首页> 外文会议>ASME turbo expo >FILM COOLING IN A SEPARATED FLOW FIELD ON A NOVEL LIGHTWEIGHT TURBINE BLADE
【24h】

FILM COOLING IN A SEPARATED FLOW FIELD ON A NOVEL LIGHTWEIGHT TURBINE BLADE

机译:新型轻质涡轮叶片上分离流场中的薄膜冷却

获取原文

摘要

The primary contribution of this research is to clarify the feasibility of a novel lightweight turbine blade with internal and external cooling, which is invented aiming at drastic reduction of weight. With a considerably thinner airfoil, an extensive separation bubble is formed on the pressure side and film cooling performance in such a flow field has to be investigated.Experimental results with a curved duct setup, which simulates the flow field around the proposed airfoil, show that a film cooling is still an effective measure of cooling even in the vastly separated region and it behaves quite similarly to the conventional correlation except for lower blowing ratios where the thermal field is strongly affected by the intense recirculation flow. Comparisons between the experimental and numerical results verify that an affordable RANS simulation is useful to investigate the detailed physics of this flow field.With the numerical modeling, a cooling performance of the proposed blade under a typical engine operating condition is simulated and the metal temperatures of the blade are also predicted with a fluid-solid conjugate calculation. The resultant thermal distribution in the airfoil suggests that the trailing edge portion is inevitably most critical in the temperature and also a considerable thermal gradient across the blade is induced. Thermal profile, however, is partly recovered with some of the film coolant being bypassed from the pressure side to the suction side.
机译:这项研究的主要贡献在于阐明一种新颖的具有内部和外部冷却功能的轻型涡轮机叶片的可行性,该涡轮机叶片的目的是显着减轻重量。在翼型明显变薄的情况下,在压力侧会形成较大的分离气泡,因此必须研究这种流场中的薄膜冷却性能。 弯曲风管装置的实验结果模拟了拟议的机翼周围的流场,表明即使在极远的分离区域中,薄膜冷却仍然是有效的冷却措施,除较低的吹气比外,其行为与常规相关性非常相似强烈的再循环流会严重影响温度场。实验结果和数值结果之间的比较证明,负担得起的RANS模拟对于研究该流场的详细物理原理很有用。 通过数值模型,模拟了建议的叶片在典型发动机工况下的冷却性能,并且还通过流固共轭计算预测了叶片的金属温度。翼型中产生的热分布表明,后缘部分在温度上不可避免地是最关键的,并且还会在叶片上引起相当大的热梯度。然而,部分薄膜冷却剂从压力侧到吸力侧被旁路,部分恢复了热分布。

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