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Difference between revisions of "Thrusters"

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* Box thrusters provide varrying amount of thrust depending on the amount of superconductors.  
* Box thrusters provide varrying amount of thrust depending on the amount of superconductors.  
* The smallest plasma thruster setup will provide 3.5 mil thrust below 100% chargelevel which doubles at 100% chargelevel.
* The smallest plasma thruster setup will provide 3.5 mil thrust when cold which doubles when warmed up.  
* it takes 60 seconds for a plasmathruster to charge from 0% to 100%.
* plasma thrusters charge when their isactive field is set to 1 and lose charge if it is set to 0.
* plasma thrusters charge when their isactive field is set to 1 and thrust is set above 50%.  
* a plasma thruster has to be fully charged in order to produce thrust.
* plasma thrusters lose charge when their thrust is set below 50%.
* once the plasma thruster is fully charged it will begin to warm up, which will take 60 seconds.
* Every added superconductor ring will provide an additional 3.5 mil thrust uncharged and 7 mil charged.
* Every added superconductor ring will provide an additional 3.5 mil thrust cold and 7 mil warmed up.
* A plasma thruster nozzle is not required, but is needed to reach full thrust.   
* A plasma thruster nozzle is not required, but is needed to reach full thrust.   
* At maximum thrust the base plasma thruster uses 598 propellant per second and 1,54K  electricity per second both charged and uncharged.  
* At maximum thrust the base plasma thruster uses 598 propellant per second and 1,54K  electricity per second.


=== Box thruster ===
=== Box thruster ===
Line 131: Line 131:
|-
|-
! '''isactive'''
! '''isactive'''
| Set to 1 for thruster to charge/heat up.
| 1 = charge ; 0 = discharge
| /
| /
|-
|-
! '''chargelevel'''
! '''chargelevel'''
| the current charge level of the plasma thruster
| the current charge level of the plasma thruster
| 0 - 100
| 0 - 1
|}
|}


[[Category:Devices and machines|Thrusters]]
[[Category:Devices and machines|Thrusters]]

Revision as of 19:37, 26 February 2021

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Summary



Starbase devices thrusters box.png

Thrusters are a mandatory part of spaceships in order for them to be able to fly. At least one thruster is required in each ship.

Use

Thrusters determine which directions spaceships can be flown and at what speed, and they require power and propellant to function.
A cable drawn from the power source must be attached to the base of the thruster for correct distribution of power.

  • There are four different thruster types available:
    • Plasma thrusters
    • Box thrusters
    • Triangle thrusters
    • Maneuver thrusters

Basic information

  • To be able to fly, a spaceship needs at least one thruster.
    • Plasma Thrusters are the biggest thrusters so far, which can be upgraded to output more thrust. For full thrust they need a warm up time, though.
    • Box and triangle thrusters are big "main" thrusters and consist of multiple parts that need to be bolted together.
    • Maneuver thrusters enable small movements of the ship such as adjusting yaw and pitch, though they can still be used as main thrusters on smaller ships.
    • Thrusters need to be bolted to a Hardpoint that has access to propellant and electricity.
  • Thrusters require power to function.
  • A thruster also requires propellant to function.
    • To get propellant, a pipe has to be drawn between the device hardpoint and a gas container.
  • Plasma Trusters will need an additional type of propellant in the future, called Karnite.
    • This new fuel will come in the same containers as regular propellant does.

Thruster types

Plasma thruster



placeholder for image

Smallest possible plasma Thruster setup. plasma thrusters are build from a variety of parts.

  • Box thrusters provide varrying amount of thrust depending on the amount of superconductors.
  • The smallest plasma thruster setup will provide 3.5 mil thrust when cold which doubles when warmed up.
  • plasma thrusters charge when their isactive field is set to 1 and lose charge if it is set to 0.
  • a plasma thruster has to be fully charged in order to produce thrust.
  • once the plasma thruster is fully charged it will begin to warm up, which will take 60 seconds.
  • Every added superconductor ring will provide an additional 3.5 mil thrust cold and 7 mil warmed up.
  • A plasma thruster nozzle is not required, but is needed to reach full thrust.
  • At maximum thrust the base plasma thruster uses 598 propellant per second and 1,54K electricity per second.

Box thruster



Thruster with base.png

Box Thrusters with regular and corner base variants.

  • Box thrusters provide 500 000 thrust
  • At maximum thrust Box thrusters use 23.3 propellant per second and 140 electricity per second.

Triangle thruster



Starbase Triangle thruster stacks.png

Triangle thrusters. The sides with a hexagon on them can be used to stack multiple thrusters to one base.

  • Triangle thrusters provide 300 000 thrust
  • At maximum thrust Triangle thrusters use 35 propellant per second and 17.5 electricity per second.

Maneuver thruster



Starbase maneuver thruster.png

Small thrusters meant for maneuvering the ship.

  • Maneuver thrusters provide 50 000 thrust
  • At maximum thrust Maneuver thrusters use 11.7 propellant per second and 5 electricity per second.

Resource efficiency

Graphs showing thruster resource efficiencies per thrust level, electricity per second (eps) in blue and propellant per second (pps) in orange.


Box Thruster Usage.jpg Triangle Thruster Usage.jpg Maneuver Thruster Usage.jpg

Device fields

To learn more about how to use fields, consult these wiki pages:

YOLOL field description range
ThrusterState Requested output of the thruster 0 - 10 000
ThrusterCurrentThrust Current output of the thruster 0 - 10 000

in addition to the fields mentioned above, the plasma thruster has two additional fields.

YOLOL field description range
isactive 1 = charge ; 0 = discharge /
chargelevel the current charge level of the plasma thruster 0 - 1
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