首页> 外文会议>ASME (American Society of Mechanical Engineers) Turbo Expo 2002: Heat Transfer Manufacturing Materials and Metallurgy >COMBINED 3D FLOW AND HEAT TRANSFER MEASUREMENTS IN A 2-PASS INTERNAL COOLANT PASSAGE OF GAS TURBINE AIRFOILS
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COMBINED 3D FLOW AND HEAT TRANSFER MEASUREMENTS IN A 2-PASS INTERNAL COOLANT PASSAGE OF GAS TURBINE AIRFOILS

机译:燃气轮机翼型两通内部冷却通道中的组合3D流动和传热测量

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A study of the flow and heat transfer in a stationary model of a two-pass internal coolant passage is presented, which focuses on the flow characteristic effects on the wall heat transfer distribution. Results are given in the upstream fully developed region. Heat transfer measurements were made with a transient technique using thermochromic liquid crystal technique to measure a surface temperature. The technique allows full surface heat transfer coefficient measurements on all the walls. Flow measurements were made with a stereoscopic digital PIV system, which measures all three-velocity components simultaneously. The coolant passage model consists of two square ducts, each having a 20 hydraulic diameter length. The ducts are connected by a sharp 180° bend with a rectangular outer wall. 45° ribs are mounted in a staggered arrangement on the bottom and top walls of both legs. The height of the ribs is equal to 0.1 hydraulic diameters. They are spaced 10 rib heights apart. The flow and heat transfer measurements were obtained at one flow condition with an inlet flow Reynolds number, based on the hydraulic diameter, of 50,000. The paper presents detailed measurement results of the flow characteristics and of the heat transfer distribution in the upstream straight leg of the passage and describes how the main and secondary flows influence the heat transfer distribution in the fully developed regions of the channel.
机译:提出了对两通道内部冷却剂通道的静态模型中的流动和传热的研究,重点研究了流动特性对壁传热分布的影响。结果在上游完全发达地区给出。通过使用热致变色液晶技术的瞬态技术进行传热测量,以测量表面温度。该技术允许在所有壁上测量整个表面的传热系数。流量测量是通过立体数字PIV系统进行的,该系统同时测量所有三个速度分量。冷却液通道模型由两个方管组成,每个方管的液压直径长度为20。管道通过带有矩形外壁的180°锐角弯头连接。 45°肋以交错排列的方式安装在两条腿的底壁和顶壁上。肋的高度等于0.1的液压直径。它们以10个肋骨高度隔开。流量和传热测量是在一种流量条件下获得的,基于水力直径的进口雷诺数为50,000。本文介绍了通道上游直管段的流动特性和传热分布的详细测量结果,并描述了主流和次要流如何影响通道完全展开区域的传热分布。

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