Difference between revisions of "Thermal Control System (small)"

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(Making it a proper article, adding in core-cooling info and desciption in-line with other radiator page (that I did).)
 
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{{:Thermal Control System (small)/Box}}
 
{{:Thermal Control System (small)/Box}}
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[[File:Thermal Control System (small) deployed.png|left|300px|thumbnail|Deployed.]]
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The '''small Thermal Control System''' (TCS) is a deployable [[radiator]] used to dissipate waste heat into space (and [[atmosphere]]s), pumping it out of hot parts anywhere on the craft, consuming a small amount of [[electric charge]] (1.5 per minute).
  
The '''small Thermal Control System''' (TCS) is a deployable [[radiator]] used to dissipate waste heat into space (and [[atmosphere]]), pumping it out of hot parts anywhere on the craft.
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Part heat may be accumulated from external sources (e.g. [[re-entry]] or sunlight from [[Kerbol]]) or be generated by [[reaction engine]]s or the cores of [[resource harvester]] drills or [[converter]]s, while they are active. Radiators make themselves hotter to perform efficiently, but self-limit to avoid heating to destruction.
  
Part heat may be accumulated from external sources (e.g. [[re-entry]] or sunlight from [[Kerbol]]) or be generated by [[reaction engine]]s or the cores of [[resource harvester]] drills or [[converter]]s, while they are active.
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This radiator only functions while deployed and will be broken off by 2.5 kPa of dynamic pressure (i.e. moving too fast through a fairly thick atmosphere). It can not be used as a structural element, to attach other parts to, unlike the fixed panel radiators.
 
 
This radiator only functions while deployed and will be broken off by 2.5 kPa of dynamic pressure (i.e. moving too fast through a fairly thick atmosphere).
 
 
 
== Product description ==
 
{{Quote
 
|A deployable thermal control system consisting of multiple liquid cooled radiator panels.
 
|Probodobodyne Inc.}}
 
 
 
[[File:Thermal Control System (small) deployed.png|300px|thumbnail|none|Deployed]]
 
  
 
== Core Cooling ==
 
== Core Cooling ==
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This is substantially lower than what the part can actually dissipate, under most circumstances, with a "'''Max Cooling'''" figure of: '''1048kW'''.
 
This is substantially lower than what the part can actually dissipate, under most circumstances, with a "'''Max Cooling'''" figure of: '''1048kW'''.
  
To maintain an active drill or converter core at optimal thermal efficiency, there must be enough radiators with unused Core Heat Transfer capacity to fulfil the "Required Cooling" stat, as listed below:
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{{Stats table Core Cooling}}
  
{| class="wikitable"
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== Product description ==
! Image
+
{{Quote
! Part
+
|A deployable thermal control system consisting of multiple liquid cooled radiator panels.
! Required Cooling (kW)
+
|Probodobodyne Inc.}}
! Max Cooling(kW)
 
|-
 
| [[File:'Drill-O-Matic_Junior'_Mining_Excavator.png|center|22px]]
 
| [['Drill-O-Matic Junior' Mining Excavator]]
 
| '''50'''
 
| 50
 
|-
 
| [[File:DrillOMatic.png|center|22px]]
 
| [['Drill-O-Matic' Mining Excavator]]
 
| '''100'''
 
| 100
 
|-
 
| [[File:Convert-O-Tron_125.png|center|22px]]
 
| [[Convert-O-Tron 125]]
 
| 100
 
| '''50'''*
 
|-
 
| [[File:ISRU_Converter.png|center|22px]]
 
| [[Convert-O-Tron 250]]
 
| '''200'''
 
| 500
 
|}
 
 
 
(*) Note: the Convert-O-Tron 125 can not be maintained at optimal thermal efficiency because its max cooling cap is below its required cooling stat.
 
  
 
== Changes ==
 
== Changes ==
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{{Parts}}
 
{{Parts}}
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[[Category: Radiators]]

Latest revision as of 21:53, 9 January 2019

Thermal Control System (small)
Part image
Radiator by
Probodobodyne Inc

Radial size Radial mounted
Cost (total) 450.00 Funds
Mass (total) 0.050 t
Drag 0.2
Max. Temp. 2500 K
Impact Tolerance 12 m/s
Research Tech tree electrics.png Electrics
Unlock cost 2 200 Funds
Since version 1.0.3
Part configuration foldingRadSmall.cfg
Electricity required 0.025 ⚡/s
Dissipated heat 50 kW [1]
Retractable Yes
Packed volume 75 l

  1. This radiator cools all the parts on the craft.
Deployed.

The small Thermal Control System (TCS) is a deployable radiator used to dissipate waste heat into space (and atmospheres), pumping it out of hot parts anywhere on the craft, consuming a small amount of electric charge (1.5 per minute).

Part heat may be accumulated from external sources (e.g. re-entry or sunlight from Kerbol) or be generated by reaction engines or the cores of resource harvester drills or converters, while they are active. Radiators make themselves hotter to perform efficiently, but self-limit to avoid heating to destruction.

This radiator only functions while deployed and will be broken off by 2.5 kPa of dynamic pressure (i.e. moving too fast through a fairly thick atmosphere). It can not be used as a structural element, to attach other parts to, unlike the fixed panel radiators.

Core Cooling

The limiting factor for cooling the cores of drills and converters is the "Core Heat xFer" (transfer) limit of the radiator: 50kW.

This is substantially lower than what the part can actually dissipate, under most circumstances, with a "Max Cooling" figure of: 1048kW.

To maintain an active drill or converter core at optimal thermal efficiency, radiators must provide enough unused Core Heat Transfer capacity to fulfil the "Required Cooling" stat, shown below:

Image Part Required Cooling (kW) Max Cooling(kW)
'Drill-O-Matic Junior' Mining Excavator.png
'Drill-O-Matic Junior' Mining Excavator 50 50
DrillOMatic.png
'Drill-O-Matic' Mining Excavator 100 100
Convert-O-Tron 125.png
Convert-O-Tron 125 100 75*
ISRU Converter.png
Convert-O-Tron 250 200 200

(*) The Convert-O-Tron 125 is a special case - it can not be maintained at optimal thermal efficiency because its "Max cooling" cap of 75kW is below it's required cooling (100kW). With the help of radiators, it will still reach equilibrium, albeit a little hotter than the optimal 1000K. This is possible because core heat production scales down at higher core temperatures, as the thermal efficiency drops off.

Also note, for both Converters, that the required cooling figure is per active conversion mode, with each unit able to have any, or all, of their four ore conversion modes active at the same time. Hence the Convert-O-Tron 250's required cooling can also exceed its maximum permitted (e.g. 3 modes will produce 600kW of core heating).

Product description

A deployable thermal control system consisting of multiple liquid cooled radiator panels.

Probodobodyne Inc.

Changes

1.2
  • Moved from Utility to Thermal
1.0.4
  • Initial release