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ACCOUNTING FOR UNCONTROLLED VARIATIONS IN LOW-SPEED TURBINE EXPERIMENTS

机译:低速涡轮实验中不受控制的变化的会计处理

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It is common to assume that the performance of low-speed turbines depend only on the flow coefficient and Reynolds number. As such the required operating point is achieved by controlling the values of these two non-dimensional quantities by, for example, appropriate choices for the mass flow rate and applied brake torque. However, when the turbine has an atmospheric inlet and uses unconditioned air, variations in ambient pressure, temperature and humidity are introduced. Whilst it is still possible to maintain the required values for the flow coefficient and Reynolds number, the ambient variations affect additional non-dimensional quantities which are related to the blade speed and gas properties. Generally, the values of these additional non-dimensional quantities cannot be controlled and, consequently, they affect the turbine performance. In addition, thermal effects, which are exacerbated by the use of plastic blades, can cause changes in the blade row seal clearance and these also affect the performance. Therefore to obtain measurements with greater accuracy and repeatability, the changes in the uncontrolled non-dimensional quantities must be accounted. This paper contains four parts. Firstly, it is described how suitable data acquisition parameters can be determined to eliminate short time scale facility unsteadiness within the measurements. Secondly, by the analysis of models, the most appropriate forms for the additional non-dimensional quantities that influence turbine performance are obtained. Since the variations in the uncontrolled non-dimensional quantities affect repeatability the size of the effect on the turbine performance is quantified. Thirdly, a best-fit accounting methodology is described which reduces the effects of the uncontrolled non-dimensional quantities on turbine performance provided sufficient directly related measurements are available. Finally, the observations are generalised to high-speed turbomachines.
机译:通常认为低速涡轮机的性能仅取决于流量系数和雷诺数。这样所需要的工作点是由通过控制这两个无量纲量的值,例如实现,该质量流率和所施加的制动转矩适当的选择。然而,当涡轮机具有大气入口并且使用未调节的空气时,会引入环境压力,温度和湿度的变化。尽管仍然可以保持流量系数和雷诺数的所需值,但环境变化会影响与叶片速度和气体特性有关的其他无量纲数量。通常,这些附加的无量纲值的值无法控制,因此,它们会影响涡轮机的性能。此外,使用塑料叶片会加剧热效应,这会导致叶片排密封间隙的变化,这些也会影响性能。因此,为了获得更高的准确性和可重复性的测量结果,必须考虑不受控制的无量纲量的变化。本文分为四个部分。首先,描述了如何确定合适的数据采集参数以消除测量中的短时间尺度的设备不稳定。其次,通过模型分析,获得了影响汽轮机性能的其他无量纲量的最合适形式。由于不受控制的无量纲数量的变化会影响可重复性,因此对涡轮性能的影响大小进行了量化。第三,描述了一种最合适的核算方法,该方法可以减少不受控制的无量纲数量对涡轮机性能的影响,只要有足够的直接相关的测量值可用。最后,这些观察结果被推广到高速涡轮机上。

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