Fractionator Dyson Sphere Program | How To Use Fractionator, Turning Hydrogen Into Deuterium – Dyson Sphere Program Tutorials 12 개의 베스트 답변

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The fractionator in Dyson Sphere Program allows you to turn hydrogen into deuterium. In this Dyson Sphere Program tutorial video, I show you how to use fractionator to make deuterium from hydrogen. To make deuterium from the fractionator, you need to move hydrogen into the side port of the fractionator. There is 1% chance to turn the hydrogen into deuterium. If the process fails, you need to take the hydrogen out of the other side. You can feed the hydrogen back into the fractionator for another try, but you must take it out for the fractionator to work. Deuterium is used to make nuclear fuel rods and to make strange matter. And that’s how to use the fractionator in Dyson Sphere Program to turn hydrogen into deuterium.
Dyson Sphere Program is a fun game where you must build a massive factory that not only covers an entire planet, it can even stretch out to other star systems in your cluster. The goal of Dyson Sphere Program is to complete the dyson sphere project around your star. To win this factory building game, you’ll need to gather resources on different planets to fuel your research and upgrades through the tech tree. Dyson Sphere Program is very similar to other factory games; like Factorio and Satisfactory. So if you like games like Factorio or Satisfactory, then you’ll probably enjoy Dyson Sphere Program gameplay.
Please remember that Dyson Sphere Program is still in Early Access, so the game might be different once it’s fully released.
Thank you for watching How To Use Fractionator, Turning Hydrogen Into Deuterium – Dyson Sphere Program Tutorials! You guys know what to do if you like the video! 😁👍
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═════════════════════════════════════════
TITLE: Dyson Sphere Program
GENRE: Indie, Simulation, Strategy, Early Access
DEVELOPER: Youthcat Studio
PUBLISHER: Gamera Game
RELEASE DATE: 21 Jan, 2021
EARLY ACCESS RELEASE DATE: 21 Jan, 2021
STEAM PAGE: https://store.steampowered.com/app/1366540/Dyson_Sphere_Program/
Build the most efficient intergalactic factory in space simulation strategy game Dyson Sphere Program! Harness the power of stars, collect resources, plan and design production lines and develop your interstellar factory from a small space workshop to a galaxy-wide industrial empire.
═════════════════════════════════════════
Hello everyone and welcome! My name is #MacGhriogair (pronounced: MacGregor), but you can call me Mac. I’m a Let’s Player that loves everything gaming. I believe that games are meant to be enjoyed, and I try to show that in my videos. I’ve been described as optimistic, easy-going, and laid-back, always ready to laugh at what ever is on screen. I do let’s play, walkthrough, tutorial, how to, and other type of gaming videos on the channel. I also have a Not Just The FPS series where we monitor a game’s performance. I’ve even done some videos on game programming. Thanks for stopping by and I hope to see you again!

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Fractionator | Dyson Sphere Program Wiki – Fandom

The Fractionator is a unique building. Unlike other buildings that require Sorters to input and output materials, it operates in a “continuous process” mode …

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Source: dyson-sphere-program.fandom.com

Date Published: 6/14/2022

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How is the fractionator used and what is it for? – Reddit

It need hydrogen! From one se in, and other se out, and from front comes Deuterium with 0.5% probability. Hydrogen is not lost in process so …

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Source: www.reddit.com

Date Published: 1/23/2021

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Fractionator & automatic piler :: Dyson Sphere Program …

Is there some limit in fractionator or is my build just bad? My build is 16 fractionators in loop with mk.3 belts, se feeding before every …

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Source: steamcommunity.com

Date Published: 6/13/2022

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Best Fractionator Setup 14.4 deuterium per second

Keeps all fractionators at max load, can easily tile or expand across whole planet.

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Source: www.dysonsphereblueprints.com

Date Published: 5/17/2021

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Fractionator – DSP Wiki

DSP Wiki: The Dyson Sphere Program Wiki. … The fractionator takes any conveyor input and output in its se connections, …

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Date Published: 4/5/2022

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주제와 관련된 이미지 fractionator dyson sphere program

주제와 관련된 더 많은 사진을 참조하십시오 How To Use Fractionator, Turning Hydrogen Into Deuterium – Dyson Sphere Program Tutorials. 댓글에서 더 많은 관련 이미지를 보거나 필요한 경우 더 많은 관련 기사를 볼 수 있습니다.

