首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >LARGE EDDY SIMULATION OF SWIRLING KEROSENE/AIR SPRAY FLAME USING TABULATED CHEMISTRY
【24h】

LARGE EDDY SIMULATION OF SWIRLING KEROSENE/AIR SPRAY FLAME USING TABULATED CHEMISTRY

机译:旋流式煤油/空气喷雾火焰的大涡模拟

获取原文

摘要

Accurate characterization of swirled flames is a key point in the development of more efficient and safer aeronautical engines. The task is even more challenging for spray injection systems. On the one side, spray interacts with both turbulence and flame, eventually affecting the flame dynamics. On the other side, spray flame structure is highly complex due to equivalence ratio inhomogeneities caused by the evaporation process. Introducing detailed chemistry in numerical simulations, necessary for the prediction of flame stabilization, ignition and pollutant concentration, is then essential but extremely expensive in terms of CPU time. In this context, tabulated chemistry methods, expressly developed to account for detailed chemistry at a reduced computational cost in Large Eddy Simulation of turbulent gaseous flames, are attractive. The objective of this work is to propose a first computation of a swirled spray flame stabilized in an actual turbojet injection system using tabulated chemistry. A Large Eddy Simulation of an experimental benchmark, representative of an industrial swirl two-phase air/kerosene injection system, is performed using a standard tabulated chemistry method. The numerical results are compared to the experimental database in terms of mean and fluctuating axial velocity. The reactive two-phase flow is deeper investigated focusing on the flame structure and dynamics.
机译:涡旋火焰的准确表征是开发更高效,更安全的航空发动机的关键。对于喷射系统而言,这项任务更具挑战性。一方面,喷雾与湍流和火焰相互作用,最终影响火焰动力学。另一方面,由于蒸发过程引起的当量比不均匀性,喷雾火焰的结构非常复杂。因此,在数值模拟中引入详细的化学知识对于预测火焰稳定度,着火和污染物浓度是必不可少的,但在CPU时间方面却极为昂贵。在这种情况下,在湍流气态火焰的大涡模拟中,以减少的计算成本明确开发的用于解释详细化学的列表化学方法是有吸引力的。这项工作的目的是提出一种使用表格化学方法对在实际涡轮喷气式喷射系统中稳定的漩涡状喷射火焰进行的首次计算。使用标准列表化学方法进行了代表工业旋流两相空气/煤油喷射系统的实验基准的大涡模拟。将数值结果与平均值和波动轴向速度的实验数据库进行比较。对无功两相流的研究主要集中在火焰的结构和动力学上。

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