2024-12-10 17:55:22|Myriagame |source:minecraft skins
This tutorial is set by the author's setting without permission.
Use version 1.7.10
MODS: IC2, AE2, thermodynamics (including pipe MOD)
This article is the result of the comprehensive inquiry of one nuclear and two electricity and strong cold reactors. It is divided into theoretical and practical parts. Welcome to discuss and correct
Basic content
Theoretical part:
When the IC2 reactor is working, the fuel rod will give priority to passing the heat to the surrounding four -square component (or cooling module). When the component or element is too hot, the extra part will pass to the reactor.
Only overclocking heat sinks, reactor heat sinks, heat exchangers, reactor heat exchangers, and advanced heat exchangers will generate heat exchange with the reactor itself, which will cause the reactor temperature unstable, which is the basis of the reactor temperature control.
Non -condensation elements can store both heat and release heat. When the component is used as a heat carrier, it can be regarded as the calorie in the form of items.
Then, you can design a system: build the "main reactor" and "heat dissipation reactor" respectively. The main reactor performs the work containing a fuel rod.The heat dissipation reactor performs the component heat dissipation, and the component after the heat dissipation returns to the main reactor to complete the cycle.
Based on the above theory, when the component is selected, the main reactor can reach a constant temperature to provide the MOX heap temperature environment.
At the same time, when the heat dissipation heap is a fluid reactor, the heat can be output in the form of thermal coolant and can be used.
When the heat dissipation capacity of the heat dissipation module composed of heat dissipation piles> When the heat production capacity of the main reactor, the entire system can run stably.
The following is the practical part ("Component Heat Exchange" written as "Heating Component"):
Main body: The main reactor uses MOX temperature control nuclear power, and uses thermal conductivity as an element thermal exchanger (does not exchange heat with the reactor, and has 5000 calories cache).Time difference causes fuel rods to increase the heat of the reactor to increase the heat of the reactor.The segregation of the thermal plate can be used to adjust the temperature of the reactor.Under this method, 4480Hu/T and 4928eu/T are output when the heap temperature is about 84.9%.
Through AE, remove the components with durability to less than 50%and transfer to the heat dissipation stack to heat dissipation. The middle box (storage block) is used as a cache to avoid timely from the main reactor and cause damage from the main reactor.
The networks of each color line in the figure below are independent of each other.
Blue line-nuclear reaction ware
(1) Blue Line-Box: ME output bus (the fuzzy card is set to 50%), which is used to remove the durable thermal conductivity in the reactor
Note: This bus cannot be accelerated card
Red Line-Box: ME input bus, take out the cache thermal conductivity
Red line-reactor access interface: storage bus, read the "heat dissipation pile" item bar
Red Line-ME interface: ME output bus, enter the heat-conducting element after the heat dissipation into ME storage
(2) White line-nuclear reaction warehouse: ME output bus (not visible in the picture, below the nuclear reaction warehouse), enter the heating element in the ME storage to the reactor
Gray line: as a wire supply energy
There should be a certain amount of "heat -conducting element" in the AE network.
Effect: (84.9%heap temperature, fluid reactor uses Stelin power generation) Total power generation: 4928 (electricity) +2240 [44.8 Thai Starlin] (Heat) = 7168euu/t, the power is considerable, no need to run the entire machine operation cycle, no needStop.
---- Completely automated: access the four-piece UU set and fuel rod recovery device, so that the fuel can also consume low energy circulation and form perpetual movement.
First of all, build a network so that the reactor can automatically enter fuel/output waste
New bus:
(3) Blue Line-nuclear reaction warehouse (above the nuclear reaction warehouse in the figure): ME input bus, used to remove waste (4) white line-nuclear reaction warehouse (as (2) on the same cable, under the nuclear reaction warehouse, in the figure, in the figure, in the figure: ME output bus for filling nuclear fuel
Change the bus configuration:
(1):
(2):
Sequence: When the reaction reaction is over, stop removing the thermal conductivity, stop filling after filling in all the vacancies, remove the waste, fill the fuel, and restore the extraction and filling of the thermal conductive element.
Ensure that the content before and after the reactor is consistent
So the design is as follows circuit
The blue line is newly issued, and the following configuration sends a signal when the reactor has fuel
When the reactor reaction is over, the circuit loses the redstone signal from the sender
Setting timing: (Signals staying for a period of time when the signal is lost) Before removing the waste (3) Specifies the heating component: After losing the signal, (1) immediately lose the signal to stop working. At the same time, the orange part will store the red line below.Part of the part -time non -signal stop filling the filling thermal component and prepare to fill the fuel: After losing the signal for a period of time (2) turn on (4) open, but at this time the reactor should be a full position, and no items will change inside.Take it out, the fuel is filled, the sender restores the signal, and reset the bus taken out of the waste
Start filling the heat -guided thermal components and stop filling fuel: Signal passes along another path (2) Open (4) Close
Began to take out the thermal conductivity: after the signal is restored, the lock memory end the lock and restore the element to remove it. At this point, the automatic fuel loading is over
After a set of UU replication equipment, an uranium ore is automatically synthetic and entered from another network into the storage of the network used in the reactor.
This design is insufficient: As AE's bus work is gradually accelerating, starting the small probability of starting a small probability when the fuel remains too low (only about 12s) will cause some steps to be skipped due to its slow working speed. The solution is to increase the increase.Delay in each part, but this will increase the volume
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