Reactivity controlled compression ignition

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Reactivity controlled compression ignition (RCCI) is a form of internal combustion developed at the Engine Research Center, University of Wisconsin–Madison, United States, by the research group of Wisconsin Distinguished Professor Rolf Reitz.[1]

During RCCI combustion,[2] well-mixed low-reactivity fuel and oxidizer (typically air) are compressed but not reaching auto-ignition. Later, still during compression cycle, high-reactivity fuel is injected to form a local mixture of low- and high-reactivity fuel. Finally the whole fuel charge is ignited near top dead center of the piston by injection of high-reactivity fuel. The RCCI combustion process requires two different fuels. Low-reactivity fuel gets injected into the intake ports with low pressure during the intake stroke. High-reactivity fuel gets injected into the cylinder with high pressure at the end of compression stroke. A throttle characteristic to Otto engines is not needed. Because of compression ignition and lack of throttle control, RCCI resembles much the diesel process. The dual-fuel RCCI can produce ultra-low NOx and soot emissions and higher thermal efficiency compared to conventional diesel combustion.[3]

RCCI patents are controlled by University of Wisconsin–Madison’s Wisconsin Alumni Research Foundation (WARF).[4] Several derivative ideas have also been experimented with by Caterpillar.[5][6]

See also

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References

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  5. ^ US20150285178A1, John, Bobby, "Reactivity controlled compression ignition engine and method of combustion phasing control", issued Lua error in Module:Citation/CS1/Configuration at line 2172: attempt to index field '?' (a nil value). 
  6. ^ US9151241B2, Gehrke, Christopher R. & Fiveland, Scott B., "Reactivity controlled compression ignition engine operating on a Miller cycle with low pressure loop exhaust gas recirculation system and method", issued Lua error in Module:Citation/CS1/Configuration at line 2172: attempt to index field '?' (a nil value). 

Further reading

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  • Engine Research Center- https://www.erc.wisc.edu/
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  • Wisconsin Alumni Research Foundation- https://www.warf.org/for-uw-inventors/inventor-profiles/rolf-reitz/fuel-mixture-technology-revolutionizes-engine-performance.cmsx       
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