The cooling system, the cooling module... these will be the key areas for improvement. When all the personnel are available, Wu Tong will deploy them, and a dedicated person will be responsible for the research and development. She will optimize the derivation according to the situation, which can save a lot of effort. , it is also a matter of gathering the strength of everyone to tackle the hard problem of controllable nuclear fusion.
Including the following "tritium recovery and deuterium-tritium fuel supply in plasma exhaust gas" and "tritium safe containment", these have a certain research and development foundation in China. In the hands of the people recruited this time, the great power of these topics is in Invited to dispatch.
Once the higher-ups make up their minds and devote all their efforts to do something, all obstacles will be wiped out. The power directly mobilized by the higher-ups and truly putting all their efforts into doing it will be an unstoppable force with thousands of troops. Sloping down.
Recently, Zhu Zhechi has done a lot of projects and has been studying with experienced seniors for a long time. Wu Tong is already very experienced in how to plan and arrange, and can be regarded as a good project leader.
Thanks to Cap's trust in giving her the identity of the person in charge and chief designer of this large-scale scientific research project, Wu Tong was not necessarily trembling with fear, but he was definitely asking for R&D and being polite.
Regarding how to break through the technical difficulties of controllable nuclear fusion and design a controllable fusion reaction demonstration reactor project, she already had a comprehensive blueprint when reporting to her superiors. Now, together, we are working hard to realize this grand blueprint. With.
Wu Tong has never felt that she is the only capable person in the world. Professional things are left to professionals. She controls the core, strives for excellence, and breaks through the biggest difficulties that ordinary people face. She focuses on the big and lets go of the small. These experiences in management and operation of projects , Wu Tong is a good student and naturally learns well.
She alone cannot realize the blueprint of the fusion reaction demonstration reactor. It is common sense to follow the wise experience of her ancestors and unite all the forces that can be short-circuited. Wu Tong has always known that when everyone adds fuel, the flames will rise. She never planned to overcome all the technical difficulties by herself. She was a human being, not a god. With so many technical sections, waiting for her to learn one by one and break through one by one, the day lily would be cold.
There is a method for reasonable acceleration, why not use it?Professional foreign aid should be used rationally without being disrespectful or embarrassing.
Therefore, Wu Tong’s plan is to split this huge topic into small professional topics, and then assign them to suitable candidates. Those difficult-to-solve parts will be separated out separately, and she will take the lead and concentrate her efforts to solve them. .For example, there is currently no better first-wall material in the world.
After trying it from multiple angles and getting stuck for a few days, Wu Tong came up with a new idea. If the neutron beam couldn't be blocked, why not consider letting them go?Then, through certain means, the neutrons generated in the DT fusion reaction are recovered. Of course, this will inevitably once again form a key part of the entire nuclear fusion reactor technology.
But after all, the price of tritium resources is more than tens of thousands of times that of deuterium. Not only does it cost per gram, but it costs tens of thousands of dollars. Their resources are limited and cannot be wasted. They are diligent and thrifty, which is a traditional Chinese virtue!
This idea seemed to have opened up the two channels of Ren and Du. Wu Tong instantly seemed to be looking down from a higher angle, with clear and sensitive thinking. New derivation designs were presented one by one in Wu Tong's writing.
The neutron helium ash recovery system can shuttle through the restorative first wall material... Each unique design technology title was detailed in Wu Tong's notebook, and then turned into a continuous deduction on the draft paper.
It is impossible to let go of the neutron, and you must keep it no matter what.If the neutrons generated by the reaction cannot be recovered, not only will it cause a large amount of energy loss, but it will also cause the reactor to "shut down" due to the loss of tritium.
In an ideal fusion reactor, both tritium and neutrons should be preserved as intermediate products, and the final waste produced is only helium and heat.Letting them go does not mean letting them go.
Wu Tong theoretically and technically tried to design the structure of the first wall in many ways to make it possible to avoid the impact of the neutron beam. However, from many angles, they could not avoid the damage to the metal bonds. The most important thing about this was that The root cause is actually based on the poor self-healing ability of metal bonds, and there are also hard-to-solve transmutation problems.
