Difference between revisions of "Still head heat exchanger"

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Still head heat exchanger (SHHE) is often used on biodiesel reactors to improve the efficiency of the condenser.  
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[[File:GL processor with valve to allow use of sight tube and SHHE.png|250px|thumb|right|Schematic showing location of SHHE]]
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Still head heat exchanger (SHHE) is often used on biodiesel reactors to improve the efficiency of the [[Plumbers delight condenser|condenser]].  
 
SHHE are used with reactor designs that employ methanol recovery.
 
SHHE are used with reactor designs that employ methanol recovery.
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==Benefits==
 
==Benefits==
*Reduces De-meth Times
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*Reduces De-meth times
 
*Reduces Power consumption of the immersion heater
 
*Reduces Power consumption of the immersion heater
 
*Reduces the heat transferred to the cooling water
 
*Reduces the heat transferred to the cooling water
  
 
==Description==
 
==Description==
The still head heat exchanger is a vapour to air heat exchanger, transferring heat from water or methanol vapour exiting the reactor to air returning from the condenser to the reactor.
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The still head heat exchanger is a vapour to air heat exchanger, transferring heat from water or [[methanol]] vapour exiting the reactor to air returning from the condenser to the reactor.
  
 
==Placement==
 
==Placement==
 
Placement of the heat exchanger needs to be done so that any condensed vapour can drain into the collection vessel.
 
Placement of the heat exchanger needs to be done so that any condensed vapour can drain into the collection vessel.
Often on the GL Eco reactor design SHHE are placed above the condenser to aid draining also being close to the return path of vapour from the condenser to the venturi
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Often on the [[Processor - with methanol condenser (GL design)|GL Eco]] reactor design SHHE are placed above the condenser to aid draining also being close to the return path of vapour from the condenser to the [[venturi]].
  
 
==Examples==
 
==Examples==
 
Often heat exchangers from domestic boilers are used, these have a large surface area which improves heat transfer.
 
Often heat exchangers from domestic boilers are used, these have a large surface area which improves heat transfer.
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<gallery caption="Multi core SHHE by mark" widths="250px" heights="300px" perrow="3" align="center">
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File:SHHE photo1 source Mark.jpg|Multi tube SHHE during construction. Source: mark
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File:SHHE photo3 source Mark.jpg|Completed SHHE. Source: mark
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File:SHHE photo2 source Mark.jpg|Finished assembly. SHHE and [[Plumbers delight condenser]] (both multi core) Source: mark
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</gallery>
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<gallery caption="SHHE using a commercially made heat exchanger." widths="250px" heights="300px" perrow="3" align="center">
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File:SHHE3 julian.JPG|Commercially made, multi tube heat exchanger used as a SHHE.
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File:SHHE1 julian.JPG|Heat exchanger before fitting.
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File:SHHE2 julian.JPG|Internal view of the same heat exchanger.
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</gallery>
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<gallery caption="SHHE using a flat plate heat exchanger." widths="500px" heights="300px" perrow="1" align="center">
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File:FPHH as SHHE source Ian.jpg|FPHE as a SHHE. source: IanFiTheDwarf1
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</gallery>
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Latest revision as of 22:25, 3 March 2013

Schematic showing location of SHHE

Still head heat exchanger (SHHE) is often used on biodiesel reactors to improve the efficiency of the condenser. SHHE are used with reactor designs that employ methanol recovery.





Benefits

  • Reduces De-meth times
  • Reduces Power consumption of the immersion heater
  • Reduces the heat transferred to the cooling water

Description

The still head heat exchanger is a vapour to air heat exchanger, transferring heat from water or methanol vapour exiting the reactor to air returning from the condenser to the reactor.

Placement

Placement of the heat exchanger needs to be done so that any condensed vapour can drain into the collection vessel. Often on the GL Eco reactor design SHHE are placed above the condenser to aid draining also being close to the return path of vapour from the condenser to the venturi.

Examples

Often heat exchangers from domestic boilers are used, these have a large surface area which improves heat transfer.