卡普兰涡轮空化现象的监测

B. Širok, M. Hočevar, I. Kern, M. Novák
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引用次数: 10

摘要

水机中的空化现象通常会对水轮机的重要部件造成机械损伤。由于气蚀通常是频繁和不可预测的,因此开发一种监测方法非常重要。现有的水轮机空化检测方法是基于对水轮机壳体压力脉动、声发射和机械振动的观测。上述变量的动态特性变化可以进行实证分析,并测量空化及其后果的存在。在汽轮机的关键部件上,采用了一种新的空化检测方法。空化是一种两相现象(气体在液相中流动),当对控制体积使用适当的照明时,可以在光学上建立。采用计算机辅助可视化的方法对涡轮流场中的空化拓扑结构进行实时评价。在某型号卡普兰水轮机上试验了一种新的空化监测方法,该方法在计算机辅助可视化的基础上,同时观测了各种积分参数。该程序在不同的积分操作制度下进行了测试和执行。研究结果表明,可视化方法最适合于空化监测;然而,在这一研究领域应作出进一步努力。
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Monitoring of the cavitation in the Kaplan turbine
The phenomena of cavitation in water machines usually causes mechanical damage to the vital parts of the turbine. Because cavitation is usually frequent and unpredictable, the development of a monitoring method is of great importance. Present methods for cavitation detection in water turbines are based on observation of pressure pulsations, acoustic emission and mechanical vibrations on the turbine casing. Changes of dynamic properties of the above variables enable empirical analysis and are measured for the presence of the cavitation and its consequences. On the vital parts of the turbine, a new method of cavitation detection was implemented. Cavitation, a two-phase phenomenon (gas flow in the liquid phase), can be optically established when using proper illumination of the control volume. A method of computer-aided visualization was used, which offers real time evaluation of the cavitation topological structures in the turbine flow field. A new method of cavitation monitoring was tested on a model Kaplan turbine where, besides the computer-aided visualization, various integral parameters were simultaneously observed. The procedure was tested and performed in different integral operational regimes. Results of the study indicate that visualization method is the most suitable for cavitation monitoring; further effort however should be made in this research sphere.
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