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Modelling of steady and quasi-steady flows within a flat disc type armature fuel injector

机译:平板型电枢燃料喷射器内稳态和准稳态流动的建模

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The internal flow in the fully open stage, opening and closing stage within an automotive fuel injector with flat disc type armature are studied in this work. The physical domain includes the region from top of the armature to the exit of the injector orifice, where most of the pressure drop occurs. Because of symmetry, only one-quarter of the physical domain is considered. The FLUENT software was applied to obtain the numerical solutions. In this model, the flow was assumed to be isothermal and incompressible. Predicted static flow rates provide good agreements with the experimental measurements. For the transient condition, 20, 40, 60 and 80 micrometer of armature lift was modeled. The main results included comparisons between pressure and velocity contours in the various armature lifts and also variation of outlet flow velocity and flow rate, discharge coefficient versus armature lifts were studied.
机译:在这项工作中,研究了在具有平坦盘式电枢的汽车燃料喷射器内的完全开放阶段,开路和关闭阶段的内部流动。物理域包括从电枢顶部的区域到喷射器孔的出口,其中大部分压降发生。由于对称性,考虑只有四分之一的物理域。流利的软件应用于获得数值解决方案。在该模型中,假设流动是等温和不可压缩的。预测的静态流速与实验测量提供了良好的协议。对于瞬态条件,建模20,40,60和80微米的电枢升力。主要结果包括各种电枢升降机中的压力和速度轮廓之间的比较以及出口流速和流量的变化,研究了排出系数与电枢升降机。

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