首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >COMPUTATIONAL STUDY OF THE EFFECT OF INLET VELOCITY PROFILE AND RIB ORIENTATION ON HEAT TRANSFER IN ROTATING RIBBED RADIAL TURBINE COOLING PASSAGES
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COMPUTATIONAL STUDY OF THE EFFECT OF INLET VELOCITY PROFILE AND RIB ORIENTATION ON HEAT TRANSFER IN ROTATING RIBBED RADIAL TURBINE COOLING PASSAGES

机译:旋转带肋径向涡轮冷却通道入口速度分布和肋骨取向对传热影响的计算研究

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This study investigates the effect of inlet velocity profiles and rib orientations on the Nusselt number distribution within ribbed radial turbine cooling passages representative of systems used in current engines. A triple-pass serpentine passage is investigated, which includes rib turbulators angled at 45° and 180° bends. The first two passes are radially outward and inward respectively and both have an aspect ratio of 1:4, with the third pass radially outward with an aspect ratio of 1:2. Multiple inlet velocity profiles are studied in RANS CFD simulations under both stationary and rotating conditions. The rotating simulations have Reynolds, Rotation and Buoyancy numbers representative of a passage within a HP turbine blade of a gas turbine engine. The flow structure and Nusselt number distributions are discussed in detail with the inlet velocity profile found to have a very large influence in the first pass under both stationary and rotating conditions, with smaller differences observed in the later passes. The rib orientation in the second pass was also investigated, with simulations of reversed and non-reversed rib orientation compared. Improved heat transfer characteristics were found in simulations where the ribs were orientated in the same direction for all three passages. These simulations are compared to experimental results in order to explain previous discrepancies found between experimental and CFD data from an experimental setup with complex inlet geometry.
机译:这项研究调查了进气速度曲线和肋骨取向对肋形径向涡轮冷却通道内代表当前发动机系统的努塞尔特数分布的影响。研究了三通蛇形通道,其中包括以45°和180°弯曲角度弯曲的肋湍流器。前两次通过分别径向向外和向内,且两者的纵横比均为1:4,第三次通过径向向外,其纵横比为1:2。在固定和旋转条件下,都可以在RANS CFD模拟中研究多个入口速度曲线。旋转模拟具有雷诺数,旋转数和浮力数,它们代表燃气涡轮发动机的HP涡轮叶片内的通道。详细讨论了流动结构和Nusselt数分布,并发现入口速度曲线在固定和旋转条件下对第一遍都具有非常大的影响,而在随后的遍历中观察到的差异较小。还研究了第二遍的肋骨方向,并比较了反向和非反向肋骨方向的仿真结果。在模拟中发现,所有三个通道的肋都沿相同方向定向时,传热特性得到了改善。将这些模拟与实验结果进行比较,以解释以前在复杂进口几何形状的实验装置中发现的实验数据与CFD数据之间的差异。

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