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Flow controlling on low pressure turbine using passive methods

机译:使用被动方法的低压涡轮机流量控制

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Flow control in low pressure turbine using passive devices is efficient technique to raise the efficiency of engine. In this study T106A LP Turbine geometry is used for controlling the flow separation using passive device. A lot of work is done for flow controlling using different kind of passive devices like dimples, bumps, riblets etc. Work on the backward step geometry for controlling the flow separation is not done effectively. Fine structured mesh is created with boundary layer (y + <; 1) an unstructured meshing in the rest of the domain. Unsteady RANS are solved using the Gamma-Theta Model Transitional Model for capturing the laminar separation bubble. In this study a smooth backward step of different height to length ratios (h/1) are applied on the 65% axial chord length for the reduction of loss coefficient which is another way to specify the efficiency of turbine using pressure values. After specifying the best h/1 ratio at 65% axial chord where the losses are minimum, this specific h/1 ratio step is shifted at different axial locations to And out the optimal location where the maximum losses are reduced. By making the coefficient of pressure plots and boundary layer profiles, it has been confirmed that backward step completely control the laminar separation bubble and also reduce the loss coefficient.
机译:使用无源设备的低压涡轮机中的流量控制是提高发动机效率的有效技术。在本研究中,使用T106A LP涡轮几何来控制使用无源设备的流动分离。使用不同类型的无源设备(如酒窝,隆起,肋骨等)进行流量控制需要做大量工作。用于控制流分离的后退几何形状的工作并未有效完成。使用边界层(y + <; 1)创建精细的结构化网格,在其余区域中使用非结构化网格划分。非稳态RANS通过使用Gamma-Theta模型过渡模型来捕获层流分离气泡来解决。在这项研究中,对65%的轴向弦长应用了不同的高度与长度之比(h / 1)的平滑后退,以降低损耗系数,这是使用压力值指定涡轮机效率的另一种方法。在损耗最小的65%轴向弦上指定最佳h / 1比率后,此特定的h / 1比率步长在不同的轴向位置处移至,然后移出减少最大损耗的最佳位置。通过绘制压力图和边界层轮廓的系数,可以确认后退台阶完全控制了层流分离气泡,并降低了损耗系数。

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