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Volumetric Efficiency Investigation with Anhydrous and Hydrous Ethanol on a Port Fuel Injection Spark Ignition Engine

机译:港口燃料喷射火花点火发动机上用无水耐水乙醇的体积效率调查

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Port fuel injection - PFI - engines are widely available and the calibrations of fuel models are well defined. Modern flex-fuel engines are designed to work with different fuels and a mix of them. However, Brazil’s ethanol is composed of anhydrous Ethanol mixed with 8% distilled water, making it distinct in relation of composition. In a PFI, the fuel mass is mixed to the air mass before entering the combustion chamber in order to keep the mixture most uniform as possible. In this process, heat exchange and partial pressure variation are present and this may lead to volumetric efficiency modification. However, measurement errors may be introduced from the indirect measurement method if it does not considers water content and combustion efficiency to determine volumetric efficiency. This paper has the objective to investigate the effects of hydrous and anhydrous ethanol on volumetric efficiency in a PFI spark ignition engine on low/medium loads where maximum break torque - MBT - spark advance is achievable. Indicated measurement and exhaust emission equipment were used to monitor and record combustion data in order to verify combustion efficiency, and an uncertainty analysis performed on the fuel flow meter to observe the water influence.
机译:端口燃油喷射 - PFI - 发动机广泛可用,燃料模型的校准明确。现代柔性燃料发动机设计用于使用不同的燃料和混合。然而,巴西的乙醇由与8%蒸馏水混合的无水乙醇组成,使其在组合物的关系中明显。在PFI中,在进入燃烧室之前将燃料质量混合到空气质量,以使混合物尽可能均匀。在该过程中,存在热交换和部分压力变化,这可能导致体积效率改性。然而,如果没有考虑水含量和燃烧效率以确定体积效率,则可以从间接测量方法引入测量误差。本文的目的是探讨含水和无水乙醇对低/介质负载上的PFI火花点火发动机体积效率的影响,其中可实现最大断裂扭矩 - MBT - 火花前进。所示的测量和排气设备用于监测和记录燃烧数据以验证燃烧效率,并对燃料流量计进行的不确定性分析观察水影响。

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