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BLOW-BY VAPOUR IMPACT ON FLEXIBLE FUEL APPLICATIONS

机译:吹气对柔性燃料应用的蒸气撞击

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The flexible fuel vehicles (FFV) are definitely a reality in Brazil. Most of the cars currently produced in Brazil are flexible fuel with fuel range from gasohol (E22) to hydrated ethanol (E100). All of these Brazilian applications are fuel sensor less. It means that the fuel inference is based on lambda sensor only. This fuel inference approach takes the intake air mass over the calculated mass of fuel delivered through the injectors in account to calculate the air fuel ratio (AFR) which points out the fuel blend in tank. One of the disadvantages of this inference strategy is that all the fuel considered for AFR calculation must come from injectors. Considering that the cold start and warm-up phases should operate in a richer mixture (choke operation), part of this fuel is delivered to the lubricant which is know as fuel dilution phenomenon in lubricant. According to the fuel properties and the lubricant temperature the diluted fuel evaporates and is mixed in intake air through blow-by system. This extra fuel source is considered in AFR calculation and can, in some conditions, distort the fuel blend inference. In order to prevent this blow-by vapour negative impact on flexible fuel inference logic a mathematical model was developed and calibrated for a 1.6 liter engine FFV application. Many test results with different blends and conditions are discussed. This study confirmed that this mathematical model presented positive results and some improvement opportunities were commented as well.
机译:柔性燃料车辆(FFV)绝对是巴西的现实。目前在巴西目前生产的大多数汽车都是灵活的燃料,燃料系列来自汽油(E22)到水合乙醇(E100)。所有这些巴西应用都较少。这意味着燃油推断仅基于Lambda传感器。该燃料推理方法在通过喷射器输送的燃料的计算质量上采用进气质量,以计算指出罐中的燃料混合的空燃比(AFR)。这种推理策略的缺点之一是考虑用于AFR计算的所有燃料必须来自注射器。考虑到冷启动和预热阶段应该在更丰富的混合物(扼流操作)中操作,部分燃料递送到润滑剂中,该润滑剂是润滑剂中的燃料稀释现象。根据燃料性能和润滑剂温度,稀释的燃料蒸发并通过吹气系统混合在进气中。这种额外的燃料源被认为是AFR计算,并且在某些情况下可以扭曲燃料混合推断。为了防止对柔性燃料推断逻辑的这种吹气负面影响,为1.6升发动机FFV应用开发和校准了数学模型。讨论了许多具有不同共混物和条件的测试结果。本研究证实,该数学模型提出了积极的结果,也提出了一些改进的机会。

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