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The Optical Investigation on Initial Flame Developing Characteristics of Diesel Jet under Cold Start Conditions

机译:冷启动条件下柴油射流初始火焰发展特性的光学研究

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摘要

Cold start ability is essential for heavy duty vehicles equipped diesel engine operating in cold regions. However, it is the diesel jet's initial flame developing characteristics that determines whether it is able to start success. Thus, it is investigated on a constant volume chamber by optical diagnostics technologies. In order to simulate cold start conditions, there are four conditions varied during experiments including injection pressure (40 similar to 160 MPa), ambient temperature (707 K similar to 827 K), ambient density (9.1 similar to 22.6 kg/m(3)), and fuel temperature (343 K similar to 283 K). It is found that under low ambient temperatures flame starts as blue color then turning to yellow to realize high-rate heat release. And, a bimodal phenomenon on flame intensity is found during ignition process which can be used as transition indicator between two flames. With the reduction of the ambient temperature and density, the ignition delay and ignition position increase and finally misfired. At the low ambient temperature of 723 K, increasing injection pressure is unconducive to stabilize initial flame, which means that the higher injection pressure might not helpful for cold start. Moreover, the ignition delay decreased from 1.7 to 1.1 ms when fuel temperature increased from 283 to 343 K at the ambient temperature of 808 K, which indicates fuel heating is a promising way to improve diesel engine cold start.
机译:冷启动能力对于装备在寒冷地区运行的柴油发动机的重型车辆至关重要。然而,它是柴油射流的初始火焰开发特征,这些特征决定了它是否能够开始成功。因此,通过光学诊断技术在恒定容积室上研究了它。为了模拟冷启动条件,在实验期间存在四种条件,包括喷射压力(类似于160MPa),环境温度(类似于827 k的707 k),环境密度(9.1类似于22.6kg / m(3) )和燃料温度(343 k类似于283 k)。结果发现,在低环境温度下,火焰从蓝色开始,然后转到黄色以实现高速热释放。并且,在点火过程中发现了火焰强度的双峰现象,其可以用作两火焰之间的过渡指示器。随着环境温度和密度的降低,点火延迟和点火位置增加并最终耗尽。在723 k的低环境温度下,增加的注射压力是无道稳定的初始火焰的,这意味着较高的喷射压力可能对冷启动可能没有有助于。此外,当燃料温度从808K的环境温度从283增加到343k的燃料温度增加,点火延迟从1.7到1.1ms降低,这表明燃料加热是改善柴油发动机冷启动的有希望的方式。

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