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Temperature Field Measurement Research in High-speed Diesel Engine Using Laser Induced Fluorescence Technology

机译:激光诱导荧光技术高速柴油机温度场测量研究

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Temperature laser- induced- fluorescence (LIF) 2-D imaging measurements using a new multi-spectral detection strategy are reported for high pressure flames in high-speed diesel engine. Schematic of the experimental set-up is outlined and the experimental data on the diesel engine is summarized. Experiment injection system is a third generation Bosch high-pressure common rail featuring a maximum pressure of 160 MPa. The injector is equipped with a six-hole nozzle, where each hole has a diameter of 0.124 mm. and slightly offset (by 1.0 mm) to the center of the cylinder axis to allow a better cooling of the narrow bridge between the exhaust valves. The measurement system includes a blower, which supplied the intake flow rate, and a prototype single-valve direct injection diesel engine head modified to lay down the swirled-type injector. 14-bit digital CCD cameras are employed to achieve a greater level of accuracy in comparison to the results of previous measurements. The temperature field spatial distributions in the cylinder for different crank angle degrees are carried out in a single direct-injection diesel engine.
机译:在高速柴油发动机中报告了使用新的多光谱检测策略的温度激光诱导 - 荧光(LiF)2-D成像测量。概述了实验组的示意图,总结了柴油发动机上的实验数据。实验注射系统是第三代博世高压公共轨,具有160 MPa的最大压力。喷射器配备有六孔喷嘴,其中每个孔的直径为0.124mm。并且略微偏移(按1.0mm)到圆柱轴的中心,以允许更好地冷却排气阀之间的窄桥。测量系统包括供应进气速率的鼓风机,并且改变原型单阀直喷柴油发动机头以铺设旋转式注射器。与先前测量的结果相比,使用14位数字CCD相机来实现更大的精度。用于不同曲柄角度度的气缸中的温度场空间分布在单个直喷柴油发动机中进行。

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