20x20 big reactor

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20x20 big reactor

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Big Reactors. Thread starter pizzawolf14 Start date May 29, OK, I've seen a ton of threads an big reactors lately, and people have made some brilliant spreadsheets for the mod. Assume infinite resources. GreenZombie New Member. Don't use any material other than cryotheum as it is the best moderator, best heat conductor, and, for passive reactors, 2nd best absorber.

Basically, assuming infinite resources, it should always be possible to beat the effeciency of any particular design, by making a slightly larger one. What DO you mean by efficiency? It uses liquid ender and it has 9 control rods arranged in a cross. For now it is the most efficient design that I was able to come up with.Forums New posts Search forums.

What's new New posts New resources New profile posts Latest activity. Servers Latest reviews Search resources. Members Registered members Current visitors New profile posts Search profile posts. Log in Register. Search titles only. Search Advanced search…. New posts. Search forums. Log in. For a better experience, please enable JavaScript in your browser before proceeding. Big Reactors OP. Thread starter SweaterLock Start date Nov 11, SweaterLock New Member.

Hey guys I heard the max size was 32x32x So I was wondering how much power I could milk from a reactor that size. If you could give me the layout I plan to build it in my creative world for the lawls. Before you ask "why would you ever want to do that? Thanks in advance guys! Skyqula New Member. The max size is 32x32x48 with the default configs. A passive Reactor of this size can produce over 1. As for reactor layour, take a look at this spreadsheet. Now the interesting thing is going to come in when we get dense steam, a feature planned for a future Big Reactors update.

It will allow us to harness the full power of a active cooled max size reactor. Good to power turbines and Cant wait!

Last edited: Nov 11, T10a New Member. You think Big Reactors is OP? From BigReactors. I think it's the best material you can use for turbine coils, but it's crazy expensive and requires nether stars.

Big Reactors Tutorial - Reactors & Reactor Turbines

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Reactor Power Tap

Server ads go here and modpack bugs go here. JavaScript is disabled. For a better experience, please enable JavaScript in your browser before proceeding. Struggling to make RF with Infinity Evolved Thread starter WuffleFluffy Start date Jun 13, WuffleFluffy New Member. I must be doing things the wrong way. I have made a IC2 reactor and a pile of Plutonium, also made a pile of Iridium ore. The AE2 wrenche is nearly made for my ME controller. But, RF is hard to make.

Wendelstein 7-X

Uranium is very hard to find, even with my ender quarry doing a 20 x 20 chunk mining sweep. OK, so it sounds like i need to think outside the box for big power Any ideas?

I keep seeing things about epic bacon and beef?The specific arrangement and material of mod blocks in each multi-block structure determines the performance and behavior of the system as a whole. Website FTBWiki.

All reactors must have exactly one Reactor Controller block. This block provides the main interface for monitoring the status of the reactor. Access Ports are buffers that contain unused fuel and waste. An active reactor will use the fuel from the 'Inlet' port and dump waste into the 'Outlet' port.

The core of the reactor is an arrangement of Yellorium Fuel Rods. These must be stacked to stretch the entire interior height of the reactor. The entire volume of the reactor may be filled with fuel rods, but it does not have to be. Above each stack of fuel rods there must be a Reactor Control Rod, this block tells the reactor where the fuel rods are so it can fill them with fuel. Reactors that provide RF energy directly need to have at least one Reactor Power Tap as part of the structure.

Coolant Ports allow fluids to be injected into and drained from the reactor.

20x20 big reactor

Reactors that provide RF directly use coolant ports to keep the core at a safe operating temperature. Those that run steam turbines use coolant ports to feed the turbine with steam. Reactors and turbines are multi-block structures: they are made up of individual blocks arranged according to specific rules which together create a large functional machine.

Both reactors and turbines must be built as a closed, mostly hollow box with no holes and complete edges, including corners. In addition to these containment blocks, a number of other blocks are necessary to make a functioning reactor or turbine. None of the these blocks can be placed on the edge or corner; they must be somewhere in the faces of the reactor, sometimes in very specific places.

Right clicking on the reactor casing or turbine housing will tell you if anything is missing. Doing so results in unpredictable behavior with the turbine. The fuel inside the fuel rods generates power, radiation and heat. Heat is transferred to the adjacent 4 blocks from the fuel rods into a coolant or fuel rod block, and likewise radiation is transferred up to 4 blocks dependant on adjacent block absorption in the north, south, east and west direction.

Struggling to make RF with Infinity Evolved...need ideas for big power!

Radiation and heat cause the temperature in the reactor to rise and consume more fuel, at higher temperatures there is a penalty to fuel consumption. A coolant reduces the temperature of a reactor, and moves heat from the reactor core to the reactor casing. The higher the casing heat, the higher the energy output and heat transfer rate of coolants.

It is important to note that the coolant discussed in this section is completely unrelated to the Reactor Coolant Port.

20x20 big reactor

These would be more accurately described as the moderating material of your reactor, whereas the coolant port accepts only water for the generation of steam.The Big Reactors mod adds multi-block power systems capable of providing large amounts of RF power to Minecraft.

The specific arrangement and material of mod blocks in each multi-block structure determines the performance and behavior of the system as a whole. A power system can be built in one of two ways: a reactor can provide RF power directly, or a reactor can provide super-heated steam which is then pumped into a steam turbine to generate RF power. The latter option is much more expensive, but also much more efficient. Systems with several multi-block structures of nearly infinite size can be built.

