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TWO-PHASE CFD-CALCULATIONS FOR THE DESIGN OF WATER-BASED TURBINE CLEANING SYSTEMS FOR TURBOCHARGERS

机译:用于涡轮增压器水性涡轮清洗系统设计的两相CFD计算

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Turbochargers operated with heavy fuel oil are subjected to deposition of combustion residues on stator vanes, the turbine rotor and turbine casing. Without appropriate measures the turbine stage efficiency drops. Moreover, in severely contaminated turbine stages clogging of whole stator channels can occur, which results in unwanted turbine excitation and ultimately failure. To assure a constantly high level of efficiency and mechanical integrity turbochargers operated with critical fuels are equipped with an online turbine cleaning system that is based on the injection of water. The water is injected such that the whole stator is evenly wetted with water and ultimately cleaned. The design of modern cleaning systems is based on two-phase computational fluid dynamics (CFD) simulations, where water-jets are tracked throughout the computational domain, commonly in a Lagrangian way. Multiple physical phenomena are considered, e.g. turbulent interaction with the gas phase and droplet break-up within the liquid spray, where the latter has a direct influence on spray penetration depth and finally the proper design of the cleaning system. This paper presents a validation of spray modeling in the relevant Weber and Reynolds number regime, with emphasis on the droplet break-up model. The numerical results are compared with LIF and laser diffraction measurements of the water spray in cross flow in terms of concentration and droplet size distribution. Finally, the validated and improved model is applied to re-calculate a real world application: the state-of-the-art cleaning system of a turbocharger again thoroughly validated against the test bench measurements.
机译:用重型燃料油操作的涡轮增压器经受定子叶片,涡轮转子和涡轮机壳体的燃烧残渣沉积。不适当衡量涡轮机级效率下降。此外,在严重污染的涡轮机阶段,可能发生整个定子通道的堵塞,这导致不需要的涡轮机激励并最终发生故障。为了确保使用临界燃料操作的不断高度的效率和机械完整性涡轮增压器,配备了一个基于注入水的在线涡轮机清洁系统。注入水使得整个定子用水均匀润湿并最终清洁。现代清洁系统的设计基于两相计算流体动力学(CFD)模拟,其中在整个计算领域跟踪水喷射,通常以拉格朗日方式。考虑多种物理现象,例如,湍流相互作用与气相和液滴在液体喷雾内分解,其中后者对喷射穿透深度的直接影响,最后是清洁系统的适当设计。本文介绍了相关韦伯和雷诺数制度的喷雾建模验证,重点是液滴分解模型。在浓度和液滴尺寸分布方面,将数值结果与横流中的水喷射的LiF和激光衍射测量进行比较。最后,应用了验证和改进的模型来重新计算真实世界的应用:涡轮增压器的最先进的清洁系统再次彻底验证测试台阶测量。

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