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Two-Phase Flow Modeling and Measurements in Low-Pressure Turbines-Part Ⅰ: Numerical Validation of Wet Steam Models and Turbine Modeling

机译:低压汽轮机的两相流建模和测量-第一部分:湿蒸汽模型和涡轮建模的数值验证

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摘要

In this publication, an overview of the current state of wetness modeling at the Institute of Thermal Turbomachinery and Machinery Laboratory (ITSM) is given. For the modeling, an Euler-Euler method implemented in the commercial flow solver ansys CFX is used. This method is able to take into account the nonequilibrium state of the steam and models the interactions between the gaseous and liquid phases. This paper is the first part of a two-part publication and deals with the numerical validation of wet steam models by means of condensing nozzle and cascade flows. A number of issues with regard to the quality of the computational fluid dynamics (CFD) code and the applied condensation models are addressed comparing the results to measurements. It can be concluded that a calibration of the models is necessary to achieve a satisfying agreement with the experimental results. Moreover, the modeling of the low pressure model steam turbine operated at the ITSM is described focusing on the asymmetric flow field in the last stage caused by the axial-radial diffuser. Different simplified axisymmetric diffuser models are investigated in steady state simulations, and the results and the arising issues for part-load, design-load, and over-load conditions are discussed. Thereafter, a comparison between the equilibrium and nonequilibrium steam modeling approaches is performed and the advantage of the nonequilibrium model is highlighted. The second part of the publication focuses on experimental investigations and compares the numerical results to wetness measurement data. For this purpose, different loads are also considered.
机译:在此出版物中,概述了热力透平机械研究所(ITSM)的湿度模型的当前状态。对于建模,使用在商业流量求解器ansys CFX中实现的Euler-Euler方法。该方法能够考虑蒸汽的非平衡状态,并模拟气相和液相之间的相互作用。本文是由两部分组成的出版物的第一部分,它通过冷凝喷嘴和级联流的方式处理湿蒸汽模型的数值验证。通过将结果与测量结果进行比较,可以解决许多与计算流体力学(CFD)代码和所应用的冷凝模型有关的问题。可以得出结论,必须对模型进行校准,才能与实验结果取得令人满意的一致性。此外,描述了在ITSM上运行的低压模型汽轮机的模型,着重介绍了由轴向-径向扩散器引起的最后阶段的不对称流场。在稳态仿真中研究了不同的简化轴对称扩散器模型,并讨论了结果以及部分负载,设计负载和过载条件下出现的问题。此后,进行了平衡和非平衡蒸汽建模方法之间的比较,并突出了非平衡模型的优点。该出版物的第二部分侧重于实验研究,并将数值结果与湿度测量数据进行比较。为此,还考虑了不同的负载。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第4期|042602.1-042602.11|共11页
  • 作者单位

    ITSM-Institute of Thermal Turbomachinery and Machinery Laboratory, University of Stuttgart, Pfatfenwaldring 6, Stuttgart D-70569, Germany;

    ITSM-Institute of Thermal Turbomachinery and Machinery Laboratory, University of Stuttgart, Pfaffenwaldring 6, Stuttgart D-70569, Germany;

    ITSM-Institute of Thermal Turbomachinery and Machinery Laboratory, University of Stuttgart, Pfaffenwaldring 6, Stuttgart D-70569, Germany;

    ITSM-Institute of Thermal Turbomachinery and Machinery Laboratory, University of Stuttgart, Pfaffenwaldring 6, Stuttgart D-70569, Germany;

    ITSM-Institute of Thermal Turbomachinery and Machinery Laboratory, University of Stuttgart, Pfaffenwaldring 6, Stuttgart D-70569, Germany;

    Siemens AG, Energy Sector, Rheinstrasse 100, Muelheim (Ruhr) D-45478, Germany;

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  • 入库时间 2022-08-18 00:20:47

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