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Cranking-Startup Intake Port and In-Cylinder Mixture Preparation Behavior in a CFR Gasoline Engine

机译:CFR汽油发动机中的曲柄启动进气口和缸内混合物的制备行为

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Engine startup experiments with intake port sampling were performed in a modified fuel-injected, single-cylinder gasoline CFR research engine. Immediately after fuel injection, port fuel-air vapor sampling was performed in order to quantify the role of the fuel injector in creating a combustible mixture for the first cycle of engine startup. In-cylinder sampling was also performed to clarify the role of other mixture preparation mechanisms in the startup process. Sample analysis was performed using gas chromatography. Experimental data were also collected during steady-state operating conditions at the same intake port pressure and temperature as that of the first cranking cycle for comparison. Results show that approximately 1/2 to 3/4 of a near stoichiometric combustible 1st cycle charge, as a function of first cycle fueling, is produced immediately after enriched cranking fuel injection. In contrast, the fuel injection event provides only 1/4 of the required fuel-air vapor mixture under similar steady-state engine operation. Finally, detailed chromatograph results show the dominant role of the lighter ends of the gasoline in the post fuel injection intake port vapor for both cranking and steady-state engine operation.
机译:在改进的燃料喷射的单缸汽油CFR研究发动机中进行了采用进气口采样的发动机启动实验。在燃料喷射之后,立即进行端口燃料 - 空气蒸汽采样,以便量化燃料喷射器在为发动机启动的第一循环产生可燃混合物时的作用。还进行了缸内取样,以阐明其它混合物制备机制在启动过程中的作用。使用气相色谱法进行样品分析。在稳态操作条件下也收集实验数据,在相同的进气口压力和温度,作为第一曲柄循环的温度,以进行比较。结果表明,在富集的起动燃料喷射之后,立即产生大约1/2至3/4作为第一循环燃料的函数的近的化学计量的第一循环电荷。相反,燃料喷射事件在类似的稳态发动机操作下仅提供所需的燃料空气蒸气混合物的1/4。最后,详细的色谱仪结果显示了汽油在后燃料喷射进气口蒸汽中燃料末端的主导作用,用于起动和稳态发动机操作。

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