How To Use Fractionator, Turning Hydrogen Into Deuterium - Dyson Sphere Program Tutorials
How To Use Fractionator, Turning Hydrogen Into Deuterium – Dyson Sphere Program Tutorials

주제에 대한 기사 평가 fractionator dyson sphere program

  • Author: MacGhriogair
  • Views: 조회수 16,986회
  • Likes: 좋아요 309개
  • Date Published: 2021. 2. 7.
  • Video Url link: https://www.youtube.com/watch?v=f8Bb-LiqlQ0

How does the fractionator work Dyson Sphere Program?

A loop of Conveyor Belt MK. III running through a single Fractionator will convert one Hydrogen into Deuterium at a rate of approximately 0.3/sec at 100% throughput. Which means twenty Fractionators in a closed loop converts Hydrogen into Deuterium at a rate of approximately 6/sec. The same speed of a Conveyor Belt MK.

What does a fractionator do?

A fractionator is a “mini” distillation tower that uses fractional distillation to separate the components in a product stream from a conversion unit. Fractionators are common in many of the conversion units in a refinery.

How does fractionator work DSP?

The fractionator takes any conveyor input and output in its side connections, and will transform 1% of the hydrogen going through itself into Deuterium going out of its front connection. In the UI, the left-hand Hydrogen symbol show the input buffer, and the right-hand symbols are the output buffers.

How do you build efficiently in the Dyson Sphere Program?

  1. Consult my walkthrough of your first hour of Dyson Sphere Program. …
  2. Keep an eye on your mech power level. …
  3. Don’t make your builds too compact. …
  4. Automate production of basic components first. …
  5. Factory power levels. …
  6. The Main Bus and the Mall. …
  7. Understanding Belts and Sorters. …
  8. Enable God Mode to make building easier.

Can a Dyson sphere be built?

Feasibility. Although such megastructures are theoretically possible, building a stable Dyson sphere system is currently far beyond humanity’s engineering capacity. The number of craft required to obtain, transmit, and maintain a complete Dyson sphere exceeds present-day industrial capabilities.

How thick would a Dyson sphere need to be?

By building structures at twice the Earth-sun distance, the material would be sufficient to construct a huge number of orbiting platforms 6 to 10 feet (2 to 3 meters) thick, allowing the aliens to live on their star-facing surface.

What is a fractionator oil and gas?

Natural Gas Liquids (NGLs) fractionation is the process used in gas processing plants to separate hydrocarbon mixtures from natural gas into individual products. These NGLs are ethane, propane, butane, and pentanes as well as natural gasoline found in natural gas.

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How does NGL fractionation work?

NGLs are fractionated by heating the mixed NGL stream and processing them through a series of distillation towers. Fractionation takes advantage of the differing boiling points of the various NGL components. As the NGL stream is heated, the lightest (lowest boiling point) NGL component boils off first and separates.

What does size fractionation mean?

The separation of substances in a mixture on the basis of their molecular size, e.g., the separation of DNA strands based on their number of nucleotides.

How do I get more hydrogen in my Dyson Sphere Program?

To get hydrogen in Dyson Sphere Program, you need to upgrade your tech tree to unlock the ability to build an oil extractor and refinery. These are the tech tree upgrades you need to upgrade to, and some recommended additional items: Plasma extract refining: 100 electromagnetic matrix.

How do I get more deuterium?

The simplest way to produce deuterium in Dyson Sphere Program is to use a Fractionating Still. This can be used to turn hydrogen into deuterium. To do this, you will want to set up a belt in which hydrogen is sent into the Stills, which will then create deuterium, with one small caveat.

How long would a Dyson sphere take to build?

So there is a potential for double the power generation every 125 hours, or about 5.2 days. Sooo, starting with an initial power of 100kW, we potentially can finish a full-powered Dyson swarm in 373 days. If we start with an initial setup of 1GW, then we finish it in 304 days.

