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首页> 外文期刊>Journal of Mechanical Science and Technology >Spray characteristics of the rotating fuel injection system of a micro-jet engine
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Spray characteristics of the rotating fuel injection system of a micro-jet engine

机译:微型喷气发动机旋转燃油喷射系统的喷雾特性

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摘要

In micro-turbojet engines with less than 350 kW power, it is not easy to find a suitable fuel injector with good spray quality. However, the rotating fuel injection system can potentially provide high atomization quality without the high-pressure fuel pump through the centrifugal forces of the engine shaft. With this motivation, a very small rotating fuel injector with 40 mm diameter is designed for the micro-turbo jet engine. It is directly linked to a high-speed rotational spindle capable of a speed up to 100,000 rpm. The droplet size, velocity, and spray distribution from the PDPA (Phase Doppler Particle Analyzer) system are measured. The spray is also visualized by a high-speed camera. The test results show that the length of liquid column from injection orifice is controlled by the rotational speeds and that SMD (Sauter Mean Diameter) is decreased with increasing rotational speeds. At a rotational speed of 73.3 m/s (35,000 rpm), SMD is lower than 60 μm at the entirety of the measuring space in the case of Type 2 (injection orifice diameter of 1.5 mm) and Type 3 (injection orifice diameter of 2.2 mm). Therefore, conceptually, it is possible to apply this small rotating fuel injection system to the micro-turbojet engine combustor.
机译:在功率低于350 kW的微型涡轮喷气发动机中,很难找到具有良好喷雾质量的合适喷油嘴。但是,旋转燃料喷射系统可以通过发动机轴的离心力在没有高压燃料泵的情况下潜在地提供高雾化质量。出于这种动机,为微型涡轮喷气发动机设计了直径为40 mm的非常小的旋转燃油喷射器。它直接连接至转速高达100,000 rpm的高速旋转主轴。测量来自PDPA(相位多普勒颗粒分析仪)系统的液滴尺寸,速度和喷雾分布。喷雾也可以通过高速摄像机看到。测试结果表明,从注射孔到液柱的长度受转速控制,并且随着转速的提高,SMD(索特平均直径)减小。在类型2(进样口直径为1.5 mm)和类型3(进样口直径为2.2)的情况下,在73.3 m / s(35,000 rpm)的转速下,整个测量空间的SMD均低于60μm。毫米)。因此,从概念上讲,可以将此小型旋转燃料喷射系统应用于微型涡轮喷气发动机燃烧器。

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