In the end, Wu Tong set his sights on metal materials and determined the final research and development direction, with the carbon material graphene as the dominant one. The stability of the carbon material and the special porous structure of the graphene material were Wu Tong's preferred starting points.
Wu Tong thought about it, and she planned to develop and design a new material. The first wall was set up to allow neutrons to pass through and had a stronger self-healing ability than the basic material. Then liquid lithium was used behind the first wall to recover neutrons.As for the other side of the liquid lithium, it is coated with a layer of directional metal to reflect neutrons that penetrate the liquid lithium layer without reacting.
This design is equivalent to sandwiching liquid lithium between the first wall and the directional metal to form a special sandwich design. Each link is combined with a cooling system and other technical support to finally achieve an ideal solution. .
In order to achieve this kind of project proposal, the requirements for the first wall material have changed from a new perspective based on extreme high temperature resistance and neutron impact radiation resistance.It still needs to be resistant to high temperatures, but the perspective of neutron impact radiation changes from complete resistance to transmission.
The pure carbon material graphene is not enough to withstand such severe high temperatures, what about the combination?What material elements can be combined to maintain the porous and shuttling effect of graphene materials, while also having sufficient ductility and repairability?
Question after question is thrown in Wu Tong's mind, colliding with Wu Tong's knowledge reserve and scientific research imagination. As of now, it can be said that Wu Tong's research has entered an unknown field, and this also means that, There is no previous experience to refer to.What to do next and how to solve these problems all depend on Wu Tong himself to think, define and design.
On the basis that metal materials are unreliable, non-metallic materials have become the focus of Wu Tong's attention. It was at this time that ceramic base came into use in front of Wu Tong.
Ceramic matrix composite materials are a type of composite materials that use ceramic as a matrix and are compounded with various fibers.
The ceramic substrate can be high-temperature structural ceramics such as silicon nitride and silicon carbide.These advanced ceramics have excellent properties such as high temperature resistance, high strength and stiffness, relatively light weight, and corrosion resistance. However, their fatal weakness is their brittleness. When under stress, they will crack or even break, leading to material failure.
The use of high-strength, high-elastic fiber and matrix composite is an effective method to improve the toughness and reliability of ceramics.
Including the following "tritium recovery and deuterium-tritium fuel supply in plasma exhaust gas" and "tritium safe containment", these have a certain research and development foundation in China. In the hands of the people recruited this time, the great power of these topics is in Invited to dispatch.
Once the higher-ups make up their minds and devote all their efforts to do something, all obstacles will be wiped out. The power directly mobilized by the higher-ups and truly putting all their efforts into doing it will be an unstoppable force with thousands of troops. Sloping down.
Recently, Zhu Zhechi has done a lot of projects and has been studying with experienced seniors for a long time. Wu Tong is already very experienced in how to plan and arrange, and can be regarded as a good project leader.
Thanks to Cap's trust in giving her the identity of the person in charge and chief designer of this large-scale scientific research project, Wu Tong was not necessarily trembling with fear, but he was definitely asking for R&D and being polite.
Regarding how to break through the technical difficulties of controllable nuclear fusion and design a controllable fusion reaction demonstration reactor project, she already had a comprehensive blueprint when reporting to her superiors. Now, together, we are working hard to realize this grand blueprint. With.
Wu Tong has never felt that she is the only capable person in the world. Professional things are left to professionals. She controls the core, strives for excellence, and breaks through the biggest difficulties that ordinary people face. She focuses on the big and lets go of the small. These experiences in management and operation of projects , Wu Tong is a good student and naturally learns well.
She alone cannot realize the blueprint of the fusion reaction demonstration reactor. It is common sense to follow the wise experience of her ancestors and unite all the forces that can be short-circuited. Wu Tong has always known that when everyone adds fuel, the flames will rise. She never planned to overcome all the technical difficulties by herself. She was a human being, not a god. With so many technical sections, waiting for her to learn one by one and break through one by one, the day lily would be cold.
There is a method for reasonable acceleration, why not use it?Professional foreign aid should be used rationally without being disrespectful or embarrassing.
