首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >ROTORDYNAMIC FORCE PREDICTION OF AN UNSHROUDED RADIAL INFLOW TURBINE USING COMPUTATIONAL FLUID DYNAMICS
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ROTORDYNAMIC FORCE PREDICTION OF AN UNSHROUDED RADIAL INFLOW TURBINE USING COMPUTATIONAL FLUID DYNAMICS

机译:应用计算流体力学预测无节流径向涡轮的动动力

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Cross-coupled forces due to bladed components, bearings and seals can contribute to destabilizing a rotor system and are an important input to the rotordynamic design of turbomachinery. Alford (1965) developed a simple formula for describing the cross-coupled mechanism of an unshrouded axial turbine stage. The high flow radial inflow turbine studied here can exhibit similar characteristics due to its long stage length. In this work, a transient computational solution is developed to predict cross-coupling stiffness of an unshrouded turbo-expander. The three-dimensional computational fluid dynamics (CFD) model includes the flow path from the inlet guide vanes (IGV's) to the exit of the radial inflow turbine. A 360 degree model of the flow path is used to simulate the turbine centered at its axis of rotation while the shroud is displaced a small distance from the axis of rotation. This offset simulates the uneven blade tip clearance that is present in a whirling rotor. Unsteady effects are included using a time-transient simulation while time-averaged forces acting on the turbine are used to calculate the cross-coupling aerodynamic coefficients. The rotordynamic coefficients calculated using this method are compared to both the Alford equation and formulations used for shrouded centrifugal compressor impellers.
机译:由于叶片部件,轴承和密封件产生的交叉耦合力会导致转子系统不稳定,并且是涡轮机械转子动力学设计的重要输入。 Alford(1965)开发了一个简单的公式来描述无罩轴流式涡轮机级的交叉耦合机制。此处研究的大流量径流式涡轮机具有较长的级长,因此可以表现出相似的特性。在这项工作中,开发了一种瞬态计算解决方案来预测无罩涡轮膨胀机的交叉耦合刚度。三维计算流体动力学(CFD)模型包括从进口导流叶片(IGV)到径向流入涡轮机出口的流路。流道的360度模型用于模拟以涡轮机旋转轴为中心的涡轮机,同时护罩与旋转轴之间的距离很小。该偏移量模拟了回旋转子中出现的不均匀的叶尖间隙。使用时间瞬变模拟可包括非定常效应,而作用在涡轮上的时间平均力可用于计算交叉耦合空气动力学系数。使用此方法计算出的转子动力系数与Alford方程和带罩式离心压缩机叶轮所使用的公式进行了比较。

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