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An Alternative Numerical Model for Investigating Three-Dimensional Steam Turbine Exhaust Hood

机译:一种研究三维汽轮机排气罩的替代数值模型

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摘要

A proper design of exhaust hood geometry is very much essential in order to improve the overall efficiency of the steam turbine plant. The geometry of the non-axisymmetric exhaust hood makes the fluid flow at the exit of the steam turbine to be radially and circumferentially non-uniform. This work involves computational simulation of steam turbine asymmetric exhaust hood flows by incorporating the actuator-disc concept. The ANSYS FLUENT, finite volume based CFD solver is used for the present computational study. In the present simulation, the implementation of actuator disc boundary conditions with and without tip leakage is described in detail. The Actuator disc model approach exhibits a similar steam turbine exhaust hood flow asymmetry and static pressure recovery compared with the results reported in the literature, highlighting the applicability of the present model in coupling the rotor tip leakage jet with the steam turbine hood flow structure with less computational effort.
机译:排气罩几何形状的适当设计对于提高汽轮机厂的整体效率非常重要。 非轴对称排气罩的几何形状使得流体流动在蒸汽轮机的出口处径向和周向不均匀。 这项工作涉及通过结合致动器盘概念来计算蒸汽轮机不对称排气罩流动的计算模拟。 基于ANSYS流畅的有限体积的CFD求解器用于本计算研究。 在本模拟中,详细描述了具有和不具有尖端泄漏的致动器盘边界条件的实现。 致动器盘模型方法表现出类似的蒸汽轮机排气罩流量不对称和静压回收,与文献中报道的结果相比,突出了本模型在耦合转子尖端泄漏射流与蒸汽轮机罩流动结构较少的应用 计算努力。

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