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Injection characteristics study of high-pressure direct injector for Compressed Natural Gas (CNG) using experimental and analytical method

机译:使用实验分析方法对压缩天然气(CNG)高压直喷器的注射特性研究

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The injection characteristics of direct injector affect the mixture formation and combustion processes. In addition, the injector is converted from gasoline operation for CNG application. Thus measurement of CNG direct injector mass flow rate was done by independently tested a single injector on a test bench. The first case investigated the effect of CNG injection pressure and the second case evaluate the effect of pulse-width of injection duration. An analytical model was also developed to predict the mass flow rate of the injector. The injector was operated in a choked condition in both the experiments and simulation studies. In case 1, it was shown that mass flow rate through the injector is affected by injection pressure linearly. Based on the tested injection pressure of 20 bar to 60 bar, the resultant mass flow rate are in the range of 0.4 g/s to 1.2 g/s which are met with theoretical flow rate required by the engine. However, in Case 2, it was demonstrated that the average mass flow rate at short injection durations is lower than recorded in Case 1. At injection pressure of 50 bar, the average mass flow rate for Case 2 and Case 1 are 0.7 g/s and 1.1 g/s respectively. Also, the measured mass flow rate at short injection duration showing a fluctuating data in the range of 0.2 g/s - 1.3 g/s without any noticeable trends. The injector model able to predict the trend of the mass flow rate at different injection pressure but unable to track the fluctuating trend at short injection duration.
机译:直接喷射器的注射特性影响混合物形成和燃烧过程。此外,注射器由用于CNG应用的汽油操作转换。因此,通过在测试台上独立地测试单个注射器来完成CNG直接喷射器质量流量的测量。第一种情况研究了CNG喷射压力的影响,第二种情况评估了注射持续时间的脉冲宽度的影响。还开发了一种分析模型来预测喷射器的质量流量。在实验和模拟研究中,注射器在窒息条件下操作。在壳体1中,显示通过喷射器的质量流量受到喷射压力线性的影响。基于20巴的测试注射压力为60巴,所得质量流速的范围为0.4g / s至1.2g / s,其符合发动机所需的理论流速。然而,在壳体2中,证明了在壳体1中的短喷射持续时间下的平均质量流量低于记录。在50巴的注射压力下,壳体2的平均质量流量和壳体1为0.7 g / s分别为1.1 g / s。此外,在短喷射持续时间内的测量质量流速,显示出在0.2g / s-1.3 g / s范围内的波动数据,而没有任何明显的趋势。喷射器模型能够预测不同喷射压力的质量流速的趋势,但不能在短喷射持续时间下跟踪波动趋势。

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