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Difference between revisions of "Guide (Farming)"

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(Explaining the changes of the new update . The pressure requirment being at 101 Kpa or a penalty to preservation is applied. and the adjusted temperature curve now being better the colder it is.)
(Explaining temperature has been tweaked to be more forgiveing as a penalty is no longer or less effective when its colder then ideal. We need info and tests to be done to confirm the exact changes but this should work for most.)
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Storage of food within a powered fridge also multiplies by a factor of 0.3, reducing decay by 70%.
 
Storage of food within a powered fridge also multiplies by a factor of 0.3, reducing decay by 70%.
  
To minimize decay, food should be kept in a powered fridge in a nitrogen atmosphere of over 101kpa at a temperature of atleast 110K (-163°C).
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To minimize decay, food should be kept in a powered fridge in a nitrogen atmosphere of over 101kpa at a temperature of at least 110K (-163°C) as the calculation has been tweaked to not penalize preservation for being to cold.

Revision as of 13:26, 20 May 2021

Info

Setup

Farming plants can be done with Portable Hydroponics, Hydroponic Tray, Hydroponic Station or Automated Hydroponics. Only Automated Hydroponics comes with its own airtight compartment, all others used an open design so a controlled atmosphere (greenhouse) is required to operate these equipment without plants dying.

  1. Build an airtight room with an airlock. Use simple airlock if the environment outside is vacuum, or advanced airlock if the outside world has pressure.
    • With Hydroponic Station, direct sunlight is not required so you can build the greenhouse anywhere using any material.
    • With Portable Hydroponics or Hydroponic Tray however, the greenhouse should be located with maximum sun exposure in mind, and all walls/ceilings facing the sun trajectory made of glass.
  2. Build an entire set of pressure/temperature/gasMixture control for the greenhouse, either manual system or automated (via logic chips or programable IC chip). Make sure the following conditions are met, or the plant will wither through a declining health bar:
    • 7.7KPa < Pressure < 145KPa. Glass panel collapses near 150KPa
    • 15oC < Air Temperature < 50oC.
    • Atmosphere and pipes being mostly free of pollutants and volatiles, maximum of 3mols for volatiles.
    • 40 kPa atmosphere of minimum 1% carbon dioxide.
  3. Provide grow beds with water, or the plant will wither through a declining health bar. Insert a canister of water into the slot of Portable Hydroponics. Connect Hydroponic Tray or Hydroponic Station to a pipe network containing water.
  4. Provide illumination to the plants. Activate the UV light on Hydroponic Station, or wait till the sun come up. Plant won't die for lack of light exposure, merely stops growing. Low sunlight strength on Europa will produce misleading warning saying 'no sunlight', but really it is just growing at reduced rate.
  5. Wait till the plant matures(cursor hints current yield), and harvest.
  6. A healthy plant consumes water and carbon dioxide, then produces oxygen and radiates heat into surrounding atmosphere. Constant manual intervention or another feedback loop into the environment control will be necessary to keep the greenhouse running in the long term.


Efficiency of raw food and meals

The following table compares the sustainability of everything eatable in meals:
(1 meal satisfies 100% of hunger. In this way, 1 muffin for example satisfies 200% of hunger, which sufficient for 2 full meals.)

Ordered List of plantables and cookables

Name Efficiency Ingredients grows / prepare in
(short range) (medium range) (long range)
Portion of Unit do
Hunger
Meals by Stacks Meals by Yield Meals
Fern 1 100 2 Hydroponics
Flower 1 100 2 Hydroponics
Milk 100% 1ml 100% 1,0 100 100,0 1 100,0 Chemistry Station
Soy Oil 100% 1ml 20% 0,2 100 20,0 1 20,0 1 Soybean
Soybean 100% 1 10% 0,1 100 10,0 2 20,0 Hydroponics
Wheat 100% 1 10% 0,1 100 10,0 2 20,0 Hydroponics
Tomato 100% 1 30% 0,3 20 6,0 3 18,0 Hydroponics
Pumpkin Pie 17% 1 100% 5,9 1 5,9 1 5,9
100g Flour, 1 Egg, 10ml Milk, 1 Pumpkin
Microwave
Mushroom 100% 1 20% 0,2 20 4,0 2 8,0 Hydroponics
Potato 100% 1 20% 0,2 20 4,0 3 12,0 Hydroponics
Muffin 50% 1 100% 2,0 1 2,0 1 2,0 50g Flour, 1 Egg, 10ml Milk Microwave
Fries 63% 1 100% 1,6 1 1,6 1 1,6 0.5ml Soy Oil, 1 Potato Microwave
Pumpkin 100% 1 100% 1,0 1 1,0 2 2,0 Hydroponics
Rice 100% 1 2% 0,0 50 1,0 2 2,0 Hydroponics
100% 1 80% 0,8 1 0,8 1 0,8 1 Potato Microwave
100% 1 70% 0,7 1 0,7 1 0,7 1 Tomato Microwave
Cereal Bar 100% 1 60% 0,6 1 0,6 1 0,6 50g Flour Microwave
Corn 100% 1 2% 0,0 5 0,1 2 0,2 Hydroponics

Food storage

Food decays at a rate determined by the environment it is stored in. The main factors are gas composition of surrounding atmosphere, temperature of the surrounding atmosphere, pressure of the atmosphere, and whether or not the item is in a fridge. Decay rate multipliers for a given gas are listed below:

Gas Decay Rate Multiplier
Nitrogen (N2) 0.6
Carbon Dioxide (CO2) 0.8
Vacuum 1
Volatiles (H2) 1
Oxygen (O2) 1.5
Nitrous Oxide (N2O) 1.5
Water (H2O) 2
Pollutants (X) 3

Also not all foods decay here is the list of foods unaffected by decay.

The Soups being canned goods, and the cereal bar beign a processed food hence why they dont decay.

The decay rate also contains a factor determined by temperature, the pressure of the environment, as the food that needs to be preserved now has to be above 101 Kpa as preservation gets debuffed if its below 1 earth atmosphere. And the temperature decay factor is a complicated calculation summarized in the graph below (/u/LordRavenX, 04/2021):

Decay factor vs. temp Kelvin by /u/LordRavenX, 04/2021

Storage of food within a powered fridge also multiplies by a factor of 0.3, reducing decay by 70%.

To minimize decay, food should be kept in a powered fridge in a nitrogen atmosphere of over 101kpa at a temperature of at least 110K (-163°C) as the calculation has been tweaked to not penalize preservation for being to cold.