Is Dyson Sphere hard?

But if u wanna build multiple Dyson spheres and get up to 2k or 5k or more science per minute than yes it will get complicated. Also you can build a small sphere probably within a few hrs without having to build a lot of rockets but it will take a little time to get to the point where u can build a sphere.

How long does it take to finish Dyson Sphere Program?

The devs say there’s 25-50 hours of gameplay from start to “finish”, if you can stay focused only on completing the researches required.

How do I get more hydrogen in my Dyson Sphere Program?

To get hydrogen in Dyson Sphere Program, you need to upgrade your tech tree to unlock the ability to build an oil extractor and refinery. These are the tech tree upgrades you need to upgrade to, and some recommended additional items: Plasma extract refining: 100 electromagnetic matrix.

How do I get more deuterium?

The simplest way to produce deuterium in Dyson Sphere Program is to use a Fractionating Still. This can be used to turn hydrogen into deuterium. To do this, you will want to set up a belt in which hydrogen is sent into the Stills, which will then create deuterium, with one small caveat.

Fractionator

Fractionator

A fractionator is a “mini” distillation tower that uses fractional distillation to separate the components in a product stream from a conversion unit.

Fractionators are common in many of the conversion units in a refinery. They are not considered separate process units but rather components of the conversion unit they are attached to.

Fractionator

Fractionator edit Fractionation Facility Taking advantage of the high vapor pressure ratio of hydrogen and liquid deuterium at a certain temperature, deuterium is fractionated from liquid hydrogen with a certain separation efficiency. Use a conveyor belt to introduce hydrogen from one side, after fractional distillation, export from the other side, and export the deuterium from the front port. Work Consumption 720 kW Idle Consumption 18.0 kW Made In Assembler Hand-Make Replicator Stack Size 30 1 3 s 8 4 4 1

Summary

The fractionator takes any conveyor input and output in its side connections, and will transform 1% of the hydrogen going through itself into Deuterium going out of its front connection. In the UI, the left-hand Hydrogen symbol show the input buffer, and the right-hand symbols are the output buffers.

If a fractionator is being fed by stacked items, it does not unstack output hydrogen. Items get converted individually rather than full stack at once, therefore in case part of the stack gets converted, the hydrogen will be output in stack minus converted items.

Production Chain

Recipe Building Replicator? Technology 1 3 s 8 4 4 1 ✔

Production Progression Chart

Stage 1 Stage 2 Stage 3 Stage 4 Stage 5 24 24 8 1 4 4 8 4 8 4 2 1 2 2 2 2 2 1 1

Player Tips & Tricks

The Fractionator recipe is unique in the fact that it is based on percentage of materials moving through the Fractionator. This means the Fractionator necessarily needs one input of Hydrogen, and one output of Hydrogen, and another output of Deuterium. It also means that conversion speed is directly proportional to belt speed (1% of belt speed) and saturation rate of the input & output for Hydrogen. Stacked items on the conveyor belt will increase production too. Belt Speed * 0.01 * Saturation Percentage * Stack Size = Deuterium Production Speed Production rates for a single Fractionator with fully saturated input belt:

Conveyor Belt Stack Size 1 Stack Size 2 Stack Size 3 Stack Size 4 3.6/m 0.06/s 7.2/m 0.12/s 10.8/m 0.18/s 14.4/m 0.24/s 7.2/m 0.12/s 14.4/m 0.24/s 21.6/m 0.36/s 28.8/m 0.48/s 18/m 0.3/s 36/m 0.6/s 54/m 0.9/s 72/m 1.2/s

