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COMPARISON OF BLADE COOLING PERFORMANCE USING ALTERNATIVE FLUIDS

机译:替代流体的叶片冷却性能的比较

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CO_2 emissions reduction has become an important topic, especially after Kyoto protocol. There are several ways to reduce the overall amount of CO_2 discharged into the atmosphere, for example using alternative fluids such as steam or CO_2. It is therefore interesting to analyze the consequences of their usage on overall performances of gas turbine and blade cooling systems. The presence of steam can be associated with combined or STIG cycle, whereas pure carbon dioxide or air-carbon dioxide mixtures are present in innovative cycles, where the exhaust gas is recirculated partially or even totally. In this paper we will analyze a commercial gas turbine, comparing different fluids used as working and cooling fluids. The different nature of the fluids involved determines different external heat transfer coefficients (external blade surface), different internal heat transfer coefficients (cooling cavities) and affects film cooling effectiveness, resulting in a change of the blade temperature distribution. Results show that the presence of steam and CO_2 could determine a non negligible effect on blade temperature. This means that cooling systems need a deep investigation. A redesign of the cooling system could be required. In particular, results show that steam is well suited for internal cooling, whereas CO_2 is better used in film cooling systems.
机译:CO_2减少减少已成为一个重要的主题,特别是在京都议定书后。有几种方法可以将放电进入大气中的CO_2的总量降低,例如使用诸如蒸汽或CO_2的替代流体。因此,有趣的是分析它们对燃气轮机和叶片冷却系统的总体性能的影响。蒸汽的存在可以与组合或置型循环相关,而纯二氧化碳或空气 - 二氧化碳混合物存在于创新循环中,其中排气部分地甚至完全再循环。在本文中,我们将分析一种商业燃气轮机,比较用作加工和冷却流体的不同流体。涉及的流体的不同性质决定了不同的外部传热系数(外叶片表面),不同的内部传热系数(冷却腔)并影响薄膜冷却效果,从而改变叶片温度分布。结果表明,蒸汽和CO_2的存在可以确定对叶片温度的不可忽略的影响。这意味着冷却系统需要深入调查。可以需要重新设计冷却系统。特别是,结果表明,蒸汽非常适合内部冷却,而CO_2在薄膜冷却系统中最好使用。

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