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AERODYNAMIC ANALYSIS USING CFD FOR GAS TURBINE COMBUSTION CHAMBER

机译:用于燃气轮机燃烧室CFD的空气动力学分析

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In the past few years, with the development of advanced numerical computational codes, numerical simulation became a promising option to developing and improving the technology in different fields. The obtained results by simulations are used to get important information during the design phase or optimization of industrial equipment. Its employment generates reliable results at low cost due to the reduced number of experiments as well as the opportunity to develop new products and perform many simulations before its production. However, the numerical simulation credibility can only be verified when compared to the obtained results by experiments. This work aims to present and evaluate different aerodynamics models applied to combustion chambers using a CFD tool. In addition, aerodynamic analysis is made in a model of combustion chamber, where the flow is simulated with successive refining of the mesh as part of its validation process. For it, it is used a Low NO{sub}x Emission Combustion Chamber from Floxcom project as reference to validate turbulence models. Once that it is done, the selected turbulence model with satisfactory precision is used to describe the aerodynamic behavior of an annular combustion chamber from velocity and pressure distribution, which are important parameters to set load losses and recirculation intensity, which can affect the complex phenomenon of combustion.
机译:在过去几年中,随着先进的数值计算代码的发展,数值模拟成为在不同领域开发和改进技术的有前途的选择。通过模拟获得的结果用于在工业设备的设计阶段或优化期间获得重要信息。由于实验数量减少以及开发新产品的机会并在其生产之前进行了许多模拟,因此其就业产生了低成本的可靠性结果。但是,与通过实验的获得的结果相比,才能验证数值模拟可信度。该工作旨在使用CFD工具呈现和评估应用于燃烧室的不同空气动力学模型。此外,在燃烧室模型中进行空气动力学分析,其中流程是用啮合的连续精制模拟,作为其验证过程的一部分。因为它,它是从Floxcom项目的低No {Sub} X发射燃烧室作为参考,以验证湍流模型。一旦完成,就可以使用令人满意的精度来描述环形燃烧室与速度和压力分布的空气动力学行为,这是设定负载损失和再循环强度的重要参数,这可能影响复杂的现象燃烧。

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