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Editing 40d:Screw pump

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* Adjacent pumps ''automatically'' transfer mechanical power to any other adjacent pump(s), no [[axle]] or [[mechanism]] is required.  If too many pumps are adjacent, there may be insufficient power to run them. This does '''not''' apply to pumps being manually operated by dwarves.
 
* Adjacent pumps ''automatically'' transfer mechanical power to any other adjacent pump(s), no [[axle]] or [[mechanism]] is required.  If too many pumps are adjacent, there may be insufficient power to run them. This does '''not''' apply to pumps being manually operated by dwarves.
 
* A hatch above the input tile (on the same level as the pump) that is linked to a trigger (a [[lever]] or [[pressure plate]]) makes an effective on/off switch for that pump.
 
* A hatch above the input tile (on the same level as the pump) that is linked to a trigger (a [[lever]] or [[pressure plate]]) makes an effective on/off switch for that pump.
* In order to build pumps in a "hanging" state, as in the stacked screw pump example (below), one of its tiles must be able to connect to a nearby machine, either already existing or designated to be built. If, when the screw pump's construction is completed, the supporting mechanism has not yet been completed, it will promptly collapse into its component parts.
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* In order to build pumps in a "hanging" state, as in the stacked screw pump example (below), one of its tiles must be able to connect to a nearby machine; either already existing or designated to be built.
 
* Pumps do '''not''' push liquids '''up''' additional Z-levels above them.  They only deliver water to their own level.  That is, if you direct the output of a screw pump into a 1-square space surrounded by walls, the water will not "overflow" the walls. Consequently, a pump will refuse to move liquid if the level it is pumping to is completely filled.  Higher levels can be achieved using a "pump stack" (below). (See [[Pressure]])
 
* Pumps do '''not''' push liquids '''up''' additional Z-levels above them.  They only deliver water to their own level.  That is, if you direct the output of a screw pump into a 1-square space surrounded by walls, the water will not "overflow" the walls. Consequently, a pump will refuse to move liquid if the level it is pumping to is completely filled.  Higher levels can be achieved using a "pump stack" (below). (See [[Pressure]])
 
* In order to safely pump magma, the pump must be made of [[magma-safe]] materials or the pump's components will melt or burn. Curiously, if the [[pipe segment]] is made of any [[metal]], then none of the pump's components will heat up, allowing a wooden corkscrew to pump magma without problems. This is likely a bug.
 
* In order to safely pump magma, the pump must be made of [[magma-safe]] materials or the pump's components will melt or burn. Curiously, if the [[pipe segment]] is made of any [[metal]], then none of the pump's components will heat up, allowing a wooden corkscrew to pump magma without problems. This is likely a bug.

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