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首页> 外文期刊>International journal of engine research >Development and evaporation of group-hole nozzle sprays under various surrounding and impinging conditions of direct-injection diesel engines
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Development and evaporation of group-hole nozzle sprays under various surrounding and impinging conditions of direct-injection diesel engines

机译:直喷式柴油机在各种环境和撞击条件下组孔喷嘴喷雾的产生和蒸发

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摘要

In the present study, penetration and evaporation of the diesel sprays injected by a group of two closely spaced orifices (a group-hole nozzle) were investigated and compared with those of conventional single-hole nozzle sprays under various engine loads and wall-impinging conditions of direct-injection (DI) diesel engines. Both free and wall-impinging conditions were considered. The experiments were performed inside a constant-volume vessel under simulated ambient conditions for low and high engine loads of DI diesel engines. To investigate the effect of spray targeting, two impinging conditions (impingement angles of 45° and 90° with the same impingement distance) were applied. Geometry and liquid/vapour mass distributions of the evaporating diesel sprays were analysed using a laser absorption scattering (LAS) technique. Under a free spray condition, fuel evaporation of the group-hole nozzle spray was improved compared with that of the single-hole nozzle spray at low load conditions, while it showed simultaneous deterioration in fuel evaporation and spray tip penetration at high load conditions. Jet axes deflection of the two jets from the group-hole nozzle, which generated a dense liquid region at the central region of the spray, was responsible for this deteriorated evaporation at high load conditions. Under a vertical impingement condition (impingement angle of 90°), the group-hole nozzle spray showed simultaneous improvement in spray tip penetration and fuel evaporation at both low and high load conditions from strong momentum interaction of the two jets on the impingement wall. However, this improvement from the group-hole nozzle did not appear at an inclined wall-impingement condition (impingement angle of 45°) owing to weakened and delayed momentum interaction of the two jets. Both spray tip penetration and fuel evaporation of the group-hole nozzle spray were deteriorated at the inclined wall-impinging condition.
机译:在本研究中,研究了由两个紧密间隔的孔口(一个组孔喷嘴)喷射的柴油喷雾剂的渗透和蒸发,并与在各种发动机负载和壁撞击条件下传统的单孔喷嘴喷雾剂进行了比较。直喷(DI)柴油发动机的制造。自由和壁撞击条件都被考虑了。实验是在恒定容量的容器内在模拟环境条件下进行的,用于DI柴油机的低负荷和高负荷。为了研究喷雾瞄准的效果,应用了两个撞击条件(45°和90°的撞击角,相同的撞击距离)。使用激光吸收散射(LAS)技术分析了蒸发的柴油喷雾的几何形状和液体/蒸气的质量分布。在自由喷雾条件下,与在低负荷条件下的单孔喷嘴喷雾相比,组孔喷嘴喷雾的燃料蒸发得到了改善,而在高负荷条件下,燃油蒸发和喷嘴尖端渗透却同时恶化。来自群孔喷嘴的两个射流的射流轴偏转会在喷雾的中心区域产生密集的液体区域,这是造成高负载条件下蒸发恶化的原因。在垂直撞击条件下(撞击角度为90°),在低负荷和高负荷条件下,群孔喷嘴喷雾由于撞击壁上两个喷头的强烈动量相互作用而显示出喷头穿透和燃油蒸发的同时改善。但是,由于两个射流的动量相互作用减弱和延迟,在倾斜的壁撞击条件下(撞击角为45°),没有出现来自群孔喷嘴的改进。在倾斜的壁撞击条件下,喷头穿透和组孔喷嘴喷雾的燃料蒸发均恶化。

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