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Effect of Secondary Mixing on Starting Characteristics of a Cold Diesel Engine

机译:二次混合对冷柴油机启动特性的影响

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Results of experiments performed in a constant-volume bomb are presented. The conditions in the bomb were typical of starting regimes of diesel engines. Cooled (down to 286 K) or noncolled inserts were placed in the bomb volume on the way of the fuel-air jet. These inserts were paltes simulating a sector of the combustor wall. Leaf deflectors of the jet were mounted on the plates to obtain the effect of secondary mixing. In the case of an elevated pressure in the medium (2.5 MPa and higher), the presence of the inserts, including those equipped by deflectors, independent of their thermal state, affects ignition only at extremely low temperatures of the medium, at which the primary ignition of fuel vapors and products of its thermal decomposition occurs in an immediate vicinity of the insert. If the initial pressure in the medium is rather low (0.9 MPa), the influence of the insert is significant: a noncooled surface reduces both the induction period (by a factor of 1.5 as compared to injection into a free volume) and the limiting temperature of ignition. If the insert surface is cooled, however, the ignition delay increases by 20%, and the limiting temperature of ignition increases by 100 K. Under these conditions, a leaf deflector of the jet mounted on the wall-simulator surface significantly improves the ignition characteristics of the mixture: the ignition delay and the limiting temperature decrease down to values that do not exceed those upon injection into a free volume. It is assumed that the secondary injection of the mixture from the edge of the leaf deflector into the free space of the working volume leads to the formation of a closed circular vortex containing both the liquid phase (atomized fuel drops) and the gaseous phase (fuel vapors, products of its partial thermal decomposition, and air).
机译:给出了在定量炸弹中进行的实验结果。炸弹中的情况是柴油发动机启动时的典型情况。冷却(低至286 K)或无节距的插入物在燃料-空气喷嘴的途中被放置在炸弹容积中。这些插件是模拟燃烧室壁扇形的调色板。将射流的叶片偏转器安装在板上以获得二次混合的效果。在介质压力升高(2.5 MPa和更高)的情况下,插入件(包括由导流板配备的插入件)的存在,与它们的热状态无关,仅在介质的极低温度下才会影响着火,燃料蒸气及其热分解产物的着火发生在插件附近。如果介质中的初始压力很低(0.9 MPa),则插入件的影响很大:非冷却表面会缩短吸气时间(与注入自由空间相比,降低1.5倍)和极限温度点火。但是,如果插入件表面被冷却,则点火延迟将增加20%,极限点火温度将增加100K。在这种情况下,安装在壁模拟器表面上的喷嘴的导流板可显着改善点火特性混合物的燃烧时间:点火延迟和极限温度降低到不超过注入自由体积时的值。假设从叶片偏转器边缘向工作空间的自由空间中二次注入混合物会导致形成一个封闭的圆形涡流,该涡流既包含液相(雾化的燃料滴)又包含气相(燃料雾化)蒸气,其部分热分解的产物和空气)。

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