首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental study on the injection characteristics of dimethyl ether-biodiesel blends in a common-rail injection system
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Experimental study on the injection characteristics of dimethyl ether-biodiesel blends in a common-rail injection system

机译:共轨喷射系统中二甲醚-生物柴油混合物喷射特性的实验研究

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摘要

The injection rate and dynamic behaviour during and after the injection of dimethyl ether-biodiesel blends in a common-rail injection system are experimentally studied. The characteristics of the instantaneous line pressure evolution induced by the injection are obtained. In comparison with the injection of biodiesel, the injection of 100 wt % dimethyl ether starts later, but the starts of injection of other fuels are almost at the same time. Increasing the dimethyl ether blending ratio leads to a retarded end of injection and a significantly prolonged injection duration, but the peak injection rate changes little. With increasing rail pressure, the early rate of change in the injection rate with time and the peak injection rate increase, and the injection rate fluctuates more strongly. With increasing energizing time, the start of injection and the peak injection rate remain unchanged. The curves of the line pressure fluctuations at the injector inlet are similar for all dimethyl ether-biodiesel blends. When the dimethyl ether blending ratio is increased from 30 wt % to 100 wt %, the drop in the amplitude of the line pressure at the start of injection becomes smaller, the peak pressure decreases gradually and the phase is retarded. The duration of the line pressure fluctuations after injection becomes longer with increasing dimethyl ether blending ratio. By increasing the rail pressure, the line pressure at the start of injection drops more quickly, with a larger amplitude. At the end of injection, the magnitude of the peak pressure increases with an advanced phase, and the duration of the pressure fluctuations increases. By increasing the energizing time, the line pressure drop at the start of injection is unchanged, and the first line pressure peak increases with a retarded phase.
机译:实验研究了共轨注射系统中二甲醚-生物柴油混合物的注射过程中和注射后的注射速率和动态行为。获得了由注入引起的瞬时管线压力变化的特征。与注入生物柴油相比,注入100 wt%的二甲醚的时间要晚一些,但是其他燃料的注入几乎是同时开始的。增加二甲醚的混合比例会导致进样时间延迟和进样时间显着延长,但是进样峰速率几乎没有变化。随着轨道压力的增加,喷射率的早期变化率随时间变化和峰值喷射率增加,并且喷射率波动更大。随着通电时间的增加,开始喷射和峰值喷射速率保持不变。对于所有二甲醚-生物柴油混合物,喷射器入口处的管路压力波动曲线相似。当二甲醚的混合比从30wt%增加到100wt%时,在注射开始时管线压力的幅度下降变小,峰值压力逐渐降低并且相位延迟。随着二甲醚混合比的增加,注入后管路压力波动的持续时间变得更长。通过增加轨道压力,喷射开始时的管路压力下降更快,幅度更大。在进样结束时,峰值压力的大小会随着提前阶段的增加而增加,并且压力波动的持续时间也会增加。通过增加通电时间,喷射开始时的管路压力下降不会改变,并且第一个管路压力峰值会以延迟相位增加。

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