首页> 外文会议>ASME Turbomachinery Technical Conference and Exposition >A NUMERICAL STUDY ON REDUCING THE STATOR BLADE SURFACE TEMPERATURE IN THE ULTRA-HIGH EFFICIENCY GAS TURBINE ENGINE BY INDEXING FUEL INJECTORS AND USING FILM COOLING
【24h】

A NUMERICAL STUDY ON REDUCING THE STATOR BLADE SURFACE TEMPERATURE IN THE ULTRA-HIGH EFFICIENCY GAS TURBINE ENGINE BY INDEXING FUEL INJECTORS AND USING FILM COOLING

机译:通过索引燃料喷射器和使用薄膜冷却将超高效燃气涡轮发动机定子叶片表面温度降低的数值研究

获取原文

摘要

The Ultra-High Efficiency Gas Turbine technology, UHEGT, has been introduced in our previous publications [1]-[4]. In UHEGT, the combustion process is no longer contained in isolation between the compressor and turbine, rather distributed and integrated within the axial gaps before each stator row. As shown in the previous publications, this technology substantially increases the thermal efficiency of the engine to 45% and above. Since the combustion process is brought into the turbine stages in UHEGT, the stator blades are exposed to high temperature gases and are prone to be overheated. To address this issue, two different approaches are investigated in this paper in order to control and reduce the temperature on the stator blade surface. The first approach is indexing (clocking) of the fuel injectors (cylindrical tubes extended from hub to shroud), in which the positions of the injectors are adjusted relative to each other and the stator blades. The second approach is using film cooling, in which cooling holes are added on the blade surface to bring down the temperature via coolant injection. Four configurations are designed and studied via computational fluid dynamics (CFD) to evaluate the effectiveness of the two approaches. The objective functions in this evaluation are stator blade surface temperature, temperature non-uniformity at rotor inlet, total pressure loss over the injectors, and total power production by rotor. The results show that the second configuration, which uses the indexing approach, presents the most promising case in controlling the stator blade surface temperature. This configuration produces the lowest temperature distribution over the stator blade surface and the least amount of total pressure loss.
机译:我们以前的出版物[1] - [4]介绍了超高效燃气轮机技术Uhegt [1] - [4]。在UHEGT中,燃烧过程不再包含在压缩机和涡轮机之间的隔离,而是在每个定子排之前的轴向间隙内分布并集成在轴向间隙之间。如上所述出版物所示,该技术基本上增加了发动机的热效率至45%及以上。由于燃烧过程进入UHEGT的涡轮机阶段,因此定子叶片暴露于高温气体,并且易于过热。为了解决这个问题,本文研究了两种不同的方法,以控制和降低定子叶片表面上的温度。第一方法是燃料喷射器的索引(时钟)(从轮毂延伸到护罩的圆柱形管),其中喷射器的位置相对于彼此调节和定子叶片。第二种方法是使用薄膜冷却,其中在叶片表面上添加冷却孔,以通过冷却剂注入降低温度。通过计算流体动力学(CFD)设计和研究了四种配置,以评估两种方法的有效性。该评估中的客观功能是定子叶片表面温度,转子入口处的温度不均匀,喷射器上的总压力损失,以及转子的总功率产生。结果表明,使用索引方法的第二种配置呈现最有希望的控制定子叶片表面温度的情况。该配置产生定子叶片表面上的最低温度分布以及总压力损失的最小量。

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