Stirling Engine: Difference between revisions

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[[File:OldOlympus_299.jpg|250px|thumb|right|'''Current version of the prototype'''. Assembled version with piston rod guides.  See [http://openstirlingengine.blogspot.com/ blog] for detailed status reports. Having problems with polyethylene bags developing leaks, so not running yet. ]]  
[[File:OldOlympus_299.jpg|250px|thumb|right|'''Current version of the prototype'''. Assembled version with piston rod guides.  See [http://openstirlingengine.blogspot.com/ blog] for detailed status reports. Having problems with polyethylene bags developing leaks, so not running yet. ]]  


This is not part of the [[GVCS]]. Elsewhere, Stirling engine enthusiasts are working on this. The Stirling engine is an efficient energy generating technology that has been replicated innumerable times and ways over the past two centuries, but nothing has penetrated the market in any significant way yet. The thrust, therefore, of an open sourcing project should be to identify and develop a variation that will result in a marketable design of widespread applicability.
=Overview=
A [[Stirling Engine]] can operate quietly from any heat source to generate mechanical power (work). It operates by cyclic compression and expansion of air or other gas, the working fluid, at different temperature levels such that there is a net conversion of heat energy to mechanical work. It can be coupled directly to a hydraulic transmission, although only a handful of projects have explored this possibility over the decades.  


==Links==
Heat sources include [[Solar Concentration]] power  as well as [[biomass]].  
*Home Open Sterling Egnine [http://sites.google.com/site/openstirlingengine/Home Open Stirling Engine]
*Open Source Sterling Engine [http://www.pureenergysystems.com/os/StirlingEngine/ Stirling Engine Open Sourcing Projects]
*Energy and Sterling Engines [http://www.planetaryrenewal.org/ipr/energy.html]
*Stirling Engine Generator Development [http://www.whispergen.com/content/library/Don_Clucas_Stirling_engine_generator_development.pdf]
*Understanding Sterling Engines [http://www.cd3wd.com/cd3wd_40/VITA/STIRLING/EN/STIRLING.HTM]


See also [[Sterling Engine/Ericsson Engine]]
==Applications and Product Ecology==
* In future versions of the [[GVCS]], such a concept may be used for the [[Power Cube]]
* can be coupled to water pumps for irrigation 
* biomass: heat can be derived from combustion or from [[pyrolysis]], where [[biochar]] would be a useful, carbon-negative byproduct. With biomass-powered Stirling engine, one single engine could handle all sorts of different biomass, whether solid, liquid or gaseous. There is no need for tedious clean-up of fuel.
* liquid piston Stirling engine
==Projects==
'''Open Source Stirling Engines'''
*[http://sites.google.com/site/openstirlingengine/Home Open Stirling Engine]
*[http://www.pureenergysystems.com/os/StirlingEngine/ Stirling Engine Open Sourcing Projects]
*[http://www.planetaryrenewal.org/ipr/energy.html Energy and Sterling Engines]
*[http://www.whispergen.com/content/library/Don_Clucas_Stirling_engine_generator_development.pdf Stirling Engine Generator Development]
*[http://www.cd3wd.com/cd3wd_40/VITA/STIRLING/EN/STIRLING.HTM Understanding Sterling Engines]
=Assessment=
From MJ - Regarding the Stirling engine, that is not one of our [[GVCS 50]] technologies, so we are less interested in that - unless we are convinced that a practical model that can put out at least 100 watts of usable power from a small solar concentrator or biomass heat source. I understand that Stirling engines are more challenging to make work than modern steam engines based on the track record that Stirling engines never gained wide use, while steam engines were the backbone of the industrial revolution. For this reason - we are pursuing a modern version of a historically disruptive technology - the modern steam engine. We are currently building the [[Hadden Engine]]. However, I am quite open to collaboration on the stirling if someone can convince me, based on technical merit, that we can have a reliable product within a 3 year time frame that meets OSE specifications of lifetime design and low cost. This is possible but more challenging than the modern steam engine route. However, [[Dean Kamen]]'s third world Stirling engine product appears to show that the feasibility is there - the question being - is it sufficiently simple, cost effective, and robust to meet [[OSE Specifications]]. - Nov 13, 2012
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<iframe width="560" height="315" align=right src="https://www.youtube.com/embed/duuk_r--lqU" frameborder="0" allowfullscreen></iframe>
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==See Also==
*[http://en.wikipedia.org/wiki/Stirling_engine Wikipedia: Stirling Engine]
*[http://peswiki.com/index.php/Directory:Deluge_Inc:Thermal_Hydraulic_Engine Deluge Thermal Hydraulic Engine]
*[[Media:NASA Stirling Hydraulic concept.pdf|NASA 1988 Project]].
*[[Combined_cycle_system_PCB]]
*[http://www.google.com/patents/about?id=mdJ-AAAAEBAJ&dq=Stirling+engine+with+hydraulic+output Patent (2007): Stirling engine with hydraulic output]
*[http://linkinghub.elsevier.com/retrieve/pii/S0960148109000494 Mobile hydraulic power supply]
*[[Wikipedia: Fluidyne engine]]
*[https://www.tamera.org/project-groups/autonomy-technology/sunpulse-water/ Tamera: "SunPulse Water and Spring Rebound Inertia Pump"]
*[http://www.knowledgepublications.com/steam_and_stirling_engines.htm "Steam and Stirling Engines You Can Build Volume 1"] (Knowledge Publications)
*[https://gatesopenresearch.org/documents/3-1527] 2019 list of commercially available and soon to be available thermal to electrical energy conversion technologies
*[https://seftonmotors.com/] low cost stirling engine


