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A high-speed all-digital technique for cycle-resolved 2-D flow measurement and flow visualisation within SI engine cylinders

机译:高速全数字技术,用于SI发动机气缸内循环解析的二维流量测量和流量可视化

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摘要

Particle image velocimetry (PIV) is now a well-established planar flow measurement technique for the study of in-cylinder flow fields in internal combustion engines. Here the authors describe a turnkey, high-speed digital imaging system that provides combined real-time flow visualisation and rapidly processed PIV data in an industrial optical research engine facility. The system is based on commercially available, high-speed imaging and laser technology and conventional digital cross-correlation processing to provide cycle-resolved PIV data and flow visualisation within temescales appropriate for engine development. A simple variation on the synchronisation scheme also allows the acquisition of tens to thousands of flow visualisation sequences and PIV maps at the same crank angle, thus giving the potential for the study of cycle-to-cycle flow variability and its effect on combustion stability in a suitably instrumented optical engine. The technique may also find applications in other unsteady or oscillatory flows of importance in aerodynamics, acoustics, mixing, and heat transfer.
机译:粒子图像测速技术(PIV)现在是一种成熟的平面流量测量技术,用于研究内燃机的缸内流场。在这里,作者描述了一个交钥匙的高速数字成像系统,该系统可在工业光学研究引擎设施中提供实时流量可视化和快速处理的PIV数据的组合。该系统基于市售的高速成像和激光技术以及常规的数字互相关处理,以在适合发动机开发的定标尺内提供周期解析的PIV数据和流量可视化。同步方案的简单变化还允许在相同的曲柄角下获取数十至数千个流动可视化序列和PIV图,从而为研究循环间流动变化及其对燃烧稳定性的影响提供了潜力。适当装备的光学引擎。该技术还可以在空气动力学,声学,混合和传热中其他重要的不稳定或振荡流动中找到应用。

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