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Fuel puddle model and AFR compensator for gasoline-ethanol blends in flex-fuel engines

机译:用于燃料 - 燃料发动机的汽油 - 乙醇混合的燃料水坑模型和AFR补偿器

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Ethanol is being increasingly used as an alternative fuel to petroleum-based gasoline and diesel derivatives. Currently available flexible fuel vehicles (FFVs) can operate on a blend of gasoline and ethanol in any concentration of up to 85% ethanol (93% in Brazil) with minimum hardware modifications. This flexibility if partly achieved through the closed-loop air-to-fuel ratio (AFR) control which maintains automatically operation around the stoichiometric ratio. Precise transient AFR control depends however on a feedforward compensator that reduces the transient effects of fuel puddle dynamics. An accurate and tunable model of the fuel puddle dynamics for gasoline-ethanol blends is, thus, necessary for the purpose of air-to-fuel ratio control. In this paper, we propose a physics-based fuel puddle model that may be used for control purposes in FFVs. In particular, the gasoline-ethanol blend is modeled using several chemical compounds and is parameterized by ethanol content. The model consists of a droplet evaporation model and a singlepuddle vaporization model. The droplet evaporation model is simulated off-line to generate port wall-impacting factors of injected fuel to be used in a single-puddle vaporization model. The single-puddle vaporization model is a cycle-based model that may be simulated on-line to characterize fuel puddle dynamics in port fuel injected engines. To verify the validity of the model, simulation results are compared with limited experimental data. A transient fuel compensator based on the proposed model is also formulated.
机译:乙醇越来越多地用作石油基汽油和柴油衍生物的替代燃料。目前可用的柔性燃料汽车(FFV)可以在汽油和乙醇中的任何浓度的含量在最高85%的乙醇(巴西93%)的混合物上操作,最小硬件改性。这种灵活性如果通过闭环空气到燃料比(AFR)控制部分地实现,该控制围绕化学计量的比例自动操作。然而,精确的瞬态AFR控制取决于馈电补偿器,这减少了燃料水坑动态的瞬态效应。因此,汽油 - 乙醇共混物的燃料水坑动力学的精确和可调谐的模型是用于空气 - 燃料比控制的必要条件。在本文中,我们提出了一种基于物理的燃料水坑模型,可用于FFV中的控制目的。特别地,使用几种化合物模拟汽油 - 乙醇共混物,并通过乙醇含量参数化。该模型包括液滴蒸发模型和单压缩模型。液滴蒸发模型是脱线,以产生注入燃料的端口壁撞击因子,以便在单侧防水蒸发模型中使用。单侧熔化模型是一种基于循环的模型,可以在线模拟,以表征端口燃料喷射发动机中的燃料水坑动态。为了验证模型的有效性,将仿真结果与有限的实验数据进行比较。还配制了基于所提出的模型的瞬态燃料补偿器。

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