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Simultaneous Measurements of In-Cylinder Temperature and Velocity Distribution in a Small-Bore Diesel Engine Using Thermographic Phosphors

机译:利用热成像仪同时测量小缸径柴油机缸内温度和速度分布

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摘要

In-cylinder temperature and velocity fields were quantified simultaneously in an optically accessible, small-bore diesel engine. A technique utilizing luminescence from Pr:YAG phosphor particles aerosolized into the intake air was used for temperature determination while particle image velocimetry (PIV) on the aforementioned phosphor particles was used to simultaneously measure the velocity field. The temperature and velocity fields were measured at different points throughout the compression stroke up to -30 CAD. Systematic interference due to emission from the piston window reduced the accuracy of the measurements at crank angles closer to TDC. Single-shot simultaneous measurements of the temperature and velocity fields were made using both unheated and heated intake temperatures. In both cases, cycle-to-cycle variations in the temperature and velocity fields were visible. The single-shot temperature precision was estimated to be 30 K and 20 K respectively for the unheated and heated intake air cases at -30 CAD. Temperature determined with the diagnostic agreed with conventionally accepted methods for estimating the in-cylinder bulk gas temperature.
机译:在光学可访问的小口径柴油发动机中,同时量化了缸内温度和速度场。利用从雾化到进气中的Pr:YAG磷光体颗粒发光的技术确定温度,同时使用上述磷光体颗粒的粒子图像测速(PIV)同时测量速度场。在整个压缩行程的最高点-30 CAD处,在不同点测量温度和速度场。由于从活塞窗口发射的系统干扰降低了曲柄角更接近TDC时的测量精度。使用未加热和加热的进气温度对温度和速度场进行单次同时测量。在这两种情况下,温度和速度场的周期变化都是可见的。对于未加热和加热的进气情况,单次温度精度估计分别为30 K和20 K,为-30 CAD。通过诊断确定的温度与常规的估计缸内散装气体温度的方法一致。

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