首页> 外文会议>ASME Turbo Expo vol.3 pt.A; 20050606-09; Reno-Tahoe,NV(US) >HEAT TRANSFER ON INTERNAL SURFACES OF A DUCT SUBJECTED TO IMPINGEMENT OF A JET ARRAY WITH VARYING JET HOLE-SIZE AND SPACING
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HEAT TRANSFER ON INTERNAL SURFACES OF A DUCT SUBJECTED TO IMPINGEMENT OF A JET ARRAY WITH VARYING JET HOLE-SIZE AND SPACING

机译:改变射孔尺寸和间距的射流阵列对管道内部表面的传热

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One significant issue concerning the impingement heat transfer with a jet array is related to the so-called "crossflow", where a local jet performance is influenced by the convection of the confluence from the impingement of the jet/jets placed upstream. As a result, the heat transfer coefficient may vary along the streamwise direction and creates more or less non-uniform cooling over the component, which is undesirable from both the performance and durability standpoints. Described in this paper is an experimental investigation of the heat transfer coefficient on surfaces impinged by an array of six inline circular jets with their diameters increased monotically along the streamwise direction. The local heat transfer distributions on both the target surface and jet-issuing plate are measured using a transient liquid crystal technique. By varying the jet hole-size in a systematic manner, the actual distribution of jet flow rate and momentum within a jet array may be optimally metered and controlled against crossflow. The effects on the heat transfer coefficient distribution due to variations of jet-to-target distance and inter-jet spacing are investigated. The varying-diameter results are compared with those from a corresponding array of uniform jet diameter.
机译:与射流阵列的冲击传热有关的一个重要问题与所谓的“错流”有关,其中局部射流的性能受到汇流对流的影响,该汇流的对流来自放置在上游的一个或多个射流的冲击。结果,传热系数可沿流向变化,并在部件上产生或多或少的不均匀冷却,这从性能和耐久性的角度来看都是不希望的。本文描述的是一个实验研究,该实验研究了由六个直列圆形射流阵列撞击而形成的表面上的传热系数,这些直列圆形射流的直径沿流向单调增加。使用瞬态液晶技术测量目标表面和射流板上的局部传热分布。通过以系统的方式改变喷射孔的尺寸,可以最佳地计量和控制喷射流在喷射阵列内的实际流速和动量分布,以防横流。研究了由于射流到目标距离和射流间距的变化对传热系数分布的影响。将直径变化的结果与相应的均匀喷嘴直径阵列的结果进行比较。

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