It is useful to build Fractionators in a conveyor loop, with one entry point for Hydrogen. This allows cycling of Hydrogen already on the belt for further conversion to Deuterium, requiring only the replacement of Hydrogen that was converted. Any conveyor loop that is fully saturated with Hydrogen, for any type of Conveyor Belt, can serve up to 100 Fractionators at a time. Note, however, that Fractionators necessarily desaturate the loop, albeit at a low rate, so with a single entry point of Hydrogen, there is approximately a 1% loss per fractionator, which cascades to further Fractionators along the loop. e.g. if there are 10 Fractionators on a Conveyor Belt Mk.III loop, the first will operate at 100% efficiency, processing 0.3 deuterium/s. The second will operate at ~99% efficiency, as the conveyor belt is ~99% saturated, while the third will operate at 98% efficiency due to desaturation by previous fractionators on the loop. The total expected output of such a Fractionator setup can be calculated using the following amended equation: [Belt Speed] * (1 – (1 – [Initial Saturation Percentage]) ^ [Number of Fractionators] ) = Total Deuterium Production Speed This equation gives the expected total production of a 100 Fractionator setup on a Conveyor Belt Mk.III loop as 19.019 Deuterium/second, or a system conversion rate of 63.4% As a result, having multiple entry points in the conveyor loop for Hydrogen to replenish saturation, or multiple conveyor loops is recommended. In order to prevent product stacking, the inflowing Hydrogen conveyor must be joined to the conveyor loop in either T-shape or via Splitter with the returning Hydrogen input set as prioritized. When used with stacked cargo, the cargo must be de-stacked into the individual items before connecting the inflowing belts, and then assembled back, in order to provide the constant flow rate. The inflowing belts must also carry individual items. Example: when passing through 4-stacks of Hydrogen, it must be de-stacked into 4 belts carrying individual items. Each of these belts should be connected with an inflowing belt also carrying individual items, and then assembled back into 4-stacks.

Proliferating Hydrogen increases the Fractionator’s conversion rate by the Proliferator’s Production Speedup bonus, also applying the Energy Consumption penalty. Passing through the Fractionator does not remove the Proliferator marks from the Hydrogen unless it gets converted.

Dyson Sphere Program tips for beginners

Dyson Sphere Program, like all games in the factory-building genre, can be pretty hard to wrap your head around. There’s an awful lot to understand before you can start taking grand steps towards building your own Dyson Sphere. But don’t despair, because our top Dyson Sphere Program tips and tricks below will help you quickly get to grips with every major aspect of the game, from power levels and ratios to hotkeys and UI controls.

Dyson Sphere Program tips and tricks

There’s an awful lot of stuff in Dyson Sphere Program already, even for a management game. It most closely resembles other factory-building games like Factorio and Satisfactory, but even here there are enough differences that you’ll want to bear the following tips in mind before you begin in earnest.

Here are our top Dyson Sphere Program tips:

Consult my walkthrough of your first hour of Dyson Sphere Program

Dyson Sphere Program, for the most part, is about figuring out things as you go, and marvelling at the fascinating problems that appear as things get more complex. But for those who are struggling to get properly started in a new game, you should check out my Dyson Sphere Program guide to getting set up in under an hour. Follow these steps and you’ll have built a fantastic starter base in no time. A good foundation will really help with future endeavours.

Keep an eye on your mech power level

In Dyson Sphere Program, you control a mech which can move, jump, glide, and create just about everything in the universe from scratch. But one big difference between this game and its rivals is that your mech has a charge level at the bottom of the screen which you must always keep an eye on.

Every activity, from moving around to fabricating new items, will consume charge. Your mech will very gradually generate power by itself, but you’ll need to help it along by stuffing its Fuel Chamber with fuel such as coal, wood, and plant matter. You can view the Fuel Chamber at any time by pressing “C” to open up your character panel. From there, take fuel from your inventory and place it in your fuel chamber.

You can view details about the generation and consumption of your mech at any time by hovering over the arrows in the charge meter at the bottom of the screen. For more information, check out our Dyson Sphere Program power and fuel guide.

Don’t make your builds too compact

You have a ridiculous amount of space to work with in Dyson Sphere Program just on your home planet, so try to resist the urge to pack sections of your factory close together. True, it means you can walk from place to place quickly, but if you make your factory too compact you’ll run into problems later on when you’re trying to add big projects like oil cracking and hydrogen production into the fold.

Your home planet is a big place, so don’t be afraid to spread things out.

Learn the basics of research

Just like Factorio, your immediate goals should always be dictated by the technology tree. You can view the tech tree at any time by hitting the big button in the bottom-right, or tapping “T”.

