首页> 外文会议>9th Annual Conference on Liquid Atomization and Spray Systems(ILASS-ASIA 2004) >Study of the Injection Flow of Single-channel Single-injection and Dual-channel Dual-injection of Thermal Bubble Micropump on Locomotive Fuel Atomization System
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Study of the Injection Flow of Single-channel Single-injection and Dual-channel Dual-injection of Thermal Bubble Micropump on Locomotive Fuel Atomization System

机译:机车燃油雾化系统中热气泡微泵单道单道双道双道喷射的喷射流研究

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This study applies thermal bubble micropump to the injector of the fuel atomizer of motorbike, and uses Stoddard solvent as work fluid to conduct numerical simulation flow analysis on single-channel single-injection and dual-channel dual-injection data, in order to compare the speed, shape, and path of the injected droplet, the internal flow of the micropump, and work fluid replenishment after injection. The diameter of the injection head is 50 μ m, make and move frequency is 5kHz. The work fluid and external air is incompressible fluid. The governing equations are conservation equation of mass and momentum. Volume-Of-Fluid (VOF) method is used to discretize the size and motion path of the injected droplets. Finite Volume method is used to disperse the governing equation, then SIMPLEC algorithm is used for solution procedure. The result shows that in dual-channel dual-injection case, the injectors, due to separate connection to convergent and divergent replenish channel, the different pressure of replenish channel exerted during the injection process leads to different injection speed, as well as length and shape of droplets. During the replenish process, the dual-channel dual-injection test object uses different channels for convergent and divergent replenishment. Therefore, dual-channel dual-injection results in superior fluid replenish rate than that of single-channel single-injection.
机译:本研究将热气泡微型泵应用于摩托车燃油雾化器的喷射器,并以Stoddard溶剂为工作流体对单通道单喷射和双通道双喷射数据进行数值模拟流动分析,以比较注入液滴的速度,形状和路径,微型泵的内部流量以及注入后的工作液补充。注射头的直径为50μm,接通和移动频率为5kHz。工作流体和外部空气是不可压缩的流体。控制方程是质量和动量的守恒方程。流体体积(VOF)方法用于离散化所注入液滴的大小和运动路径。用有限体积法分散控制方程,然后用SIMPLEC算法求解。结果表明,在双通道双进样的情况下,由于分别连接到会聚和发散的补油通道,这些喷油器在注射过程中施加的补油通道压力不同,导致注射速度,长度和形状不同。的水滴。在补给过程中,双通道双注入测试对象使用不同的通道进行会聚和发散补给。因此,双通道双进样比单通道单进样具有更高的补液率。

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