发明名称 FUEL BLEND SENSING SYSTEM
摘要 While the materials compatibility challenges have largely been met in “flex-fuel” vehicles, the engine and aftertreatment operation has not been optimized as function of fuel type (i.e. ethanol, biodiesel, etc.). The full-scale introduction of alternative fuels is most likely going to occur as blends with conventional fuels. This is seen to some extend with the limited introduction of E85 (85% ethanol, 15% gasoline) and B20 (20% biodiesel, 80% conventional diesel.). This further exacerbates the challenge of accommodating variable fuel properties, as there will be differences in combustion properties due to both the type of alternative fuel (i.e. pure biodiesel vs. pure diesel) and blend ratio (i.e. B20 vs. B80). Real-time estimation of the fuel blend is key to the optimized use of two-component fuels (e.g. diesel-biodiesel, gasoline-ethanol, etc.). The approach outlined here uses knowledge of the exhaust composition, fuel and air delivery rates to the engine to estimate the fuel blend. The strategy is illustrated with a production wideband O2 in the engine's exhaust stream, coupled with the knowledge of the air-fuel ratio, to estimate the percentage of biodiesel in fuel being delivered to a 2007 Cummins turbo-diesel engine.
申请公布号 US2011208409(A1) 申请公布日期 2011.08.25
申请号 US200913056732 申请日期 2009.08.03
申请人 SNYDER DAVID BENJAMIN;SHAVER GREGORY MATTHEW 发明人 SNYDER DAVID BENJAMIN;SHAVER GREGORY MATTHEW
分类号 F02D41/00;F02D41/18;F02D41/26;F02D41/30;G01N33/22 主分类号 F02D41/00
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