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Refurbished video card | Optimize for efficiency. Sep 5, An application for drawing and simulating NuclearCraft nuclear reactors. Jan 4, History Talk 0. |
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Mhflowers nl | Note: in Chrome, this tab won't run in background! Added nuclearcraft configuration file parsing. Could not load tags. Fusion reactors require pre-heating by pumping in an enormous amount of energy RF, etc. Step 3 : If you want kinect adventures xbox one limit the usage of a type of block, enter the maximum number allowed in the table below. May 1, Fix crash when loading reactor with invalid file. |
The Reactor Cells hold the fission fuel while it is depleting and generating heat and power. Basically, the more cells, the more heat and power produced. Additionally, cells directly adjacent to one another or separated by at most four moderator blocks in a straight line will become more efficient and generate more power - this does come at a cost of generating more heat, though. The moderator blocks currently Graphite or Beryllium are used to increase the efficiency of the reactor. For every cell adjacent to each moderator block, additional power and heat is produced, making the reactor more efficient, again at a cost of producing more heat.
The coolers are the blocks which remove excess heat from the reactor. This is very important, as a reactor that overheats will melt into a nasty mess of molten corium. There are fifteen coolers available, and as well as each having their own cooling rates, they also have their own placement rules - each cooler's positioning must satisfy certain conditions to function, making cooling a reactor the most complex aspect of building a safe reactor. Again, for more in-depth information about the mechanics of these blocks, consult the dedicated article on the Fission Reactor.
The best place to start is to estimate a reasonable number of cells to put into our reactor. To do this, it is useful to refer to this list of all of the available coolers' stats , which is also available in-game on the coolers' tooltips. Let's consider the cooling required for four sets of pairs of cells connected by a graphite block:.
These cells and moderators would take up 12 blocks, so we would have 15 left. Looking at the available coolers' cooling rates, this is definitely a viable option, so we will go for it. Given the compact nature of our design, we have a lot of options to consider - we want to find the cheapest cooling configuration that will give us a heat-negative reactor:.
The simplest coolers to consider are the water, redstone and lapis varieties. Because all of the spaces redstone coolers are valid for adjacent to at least one cell are also adjacent to casing, the lapis can go anywhere that the redstone can, and so immediately seems to be the better option.
In more open designs, where cells are not necessarily near any casing, it is better to go with water and redstone coolers to then set up valid spaces for gold and iron coolers. Glowstone cooler positioning. The front-most lapis cooler has been removed for visibility.
The next places to consider are the four spots between the graphite blocks. This means we could try to replace one of the lapis coolers with an extra graphite block between two of the cells. The additional moderator block, the extra heat of which we will attempt to deal with. However, if you can build these coolers, then it is possible to deal with the additional heat generated by the addition of the graphite block.
Keeping this in mind, we now look at the centre column of the reactor, which has still not been filled. New cryotheum coolers and additional tin, copper and magnesium coolers for some additional cooling. We then look at the centre position which is surrounded by glowstone coolers. Finally, we have the top-centre position, adjacent to three lapis and one graphite.
We now have to go back to check if we can improve on the cooling configuration anywhere - the first place to check is the lapis coolers and tin cooler on the bottom layer. Originally, we discarded the idea of using redstone coolers, but we should use one in place of one of the lapis coolers here to set up a liquid helium cooler instead of the tin cooler at the centre. Hopefully this guide has been useful in getting you up and running with your first reactor.
Your next step is to explore the various links in this wiki, learn about the other parts and see what amazing reactors you can make! Separate articles on Fission Reactors and Fusion Reactors will go into more detail on advanced reactor design. Feed The Beast Wiki Explore. Centralized 9 Bot operators' 1 Translators' 3 Admin's 1. Explore Wikis Community Central. Register Don't have an account? Getting Started NuclearCraft. View source. History Talk 0.
Do you like this video? Play Sound. Shaped Crafting. Alloy Furnace. Nuclear Wasteland. Glowing Mushroom. Enter zero to completely disable that block. You can hover over the acronym to see the full name of each block. Active coolers are disabled by default.
You can enable them by removing the zeros. Alternatively, you can enter the data yourself. Passive cooling rates are in the tooltip of each cooler item. Active cooling rates are in JEI. Ensure active coolers are accessible by piping. Only generate heat neutral reactor. Optimize for power. Optimize for breeding maximize fuel consumption rate.
Optimize for efficiency. X symmetry Y symmetry Z symmetry Use reinforcement learning requires more memory, slightly slower but can produce better design The most efficient reactor doesn't produce the most power.