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Investigation of the Mixing Process and the Fuel Mass Concentration Fields for a Gasoline Direct-Injection Spray at ECN Spray G Conditions and Variants

机译:ECN喷雾G条件和变体在汽油直喷喷涂混合过程和燃料质量浓度场的研究

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Within the Engine Combustion Network (ECN) research frame, the mixing process and the fuel mass concentration fields were investigated at spray G conditions and variants with optical diagnostics. Experiments were conducted in a high-temperature high-pressure constant-volume pre-combustion vessel. The target condition, called “Spray G”, which is representative of gasoline direct-injection engine conditions, uses well-defined ambient (573 K, 6 bar, 3.5 kg/m~3, O_2-free) and injector conditions (200 bar, eight-hole injector, 0.165 mm orifice diameter). Measurements were also conducted at 6 and 9 kg/m~3 for temperatures of 700 and 800 K respectively. Two techniques were used to visualize the jet formation: p-difluorobenzene laser induced fluorescence (LIF) imaging and high-repetition-rate schlieren visualization. Images from both methods were compared in terms of jet penetration and size. LIF images were also used to calculate the fuel mass concentration fields across the jet for various measurement conditions.
机译:在发动机燃烧网络(ECN)研究框架中,在喷雾G条件下研究混合过程和燃料质量浓度磁场,以及光学诊断的变体。实验是在高温高压恒定体积预燃烧容器中进行的。称为“喷雾G”的目标条件,即汽油直喷发动机条件,使用明确定义的环境(573k,6巴,3.5kg / m〜3,O_2 - 无液体条件(200 bar ,八孔注射器,0.165毫米孔口直径)。测量还在6和9kg / m〜3的温度下进行700和800 k的温度。使用两种技术可视化喷射形成:p-二氟苯激光诱导荧光(LiF)成像和高重复率Schlieren可视化。在喷射穿透和尺寸方面比较了两种方法的图像。还用于在射流上计算燃料质量浓度场以进行各种测量条件。

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