seems that magnetic fields and Z waves are completely different. It's two things.

Now that other institutions are participating in the research of the energy space project, they also hope to gain certain gains in theory and technology.

Just 'possibility' is attractive enough.

——

On this day, Zhao Yi left the Z-wave group and went to the Yixing Technology Department Building in the capital. He needed to preside over work for a period of time, mainly related to the newly formulated spacecraft export approval policy.

The high-level meeting determined the spacecraft export strategy, but in order to truly realize export, it must pass technical approval and submit detailed plans and parameters.

Previously, Yixing submitted documents related to sightseeing ships and transport ships. After a period of time, the superior department requested revisions and rejections. The main problem lies in the performance of the anti-gravity system and space link equipment.

This time, the superior department made three clear regulations. One is that for export flight devices, the maximum performance parameters of the anti-gravity system cannot exceed 95%.

The second is the carrying tonnage of the transport ship, which cannot exceed 350 tons.

The last one is the space link equipment. The performance can only be one level higher than the normal civilian standard for sale. Otherwise, the space technology information company will not be allowed to manufacture the corresponding parts for sale.

Under the three detailed parameters, the spacecraft exported by Yixing needs to be redesigned.

Zhao Yi came to the technology department building and summoned all the people in charge to conduct an internal technical meeting to adjust the direction of the design based on various parameter restrictions.

The design adjustments related to participation are still simple, except that the corresponding technical standards are lowered and the spacecraft is slightly smaller.

Another problem that is a headache is establishing perfect security.

Whether it is a spaceship for export or for personal use, a complete safety system must be established. The safety requirements of superiors are much higher than those of civilian aircraft.

This is mainly because of the spacecraft. If something goes wrong, it will be a very large accident.

Regarding safety performance issues, the technical department held meetings for three consecutive days and finally came up with a complete plan.

One is a plan to ensure safety when the anti-gravity system fails within a range of thirty kilometers from the earth's surface, which is to add four large solid fuel thrusters below.

When the anti-gravity system fails, the large solid fuel thrusters will operate, consuming a large amount of fuel to ensure the vertical landing of the spacecraft.

In addition, the hanging parachute design is also a matching measure for safe landing.

The last step is to build a huge "emergency rescue spacecraft". If any spacecraft encounters a problem in space, the "emergency rescue spacecraft" can be used to provide immediate and rapid rescue.

NASA has built a new "rescue spacecraft" whose technology is comparable to the Mars-1 spacecraft, or even more advanced.

Yixing also wants to build its own 'rescue spacecraft' without relying on NASA for support.

After making detailed technical planning, Yixing submitted the design plan again.

This time, the upper management held a meeting to discuss and invited several expert teams to conduct detailed demonstrations and determined that there was no possibility of technical leakage. At the same time, safety was guaranteed and export standards were met.

The Y-101 sightseeing ship designed by Yixing was the first spacecraft to obtain export approval.

After receiving the export approval documents, the company immediately announced the news and began accepting orders from all over the world.

Spaceships are different from ordinary cars, but similar to civilian aircraft. Because the manufacturing of each spacecraft involves a large amount of capital investment, there is no need to manufacture it first. Instead, after receiving the order, the corresponding spacecraft will be developed. manufacture.

After the news was released, Yixing received a large number of inquiries. It was not until more than a week later that the company released the parameters and price of the Y-101 sightseeing boat -

The Y-101 sightseeing spacecraft can carry up to 191 passengers and carry a maximum load of 217 tons. It can ascend to 200 kilometers of space in 97 minutes at the fastest, and the maximum speed around the earth is 3.8 kilometers per second.

Reference selling price: 18 billion yuan.

After the detailed parameters and selling price of the Y-101 sightseeing spacecraft were released, more companies came to inquire.

Eighteen billion yuan sounds like a very astonishing number. Funds exceeding 10 billion yuan are not easy to come up with, but compared to developing the space tourism market, funds exceeding 10 billion yuan are nothing.

But if you want to confirm your order for the Y-101 spacecraft, you need to know a lot of other information.

For example, maintenance costs.

The most important reason why space travel is expensive is that many parts are not reusable, which will bring very high maintenance costs.

The maintenance cost of the Y-101 spacecraft is not low. Every time it goes to space and returns, it requires more than two million in maintenance fees.

This is very expensive.

As long as there are no problems with the spacecraft and no parts need to be replaced, it will cost at least two million yuan. The most important loss is the compressed material coating on the surface of the spacecraft.

This coating ensures that the spacecraft is not affected by cosmic rays, solar magnetic field storms, radiation, etc.

Yixing ordered the corresponding layer materials from the High-Level Compressed Materials Company. Each spacecraft also costs more than 200,000 yuan. Because it involves corresponding patent issues, the patent rights belong to Yixing Company and the space agency. High-rise compressed materials A company cannot sell alone.

If you want to resell the coating material to other companies, you must make a certain profit. Taking into account the patent fees, losses during the process, labor and other issues, the price of more than one million is actually far from expensive.

For example, in the automotive industry, 4S stores may charge thousands of yuan for car painting materials, and the corresponding costs are very low.

The maintenance and upkeep of spacecraft is also one of the future profit directions of Yixing Technology.

After working in Yixing's technical department building for more than two weeks and solving the issue of export technical standards, Zhao Yi did not return to the Z-wave experimental group, but traveled more than a thousand kilometers to Xinhui Optoelectronics Group Company.

Xinhui Optoelectronics is one of the companies that Zhao Yi mainly acquired shares.

In recent years, with the development of the latest technology, Xinhui Optoelectronics has been developing very well and has become one of the world's top manufacturers of photovoltaic tubes and optical equipment. They have also cooperated with various laboratories and invested a lot of money in research and development. superior.

Recently, Xinhui Optoelectronics announced a piece of research and development news, which caused the company's stock price to rise again——

Xinhui Optoelectronics, in conjunction with the Microvibration and Optics Laboratory and the Nanotechnology Research Center of Country D, jointly conquered the micro-optical tube embedding technology and greatly improved the technology.

"Using nano-optical technology, we can embed more than a hundred co-directional optical channels on a surface the size of a disc."

The optical path pipeline is a pipeline that can transmit and change the route of light beams, while the energy loss is very small or even negligible.

One hundred optical channels are embedded in a disc-sized surface, and the technology is more than five times better than before.

Previously, the satellite optical channel technology used by Space Information Technology Company could embed up to seventeen optical channels on a disc-sized surface, thereby creating the smallest space link equipment with a diameter of only about 20 centimeters.

If new technology is used, the smallest space link device can be produced, which can even be reduced to less than five centimeters in diameter.

Such a tiny device can be placed directly in a mobile phone. This shows how important it is to improve the micro-optical tube embedding technology.

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