Big Reactors greatly benefits from the support of mods which provide transport and fluid pipes such as BuildCraft. It can also interface directly with ComputerCraft and RedNet.

Reactors and turbines are multi-block structures made up of individual blocks arranged according to specific rules, which together create a large functional machine. Both reactors and turbines must be built as a closed, mostly hollow box with no holes and complete edges, including corners. The edges of this box can be, but not necessarily built from Reactor Casing or Turbine Housing blocks, and the faces of Reactor Glass or Turbine Glass blocks, respectively.

In addition to these containment blocks, a number of other blocks are necessary to make a functioning reactor or turbine. None of these blocks can be placed on the edge or corner; they must be somewhere in the faces of the reactor, sometimes in very specific places.

Right clicking on the reactor casing or turbine housing will display a message of what is missing.

20x20 big reactor

Important: Ensure that there aren't any metallic blocks within a 1 block radius of the turbine! Doing so results in unpredictable behavior with the turbine. Download this spreadsheet to calculate the required materials and their cost for any size Reactor structure.

Use this Big Reactor Simulator to test the efficiency of different Reactor designs. All reactors must have exactly one Reactor Controller block, which provides the main interface for monitoring the status of the reactor. Access Ports are buffers that contain unused fuel and waste. An active reactor will use the fuel from the 'Inlet' port and dump waste into the 'Outlet' port.

A Big Reactor needs at least one access port.The specific arrangement and material of mod blocks in each multi-block structure determines the performance and behavior of the system as a whole.

A power system can be built in one of two ways: a reactor can provide RF power directly, or a reactor can provide super-heated steam which is then pumped into a steam turbine to generate RF power.

The latter option is much more expensive, but also much more efficient. The minimum size of a reactor is 3x3x3 blocks whereas the minimum size of a working turbine is 3x4x3.

Systems with several multi-block structures of nearly arbitrary size can be built. Reactors and turbines are multi-block structures: they are made up of individual blocks arranged according to specific rules which together create a large functional machine. Both reactors and turbines must be built as a closed, mostly hollow box with no holes and complete edges, including corners. In addition to these containment blocks, a number of other blocks are necessary to make a functioning reactor or turbine.

None of the these blocks can be placed on the edge or corner; they must be somewhere in the faces of the reactor, sometimes in very specific places. Right clicking on the reactor casing or turbine housing will tell you if anything is missing. This block provides the main interface for monitoring the status of the reactor. An active reactor will use as many units of fuel as it can from access ports set to 'Inlet Mode' and dump waste into access ports set to 'Outlet Mode'.

Fuel rods must be stacked to stretch the entire interior height of the reactor. The entire volume of the reactor can be fuel rods, but it does not have to be. This can attach to anything that accepts RF power.

Reactors that provide RF directly use coolant ports to keep the core at a safe operating temperature. Those that run steam turbines use coolant ports to feed the turbine with steam. A fluid coolant is used to keep a reactor at a safe operating temperature. Reactors that run too hot for too long can fail, catastrophically. Click here for optimized turbine designs for various coil materials from FTBWiki!

For each rotor block in the turbine the shaft and bladea certain mass is added depending on the rotor material. Currently as of 0. In the future the mod developer plans to allow the rotor to be constructed out of different materials. Sign In Don't have an account? Start a Wiki. Contents [ show ]. Categories :. Cancel Save.As of [update]the Wendelstein 7-X reactor is the largest stellarator device. The name of the project, referring to the mountain Wendelstein in Bavaria, was decided at the end of the s, referencing the preceding project from Princeton University under the name Project Matterhorn.

The research facility is an independent partner project with the University of Greifswald. The Wendelstein 7-X device is based on a five field-period Helias configuration. It is mainly a toroidconsisting of 50 non-planar and 20 planar superconducting magnetic coils3.

Big Reactors

The 50 non-planar coils are used for adjusting the magnetic field. The main components are the magnetic coils, cryostatplasma vessel, divertor and heating systems. The coils NbTi in aluminium [4] are arranged around a heat insulating cladding with a diameter of 16 meters, called the cryostat. A cooling device produces enough liquid helium to cool down the magnets and their enclosure about metric tons of "cold mass" to superconductivity temperature 4 K [5]. The coils will carry The plasma vessel, built of 20 parts, is on the inside, adjusted to the complex shape of the magnetic field.

It has ports holes for plasma heating and observation diagnostics. The whole plant is built of five near-identical modules, which were assembled in the experiment hall. The heating system [6] includes 10 megawatts of microwaves for electron cyclotron resonance heating ECRH which can operate continuously, and can deliver 80 MJ in the operation phase 1.

A system of sensors and probes based on a variety of complementary technologies will measure key properties of the plasma, including the profiles of the electron density and of the electron and ion temperature, as well as the profiles of important plasma impurities and of the radial electric field resulting from electron and ion particle transport.

The German funding arrangement for the project was negotiated inestablishing the Greifswald Branch Institute of the IPP in the north-eastern corner of the recently integrated East Germany. Its new building was completed in Construction of the stellarator was originally expected to reach completion in Assembly began in April Problems with the coils took about 3 years to fix. The end of the construction phase, which required more than 1 million assembly hours, [15] was officially marked by an inauguration ceremony on 20 May Operational phase 1 OP1.

The aim for the OP 1. More than discharges with helium were done in December and January with gradually increasing temperatures finally reaching six million degrees Celsius, to clean the vacuum vessel walls and test the plasma diagnostic systems. Then, on February 3,production of the first hydrogen plasma initiated the science program.


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