After completing the first few techs you’ll discover that most research relies on the production and consumption of coloured cubes, called matrices. You need to deal with these cubes in a particular building called the Matrix Lab. The Matrix Lab can be toggled between two modes: one for creating Matrices, and the other for consuming them to progress research and unlock new techs.

For full details on how research, techs, and Matrix Labs and cubes work, check out our comprehensive Dyson Sphere Program research guide.

Automate production of basic components first

Dyson Sphere Program is all about automating things. Your first major goal should be to stop having to manually craft everything, because your factory is already crafting everything for you.

The absolute first step in automation is to use smelters to turn ore into ingots. But the crucial next step is to use assemblers and smelters to start cranking out the basic components used to create most things (Magnets, Magnetic Coils, Gears, and Circuit Boards). Just have one assembler producing each of these and plopping them into a storage box for you to take from whenever you need, and you’ll find things progressing much more quickly.

Factory power levels

Every factory needs power. The first tech you unlock will give you the basic building blocks of a day 1 power grid. You’ll have the Wind Turbine, which generates energy, and the Tesla Tower, which is used to connect the energy generator (Wind Turbine) to the energy consumer (the rest of your factory).

Click on any Tesla Tower or Wind Turbine to view information about your power grid. Pay particular attention to the satisfaction percentage, because it’ll tell you whether you’re generating enough energy to meet your needs. If satisfaction falls below 100%, everything connected to that grid will start to slow down. If you see this happening, it’s time to add more power generators.

Again, for lots more useful information on this, check out our Dyson Sphere Program power guide.

Ratios and throughput explained

A basic understanding of ratios and throughput early on is incredibly useful when putting together a basic factory. The most important thing to remember on day 1 is this:

A basic conveyor belt can carry items at a rate of 6 items per second.

A Mining Machine will mine 0.5 ore per second per ore node covered.

This means 2 Mining Machines that each cover 6 nodes will fill a basic belt.

Knowing that the throughput of a basic belt is 6 items per second allows you to figure out how to make things more efficient. For example, a sorter can move items at a maximum speed of 1.5 per second, which means 4 sorters is exactly enough to empty (or fill) a belt.

The Main Bus and the Mall

The idea of a “main bus” springs from the Factorio playerbase, and describes a way of organising your products in a structured set of belts, each carrying a different item type, each heading in the same direction. The idea is that you can easily pull whatever items you need away from the main bus using splitters, and keep everything nice and orderly.

But I’d suggest you curb this particular Factorioism. Any main bus would quickly become outdated once you reach the incredibly powerful and important Logistics Stations, so I’d suggest not going through the effort of setting one up in the first place only to tear it down two or three hours later.

A “mall”, however, is absolutely worth building in Dyson Sphere Program. Another powerful tool of the Factorio player’s kit, a mall is a section of your factory which automatically churns out all of the basic buildings you need to continue expanding your factories. Belts, Sorters, Smelters, Mining Machines, Oil Refineries, Assemblers, Foundations… A mall can be as big or as small as necessary to keep you from ever having to manually create certain items again.

I’d suggest setting up a starting mall as soon as you finish automating blue Matrix cubes.

Understanding Belts and Sorters

Belts are absolutely essential to a factory in Dyson Sphere Program, and while their function is fairly simple on the surface, there’s actually a lot to learn about using belts properly, placing them without issues, manipulating them with Splitters, and so on.

It’s also worth remembering that there are three tiers of belt, each of which are costlier to produce but transport items at far greater speeds than the last. For absolutely everything you’ll ever need to know about belts, check out our Dyson Sphere Program belts page.

Sorters are as much the bread-and-butter of a factory as your conveyor belts. To place a sorter, you have to connect it from a source (where it pulls its items from) to a destination (where it will place those items). You can attach it from a smelter to a belt, or from a belt to an assembler, or even from a smelter directly into an assembler.

What’s more, you can stretch a sorter over multiple tiles – but this will slow down its rate of movement of items. So a sorter moving across just one tile will transport 1.5 items per second, but over two tiles this changes to 0.75 items per second, and over three tiles it’s 0.5 items per second. You can also set filters on sorters so they’ll only take a particular item type. For full details on everything you can do with Sorters, be sure to check out our dedicated Dyson Sphere Program Sorters page.

