首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >NUMERICAL INVESTIGATION OF SECONDARY FLOW VORTEX CORE STRUCTURE IN THE TWO-PASS RECTANGULAR CHANNEL WITH 45° RIBS
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NUMERICAL INVESTIGATION OF SECONDARY FLOW VORTEX CORE STRUCTURE IN THE TWO-PASS RECTANGULAR CHANNEL WITH 45° RIBS

机译:带有45°肋的两通矩形通道内二次流动涡核结构的数值研究

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The secondary flow which is generated by the angled rib is one of the key factors of heat transfer enhancement in gas turbine blade cooling channels. However, the current studies are all based on the velocity vector and streamline, which limit the research on the detailed micro-structure of secondary flow. In order to make further targeted optimization on the flow and heat transfer in the cooling channels of gas turbine blade, it is necessary to firstly investigate the generation, interaction, dissipation and the influence on heat transfer of secondary flow with the help of new topological method. This paper reports the numerical study of the secondary flow and the effect of secondary flow on heat transfer enhancement in rectangular two-pass channel with 45° ribs. Based on the vortex core technology, the structure of secondary flow can be clearly shown and studied. The results showed that the main flow secondary flow is thrown to the outer side wall after the corner due to the centrifugal force. Then it is weakened in the second pass and a new main flow secondary flow is generated at the same time near the opposite side wall in the second pass. The Nusselt number distribution has also been compared with the secondary flow vortex core distribution. The results shows that the heat transfer strength is weakened in the second pass due to the interaction between the old main flow secondary flow and the new one. These two secondary flows are in opposite rotation direction, which reduces the disturbance and mass transfer strength in the channel.
机译:由成角度的肋产生的二次流是燃气涡轮叶片冷却通道中传热增强的关键因素之一。然而,目前的研究都基于速度矢量和流线,这限制了对二次流的详细微观结构的研究。为了进一步有针对性地优化燃气轮机叶片冷却通道中的流动和传热,有必要首先借助新的拓扑方法研究二次流的产生,相互作用,耗散及其对二次流传热的影响。 。本文报道了具有45°肋的矩形两通通道中二次流的数值研究以及二次流对强化传热的影响。基于涡流核心技术,可以清楚地显示和研究二次流的结构。结果表明,由于离心力的作用,主流次流在拐角后抛向外侧壁。然后,在第二遍中将其削弱,并在第二遍中的相对侧壁附近同时生成新的主流次流。 Nusselt数分布也已与二次流涡流核心分布进行了比较。结果表明,由于旧的主流二次流与新的二次流之间的相互作用,第二遍的传热强度减弱。这两个次级流沿相反的旋转方向,这减小了通道中的扰动和传质强度。

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