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Environment-adaptive method to control intake preheating for diesel engines at cold-start conditions

机译:控制冷启动条件下柴油发动机预热的环境 - 自适应方法

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Preheating the fresh charge is an effective way to improve the diesel cold-start performance. In the present study, the minimum intake preheating powers at different ambient temperatures and densities were investigated by using the optical experiments, engine bench tests and thermodynamic theory, to explore an environment-adaptive method of intake preheating power at cold-start conditions. The optical experiment results show that the critical ignition temperature of diesel spray decreases rapidly and then slowly with the decrease of in-cylinder density, and a relation between them is established. The results of engine bench tests show that the actual in-cylinder pressure is smaller than the theoretical compression pressure, and the relation between them is established in a wide speed range. Based on the experimental results and the thermodynamic theory, we establish a map chart of the intake preheating power with the ambient temperature and altitude. The results show that the minimum intake preheating power increases linearly as the ambient temperature decreases at the speed of first injection, and it first decreases and then increases as the speed increases during speed-up period. The requirement of the minimum intake preheating powers at the speed of first injection and speed-up period have different turning points with the change of altitude.(c) 2021 Elsevier Ltd. All rights reserved.
机译:预热新鲜电荷是提高柴油冷启动性能的有效途径。在本研究中,通过使用光学实验,发动机台式测试和热力学理论,研究了不同环境温度和密度的最小摄入功率,探讨了冷启动条件下的进气预热功率的环境 - 自适应方法。光学实验结果表明,柴油喷雾的临界点火温度迅速降低,然后随着圆柱体密度的降低而缓慢地,建立了它们之间的关系。发动机台支试验结果表明,实际的缸压压力小于理论压缩压力,并且它们之间的关系在宽速度范围内建立。基于实验结果和热力学理论,我们建立了环境温度和高度的进气预热功率的地图图。结果表明,随着第一次注射速度的环境温度降低,最小进气预热功率随着环境温度而降低,并且首先减小,然后随着加速期间的速度增加而增加。在第一次注射和加速期速度的最低进气量的要求具有不同的转折点,随着海拔高度的变化。(c)2021 Elsevier Ltd.保留所有权利。

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