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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation of direct injection charge cooling in optical GDI engine using tracer-based PLIF technique
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Experimental investigation of direct injection charge cooling in optical GDI engine using tracer-based PLIF technique

机译:基于示踪剂的PLIF技术在光学GDI发动机中直接注入电荷冷却的实验研究

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摘要

Investigation of direct injection charge cooling effects is indispensable in design and development of new combustion systems for Gasoline Direct Injection (GDI) engines. The charge cooling can be utilized to increase engine volumetric efficiency or compression ratio. It can be employed to suppress pre-ignition of highly boosted downsized engines or knocking combustion of naturally aspirated engines. The main purpose of this work was to develop an experimental setup for quantitative measurements of charge cooling during fuel injection process inside the combustion chamber of a GDI engine with optical access. For this purpose a tracer-based two-line Planar Laser Induced Fluorescence (PLIF) technique was implemented for the measurements. A specially designed Constant Volume Chamber (CVC) was utilized for quasi in situ calibration measurement so in-cylinder charge temperature measurements can be achieved independent of the photophysical model of dopant tracer. The thermometry technique was evaluated by measurements of average in-cylinder charge temperature during compression stroke for both motoring and firing cycles and comparing the results with temperature values calculated from in-cylinder pressure data assuming a polytropic compression. The PLIF technique was successfully utilized to quantify the extend of global temperature decrease as a result of direct injection charge cooling of two injection timings of 90 and 250 °CA ATDC and two injection quantities of 10 and 30 mg/cycle. Test results demonstrated the capability of the two-line PLIF thermometry technique in quantitative study of direct injection charge cooling effects.
机译:在汽油直喷(GDI)发动机的新燃烧系统的设计和开发中,直接喷射增压冷却效果的研究是必不可少的。增压冷却可用于增加发动机的容积效率或压缩比。它可以用于抑制高增压小型发动机的提前点火或自然吸气发动机的爆震。这项工作的主要目的是开发一种实验装置,用于定量测量具有光学通道的GDI发动机燃烧室内的燃料喷射过程中的增压冷却。为此,采用了基于示踪剂的两线平面激光诱导荧光(PLIF)技术进行测量。专门设计的恒定容积室(CVC)用于准原位校准测量,因此可以独立于掺杂剂示踪剂的光物理模型实现缸内装料温度测量。测温技术是通过测量压缩冲程过程中汽缸和点火缸的平均缸内充气温度,并将结果与​​假设为多向压缩的缸内压力数据计算出的温度值进行比较来评估的。 PLIF技术已成功地用于量化由于两次注射时间分别为90和250°CA ATDC和两次注射量为10和30 mg / cycle的直接注射电荷冷却而导致的整体温度下降的程度。测试结果证明了两线PLIF测温技术在定量研究直接注入电荷冷却效果方面的能力。

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