Belts and some buildings stack vertically

While placing a belt, you can use the up and down arrow keys to change the vertical level, allowing you to stack belts on top of one another and cross them without them intersecting and intruding on one another.

Certain buildings, such as Matrix Labs and Storage facilities, can also be stacked atop one another. Once the bottom one is full, it will start passing items automatically to the next building up.

Enable God Mode to make building easier

If you want to be able to build things in your factory without your view being locked to your mech, then head into the Gameplay tab of the settings menu, and set “Building View Mode” to “God mode”. This will allow you to move the camera around independently of your mech while in build mode.

Bear in mind though that you can still only place buildings within a certain distance of your mech, and the mech itself has to construct each building with its little fleet of drones. You can still order your mech to move while in God mode by holding Shift and right-clicking on the ground where you want the mech to move.

Use hotkeys and UI controls

There’s a huge amount of stuff to learn about using hotkeys and the UI correctly in Dyson Sphere Program, so I’ll just list some of the major shortcuts and tools you should be aware of, to round off this Dyson Sphere Program tips page:

You can move the mech with WASD or by right-clicking on the ground. Right-clicking a mineable item like a tree, rock, or ore node will make the mech run over and start mining it. You can hold Shift and right-click to queue up multiple actions for your mech.

Use the number keys to open up building categories, and function keys to pick specific buildings within each category. Double-tap an item to bring it up in the replicator if you need more.

Right-click an item stack in your inventory to bring up a slider where you can decide how much you want to pick up (why don’t more games do this?).

Pick an item up straight off a belt by clicking the belt and then clicking the circle button which shows the item inside it.

Hold Shift while placing a Mining Machine to ignore grid snapping and more precisely position and rotate each Miner.

Shift-click to pick up multiple of the same item in your inventory. If another inventory is open, shift-clicking will instead send that item straight to the other inventory.

Ctrl-click to pick up all of a particular item within an inventory.

Hit tab to cycle between filter options when placing a sorter, or layouts when placing a splitter.

You can change a recipe in an assembler or smelter by hovering over the product item circle, and clicking the “X” button.

Hit “P” to bring up the Statistics Panel, where you can see in-depth information on the production and consumption of various items over time in your factory.

Use up and down arrows to change the level of a belt while placing it.

Hit “H” to bring up the Details Display in the bottom-right. From here you can toggle various overlays, including your energy coverage and useful building icons/warnings.

Hit “M” to view the planet as a whole, and “V” to view the starmap, allowing you to view other planets, stars, and interstellar phenomena.

Hold Shift and left-click a building to put a copy in your hand ready for placing. The placed building will match its settings/recipe to the copied version.

Hit “Delete” with an item in your hand to delete that item from the game forever. Be careful with this.

Use the “<" and ">” keys to copy and paste a building’s internal settings respectively. Useful for changing many assemblers or smelters to the same recipe in a short space of time.

Use the slider at the bottom of a storage building’s inventory panel to limit how much of the inventory can be filled automatically by sorters.

Hit F11 to hide first the UI and then your mech. Great for taking screenshots!

Alright, that’s probably enough Dyson Sphere Program tips and tricks for the time being. If you’re interested in learning a bit more about the game, why not check out our quick guide on the prospect of multiplayer in Dyson Sphere Program?

Fractionator & automatic piler :: Dyson Sphere Program General Discussions

Fractionator & automatic piler

Is there some limit in fractionator or is my build just bad?

My build is 16 fractionators in loop with mk.3 belts, side feeding before every fractionator so it gets full belt. This gives every one 1800/min processing speed.

I added automatic pilers to input, now it inputs 4 at time, but fractionator processing speed did not give 7200/min, like I expected. More like 3-6K/min.

