首页> 外文会议>ASME turbo expo conference >PERFORMANCE MODELING METHODOLOGY: EFFICIENCY DEFINITIONS FOR COOLED SINGLE AND MULTISTAGE TURBINES
【24h】

PERFORMANCE MODELING METHODOLOGY: EFFICIENCY DEFINITIONS FOR COOLED SINGLE AND MULTISTAGE TURBINES

机译:性能建模方法:冷却单级和多级涡轮机的效率定义

获取原文

摘要

Quoting numbers for the efficiency of a turbine is ambiguous if it is not known how this efficiency is defined. This is especially true for a heavily cooled turbine where for the same machine the efficiency may be quoted as 88% or 91%, for example. In aero-engine industry, several different turbine efficiency bookkeeping systems are in use. Since nearly always a consortium of two or more companies is involved into any new engine project it is important to understand the various bookkeeping systems. Turbine designers and performance specialists should not quote a number for the efficiency of a cooled turbine without clearly stating on which methodology and control volume it is based. In this paper, the commonly used turbine performance bookkeeping methods are compared. The pros and cons for the different methodologies are discussed and correlations between the definitions are shown for single and multistage turbines with various amounts of cooling air. Furthermore it is pointed out, that simulating a cooled multistage turbine with an equivalent single-stage model requires the use of an equivalent Stator Outlet Temperature SOT_(eqv) which differs from the true SOT. It depends on the bookkeeping system used what the calculated impact on turbine performance is when the amount of cooling air changes. Without carefully adhering to a unique bookkeeping system with a clearly defined control volume the probability of misunderstandings in collaborative engine development projects is not to be underestimated.
机译:如果尚未知道如何定义这种效率,则引用涡轮机的效率是模糊的。对于具有同一机器的大量冷却涡轮机尤其如此,效率可以引用为88%或91%。在航空发动机行业中,正在使用几种不同的涡轮效率簿记系统。由于几乎始终是两个或更多公司的联盟涉及任何新的发动机项目,了解各种簿记系统非常重要。涡轮设计师和性能专家不应引用冷却涡轮机效率的数字,而无需清楚地说明它所基于的方法和控制量。在本文中,比较了常用的涡轮效率簿记方法。讨论了不同方法的优点和缺点,并且定义之间的相关性被示出为具有各种量冷却空气的单个和多级涡轮机。此外,指出,模拟具有等同单级模型的冷却的多级涡轮机需要使用与真正的SOT不同的等效定子出口温度SOT_(EQV)。这取决于簿记系统,使用计算的对涡轮机性能的影响是当冷却空气的变化量时。如果没有仔细遵守具有明确规定的控制量的独特的簿记系统,协同发动机开发项目中误区的误解概率不会被低估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号