带与不带双锥形支板的环形扩散器传热建模与分析

K. Muninathan, R. R. Thirumaniraj, M. A. Suryanarayanan
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引用次数: 7

摘要

在推进和动力系统中,排气扩散器是燃气轮机的关键部件。影响其性能的主要因素是面积比、发散角和发生扩散的流道长度。压力恢复系数和压力损失系数、静压和总压之间的关系以及性能图通常用于确定扩散器的性能。本文的主要目的是对环形扩压器的各种流动特性进行详细的分析,确定支板对排气扩压器流动参数和整体性能的影响。考虑了两种不同结构的环空扩压器,即基线型和锥形型扩压器,以及它们与流道中没有任何结构的相同扩压器模型的比较。利用预处理工具CATIA对扩散器进行建模和网格划分。本文采用STAR−CCM+计算流体力学软件,基于有限体积法,求解三维Reynolds平均Navier-Stokes方程,对扩压器内部流动特性进行了数值模拟,并分析了支板的影响。详细讨论了数值模拟的细节、求解过程、湍流模型、边界条件、得到的结果和得出的结论。
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Heat Transfer Modeling And Analysis of Annular Diffuser With and Without Double Tapered Struts
Exhaust diffusers are critical components of gas turbines in both propulsion and power system applications. The factors influencing their performance are predominantly the area ratio, divergence angle and the length of the flow path over which diffusion occurs. Pressure recovery and pressure loss coefficients, relationships between static and total pressure and performance maps are generally used to determine diffuser’s performance. The main aim of the present work is to make a detailed analysis on various flow characteristics of the annular diffuser and determine the effect of struts on both the flow parameters and the overall performance of the exhaust diffuser. The cases under consideration are the annular diffuser with two different strut configuration namely the baseline and the tapered struts, and their comparison with the same diffuser model without any strut in the flow path. The diffuser is modeled and meshed using the pre-processor tool CATIA. In the present investigation, numerical simulation is carried out using STAR−CCM+, computational fluid dynamics software, which is based on the finite volume method and solves the three-dimensional Reynolds averaged Navier-Stokes equations, to predict the flow characteristics inside the diffuser and analyses the effect of struts. The details of the numerical simulation, solution procedure, turbulence model, boundary conditions, results obtained and the conclusions arrived at the results were discussed in detail.
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