Fractionator

Fractionator edit Fractionation Facility Taking advantage of the high vapor pressure ratio of hydrogen and liquid deuterium at a certain temperature, deuterium is fractionated from liquid hydrogen with a certain separation efficiency. Use a conveyor belt to introduce hydrogen from one side, after fractional distillation, export from the other side, and export the deuterium from the front port. Work Consumption 720 kW Idle Consumption 18.0 kW Made In Assembler Hand-Make Replicator Stack Size 30 1 3 s 8 4 4 1

Summary

The fractionator takes any conveyor input and output in its side connections, and will transform 1% of the hydrogen going through itself into Deuterium going out of its front connection. In the UI, the left-hand Hydrogen symbol show the input buffer, and the right-hand symbols are the output buffers.

If a fractionator is being fed by stacked items, it does not unstack output hydrogen. Items get converted individually rather than full stack at once, therefore in case part of the stack gets converted, the hydrogen will be output in stack minus converted items.

Production Chain

Recipe Building Replicator? Technology 1 3 s 8 4 4 1 ✔

Production Progression Chart

Stage 1 Stage 2 Stage 3 Stage 4 Stage 5 24 24 8 1 4 4 8 4 8 4 2 1 2 2 2 2 2 1 1

Player Tips & Tricks

The Fractionator recipe is unique in the fact that it is based on percentage of materials moving through the Fractionator. This means the Fractionator necessarily needs one input of Hydrogen, and one output of Hydrogen, and another output of Deuterium. It also means that conversion speed is directly proportional to belt speed (1% of belt speed) and saturation rate of the input & output for Hydrogen. Stacked items on the conveyor belt will increase production too. Belt Speed * 0.01 * Saturation Percentage * Stack Size = Deuterium Production Speed Production rates for a single Fractionator with fully saturated input belt:

Conveyor Belt Stack Size 1 Stack Size 2 Stack Size 3 Stack Size 4 3.6/m 0.06/s 7.2/m 0.12/s 10.8/m 0.18/s 14.4/m 0.24/s 7.2/m 0.12/s 14.4/m 0.24/s 21.6/m 0.36/s 28.8/m 0.48/s 18/m 0.3/s 36/m 0.6/s 54/m 0.9/s 72/m 1.2/s

It is useful to build Fractionators in a conveyor loop, with one entry point for Hydrogen. This allows cycling of Hydrogen already on the belt for further conversion to Deuterium, requiring only the replacement of Hydrogen that was converted. Any conveyor loop that is fully saturated with Hydrogen, for any type of Conveyor Belt, can serve up to 100 Fractionators at a time. Note, however, that Fractionators necessarily desaturate the loop, albeit at a low rate, so with a single entry point of Hydrogen, there is approximately a 1% loss per fractionator, which cascades to further Fractionators along the loop. e.g. if there are 10 Fractionators on a Conveyor Belt Mk.III loop, the first will operate at 100% efficiency, processing 0.3 deuterium/s. The second will operate at ~99% efficiency, as the conveyor belt is ~99% saturated, while the third will operate at 98% efficiency due to desaturation by previous fractionators on the loop. The total expected output of such a Fractionator setup can be calculated using the following amended equation: [Belt Speed] * (1 – (1 – [Initial Saturation Percentage]) ^ [Number of Fractionators] ) = Total Deuterium Production Speed This equation gives the expected total production of a 100 Fractionator setup on a Conveyor Belt Mk.III loop as 19.019 Deuterium/second, or a system conversion rate of 63.4% As a result, having multiple entry points in the conveyor loop for Hydrogen to replenish saturation, or multiple conveyor loops is recommended. In order to prevent product stacking, the inflowing Hydrogen conveyor must be joined to the conveyor loop in either T-shape or via Splitter with the returning Hydrogen input set as prioritized. When used with stacked cargo, the cargo must be de-stacked into the individual items before connecting the inflowing belts, and then assembled back, in order to provide the constant flow rate. The inflowing belts must also carry individual items. Example: when passing through 4-stacks of Hydrogen, it must be de-stacked into 4 belts carrying individual items. Each of these belts should be connected with an inflowing belt also carrying individual items, and then assembled back into 4-stacks.

Proliferating Hydrogen increases the Fractionator’s conversion rate by the Proliferator’s Production Speedup bonus, also applying the Energy Consumption penalty. Passing through the Fractionator does not remove the Proliferator marks from the Hydrogen unless it gets converted.

키워드에 대한 정보 fractionator dyson sphere program

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