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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Analytical Blade Row Cooling Model for Innovative Gas Turbine Cycle Evaluations Supported by Semi-Empirical Air-Cooled Blade Data
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Analytical Blade Row Cooling Model for Innovative Gas Turbine Cycle Evaluations Supported by Semi-Empirical Air-Cooled Blade Data

机译:半经验风冷叶片数据支持的创新型燃气轮机循环评估用分析叶片行冷却模型

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摘要

With the objective of performing reliable innovative gas turbine cycle calculations, a new procedure aimed at evaluating blade cooling performance is presented. This complete analytical (convective and film) blade cooling modeling provides the coolant mass flow and pressure loss estimation, and is a useful tool in the field of innovative gas turbine cycle analysis, mainly when alternative fluids are considered. In this case, in fact, the conventional semi-empirical data based on the use of air as traditional coolant and working media are no longer suitable. So the analytical approach represents a way of properly investigating alternative cooling methods and fluids. In the presented analysis the effects of internal blade geometry on cooling performance are summarized by the Z parameter, which also highly affects the coolant flow pressure losses. Since existing technology represents a natural starting point for the assessment of Z, the model is able to automatically estimate a proper value relying only on available semi-empirical data which were established for air-cooled gas turbine blades. When alternative fluids are considered, the same estimated value of Z is still maintained for the calculation, with the result of investigating the performance of existing blade technology for novel operational conditions. This represents an example of how the analytical approach, supported by conventional air-cooled blade semi-empirical data, appears as an innovative tool in the analysis of novel gas turbine cycles. In fact, the simulation results for the cooled blade were easily employed on the whole system level (gas turbine).
机译:为了执行可靠的创新型燃气轮机循环计算,提出了一种旨在评估叶片冷却性能的新程序。这种完整的分析(对流和薄膜)叶片冷却模型可提供冷却剂质量流量和压力损失估算,并且在创新型燃气轮机循环分析领域(主要是在考虑替代流体时)是有用的工具。实际上,在这种情况下,基于将空气用作传统冷却剂和工作介质的常规半经验数据已不再适用。因此,分析方法代表了一种正确研究替代冷却方法和流体的方法。在提出的分析中,Z参数总结了叶片内部几何形状对冷却性能的影响,该参数也极大地影响了冷却液流量压力损失。由于现有技术代表了评估Z的自然起点,因此该模型能够仅依靠为空冷燃气轮机叶片建立的可用半经验数据自动估算适当的值。当考虑使用替代流体时,仍将使用相同的Z估算值进行计算,其结果是研究了在新型工况下现有叶片技术的性能。这代表了一个示例,该示例说明了如何在常规风冷叶片半经验数据的支持下将分析方法作为一种创新工具,用于分析新型燃气轮机循环。实际上,冷却叶片的仿真结果很容易在整个系统级别(燃气轮机)上使用。

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