Therefore, Wu Tong’s plan is to split this huge topic into small professional topics, and then assign them to suitable candidates. Those difficult-to-solve parts will be separated out separately, and she will take the lead and concentrate her efforts to solve them. .For example, there is currently no better first-wall material in the world.
After trying it from multiple angles and getting stuck for a few days, Wu Tong came up with a new idea. If the neutron beam couldn't be blocked, why not consider letting them go?Then, through certain means, the neutrons generated in the DT fusion reaction are recovered. Of course, this will inevitably once again form a key part of the entire nuclear fusion reactor technology.
But after all, the price of tritium resources is more than tens of thousands of times that of deuterium. Not only does it cost per gram, but it costs tens of thousands of dollars. Their resources are limited and cannot be wasted. They are diligent and thrifty, which is a traditional Chinese virtue!
This idea seemed to have opened up the two channels of Ren and Du. Wu Tong instantly seemed to be looking down from a higher angle, with clear and sensitive thinking. New derivation designs were presented one by one in Wu Tong's writing.
The neutron helium ash recovery system can shuttle through the restorative first wall material... Each unique design technology title was detailed in Wu Tong's notebook, and then turned into a continuous deduction on the draft paper.
It is impossible to let go of the neutron, and you must keep it no matter what.If the neutrons generated by the reaction cannot be recovered, not only will it cause a large amount of energy loss, but it will also cause the reactor to "shut down" due to the loss of tritium.
In an ideal fusion reactor, both tritium and neutrons should be preserved as intermediate products, and the final waste produced is only helium and heat.Letting them go does not mean letting them go.
Wu Tong theoretically and technically tried to design the structure of the first wall in many ways to make it possible to avoid the impact of the neutron beam. However, from many angles, they could not avoid the damage to the metal bonds. The most important thing about this was that The root cause is actually based on the poor self-healing ability of metal bonds, and there are also hard-to-solve transmutation problems.
In the end, Wu Tong set his sights on metal materials and determined the final research and development direction, with the carbon material graphene as the dominant one. The stability of the carbon material and the special porous structure of the graphene material were Wu Tong's preferred starting points.
Wu Tong thought about it, and she planned to develop and design a new material. The first wall was set up to allow neutrons to pass through and had a stronger self-healing ability than the basic material. Then liquid lithium was used behind the first wall to recover neutrons.As for the other side of the liquid lithium, it is coated with a layer of directional metal to reflect neutrons that penetrate the liquid lithium layer without reacting.
This design is equivalent to sandwiching liquid lithium between the first wall and the directional metal to form a special sandwich design. Each link is combined with a cooling system and other technical support to finally achieve an ideal solution. .
In order to achieve this kind of project proposal, the requirements for the first wall material have changed from a new perspective based on extreme high temperature resistance and neutron impact radiation resistance.It still needs to be resistant to high temperatures, but the perspective of neutron impact radiation changes from complete resistance to transmission.
The pure carbon material graphene is not enough to withstand such severe high temperatures, what about the combination?What material elements can be combined to maintain the porous and shuttling effect of graphene materials, while also having sufficient ductility and repairability?
Question after question is thrown in Wu Tong's mind, colliding with Wu Tong's knowledge reserve and scientific research imagination. As of now, it can be said that Wu Tong's research has entered an unknown field, and this also means that, There is no previous experience to refer to.What to do next and how to solve these problems all depend on Wu Tong himself to think, define and design.
On the basis that metal materials are unreliable, non-metallic materials have become the focus of Wu Tong's attention. It was at this time that ceramic base came into use in front of Wu Tong.
Ceramic matrix composite materials are a type of composite materials that use ceramic as a matrix and are compounded with various fibers.
The ceramic substrate can be high-temperature structural ceramics such as silicon nitride and silicon carbide.These advanced ceramics have excellent properties such as high temperature resistance, high strength and stiffness, relatively light weight, and corrosion resistance. However, their fatal weakness is their brittleness. When under stress, they will crack or even break, leading to material failure.
The use of high-strength, high-elastic fiber and matrix composite is an effective method to improve the toughness and reliability of ceramics.
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