[[Category:Energy]]  
[[Category:Energy]]  
[[Category:Solar Power]] 
[[Category:Solar Power]]
[[Category:Metalworks]]

Latest revision as of 22:30, 20 December 2019

Alpha prototype under construction. See Open Stirling Engine blog for the current status of the first prototype of the 4 cylinder alpha configuration engine. This is a simplified version of the design as modeled in Google SketchUp
Current version of the prototype. Assembled version with piston rod guides. See blog for detailed status reports. Having problems with polyethylene bags developing leaks, so not running yet.

Overview

A Stirling Engine can operate quietly from any heat source to generate mechanical power (work). It operates by cyclic compression and expansion of air or other gas, the working fluid, at different temperature levels such that there is a net conversion of heat energy to mechanical work. It can be coupled directly to a hydraulic transmission, although only a handful of projects have explored this possibility over the decades.

Heat sources include Solar Concentration power as well as biomass.

See also Sterling Engine/Ericsson Engine

Applications and Product Ecology

  • In future versions of the GVCS, such a concept may be used for the Power Cube
  • can be coupled to water pumps for irrigation
  • biomass: heat can be derived from combustion or from pyrolysis, where biochar would be a useful, carbon-negative byproduct. With biomass-powered Stirling engine, one single engine could handle all sorts of different biomass, whether solid, liquid or gaseous. There is no need for tedious clean-up of fuel.
  • liquid piston Stirling engine

Projects

Open Source Stirling Engines

Assessment

From MJ - Regarding the Stirling engine, that is not one of our GVCS 50 technologies, so we are less interested in that - unless we are convinced that a practical model that can put out at least 100 watts of usable power from a small solar concentrator or biomass heat source. I understand that Stirling engines are more challenging to make work than modern steam engines based on the track record that Stirling engines never gained wide use, while steam engines were the backbone of the industrial revolution. For this reason - we are pursuing a modern version of a historically disruptive technology - the modern steam engine. We are currently building the Hadden Engine. However, I am quite open to collaboration on the stirling if someone can convince me, based on technical merit, that we can have a reliable product within a 3 year time frame that meets OSE specifications of lifetime design and low cost. This is possible but more challenging than the modern steam engine route. However, Dean Kamen's third world Stirling engine product appears to show that the feasibility is there - the question being - is it sufficiently simple, cost effective, and robust to meet OSE Specifications. - Nov 13, 2012

See Also

  • [1] 2019 list of commercially available and soon to be available thermal to electrical energy conversion technologies
  • [2] low cost stirling engine