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Small Injection Amount Fuel Spray Characteristics Injected by Hole-Type Nozzle for D.I. Diesel Engine

机译:通过D.I.的孔型喷嘴喷射的小喷射量燃油喷雾特性柴油发动机

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摘要

Spray characteristics under very small injection amount injected by the hole-type nozzle for a D.I. Diesel engine were investigated using the spray test rig consisting a high-pressure and high-temperature constant volume vessel with optical accesses and a common rail injection system. The Laser Absorption Scattering (LAS) technique was used to visualize the liquid and vapor phase distributions in the evaporating spray. In the very small injection amount condition of the evaporating and free (no wall impingement) spray, the both spray tip penetration and spray angle are larger than those of the non-evaporating free spray. This tendency contradicts the previous observation of the diesel spray with large injection amount and the quasi steady state momentum theory. In the case of the spray impinging on a 2-dimensional piston cavity wall, the spray tip penetration of the evaporating spray is larger than that of the non-evaporating spray. Discussion was made on the mechanisms behind these spray behaviors.
机译:通过D.I.的孔型喷嘴在非常小的喷射量下的喷雾特性使用喷雾试验台对柴油机进行了研究,该试验台由具有高温通道的高压高温恒容容器和共轨喷射系统组成。激光吸收散射(LAS)技术用于可视化蒸发喷雾中的液相和气相分布。在蒸发和自由(无壁撞击)喷雾的极小喷射量条件下,喷嘴的针入度和喷雾角度均大于非蒸发的自由喷雾。这种趋势与以前对大喷射量的柴油机喷雾和准稳态动量理论的先前观察相矛盾。在喷雾撞击在二维活塞腔壁上的情况下,蒸发喷雾的喷嘴尖端穿透率大于非蒸发喷雾的尖端穿透率。对这些喷雾行为背后的机制进行了讨论。

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