首页> 外文会议>ASME turbo expo >THE INFLUENCE OF TURBINE STATOR WELL COOLANT FLOW RATE AND PASSAGE CONFIGURATION ON COOLING EFFECTIVENESS
【24h】

THE INFLUENCE OF TURBINE STATOR WELL COOLANT FLOW RATE AND PASSAGE CONFIGURATION ON COOLING EFFECTIVENESS

机译:汽轮机定子冷却液流量和通道配置对冷却效率的影响

获取原文

摘要

Market competitiveness for aero engine power plant dictates that improvements in engine performance and reliability are guaranteed a priori by manufacturers. The requirement to accurately predict the life of engine components makes exacting demands of the internal air system, which must provide effective cooling over the engine duty cycle with the minimum consumption of compressor section air. Tests have been conducted at the University of Sussex using a turbine test facility which comprises a two stage turbine with an individual stage pressure ratio of 1.7:1. Main annulus air is supplied by an adapted Rolls-Royce Dart compressor at up to 440 K and 4.8 kg s~(-1). Cooling flow rates ranging from 0.71 to 1.46 C_w ent, a disc entrainment parameter, have been used to allow ingress or egress dominated stator well flow conditions. The mechanical design of the test section allows internal cooling geometry to be rapidly re-configured, allowing the effect of jet momentum and coolant trajectory to be investigated. An important facet to this investigation is the use of CFD to model and analyse the flow structures associated with the cavity conditions tested, as well as to inform the design of cooling path geometry. This paper reports on the effectiveness of stator well coolant flow rate and delivery configurations using experimental data and also CFD analysis to better quantify the effect of stator well flow distribution on component temperatures.
机译:航空发动机发电厂的市场竞争力要求制造商事先保证发动机性能和可靠性的提高。准确预测发动机部件寿命的要求对内部空气系统提出了严格的要求,内部空气系统必须在发动机工作周期内提供有效的冷却,同时使压缩机部分空气的消耗最少。萨塞克斯大学使用涡轮机测试设备进行了测试,该设备包括两级涡轮机,单级压力比为1.7:1。主环空空气由适配的劳斯莱斯Dart压缩机提供,最大压力为440 K,压力为4.8 kg s〜(-1)。盘片夹带参数的冷却流量范围为0.71至1.46 C_went,已被用于允许以入口或出口为主的定子井流动条件。测试部分的机械设计允许快速重新配置内部冷却几何形状,从而可以研究喷射动量和冷却剂轨迹的影响。这项研究的一个重要方面是使用CFD对与所测试的腔体条件相关的流动结构进行建模和分析,以及为冷却路径的几何设计提供依据。本文使用实验数据以及CFD分析报告定子井冷却液流速和输送配置的有效性,以更好地量化定子井流动分布对部件温度的影响。

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