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Mixing Process of Direct Injection Hydrogen Jet in a Constant Volume Vessel by Using Spark-Induced Breakdown Spectroscopy

机译:采用火花诱导的击穿光谱法在恒定容器中直接注射氢气射流的混合过程

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Hydrogen spark-ignition (SI) engines based on direct-injection (DI) have been investigated because of their potential for high thermal efficiency and solving the problems related to knocking, backfiring, and pre-ignition. Wide range flammability limits in hydrogen engine enable smooth engine operation for a very lean mixture with low NO_x. However, a too lean mixture may increase ignition delay and causes severe cyclic variations. There is a possibility that the turbulence occurred during injection of fuel surround the spark plug in the combustion chamber is major contributor to this phenomenon. To overcome this problem, a better understanding of the spark discharge and spark ignition during transient hydrogen jet is necessary. Therefore, it is very important to study an effect of local equivalence ratio and behavior of spark discharge in SI engine. This paper describes a mixing process of hydrogen jet using spark-induced breakdown spectroscopy (SIBS) in a constant volume vessel. Spark discharge fluctuation images was visualized by high speed camera with the concentration measurement simultaneously. The SIBS sensor was developed from a commercial spark plug with an optical fiber embedded in the spark plug. This technique was used to detect the component of samples using the light emitted by spark-induced plasma. Spectrally resolved emission of plasma generated by the SIBS sensor was detected simultaneously by spectrometer. In this study, the strongest intensity peak of H_α (656 nm) and N(501) was chosen to measure the local concentration. Comparing the intensity peaks of atomic emissions from hydrogen and nitrogen gives local hydrogen concentration in the measured volume.
机译:已经研究了基于直喷(DI)的氢火花点火(Si)发动机,因为它们具有高热效率的潜力,并解决与爆震,背部和预点火相关的问题。氢气发动机中的宽范围可燃性限制使得具有低NO_X的非常贫混合物的平滑发动机操作。然而,过瘦的混合物可能会增加点火延迟并导致严重的循环变化。存在在燃料包围的燃料中发生的湍流,燃烧室中的火花塞是这种现象的主要原因。为了克服这个问题,需要更好地理解瞬态氢气喷射过程中的火花放电和火花点火。因此,研究局部等效比和SI发动机火花放电行为的影响非常重要。本文描述了在恒定体积容器中使用火花诱导的击穿光谱(SIB)的氢气喷射的混合过程。通过高速相机同时测量的高速相机可视化火花排出波动图像。 SIBS传感器由商用火花塞和嵌入火花塞中的光纤开发。该技术用于使用火花诱导的等离子体发出的光来检测样品的组分。通过光谱仪同时检测由SIBS传感器产生的谱分辨的等离子体排放。在该研究中,选择H_α(656nm)和N(501)的最强强度峰以测量局部浓度。比较来自氢和氮的原子排放的强度峰,使局部氢浓度在测量的体积中。

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