首页> 外文期刊>Journal of Advanced Manufacturing Technology >EXPERIMENTAL INVESTIGATION ON COOLING EFFECT OF SPHERICAL DIMPLED PROFILE ALUMINUM BLOCK BY THE TAGUCHI METHOD
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EXPERIMENTAL INVESTIGATION ON COOLING EFFECT OF SPHERICAL DIMPLED PROFILE ALUMINUM BLOCK BY THE TAGUCHI METHOD

机译:田口法研究球形球形铝块冷却效果的实验研究。

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Dimple profile plays a crucial role in enhancement of cooling process of various engineering application. This paper presents experimental investigation of convection heat transfer over spherical dimple on an aluminum block. In this study, an experimental investigation was carried out to observe the cooling effect under several conditions which are flow condition, dimple orientation, diameter of dimple, room temperature, air velocity, input of heat energy and condition of wind tunnel. A design of experiments technique was adopted in the form of orthogonal array L_(8) (2~(3)), Taguchi 2-Level approach. A total of 4 types dimpled surface are studied. The ANOVA results shows the room temperature is the major contributing factor towards rapid cooling process followed by wind tunnel condition, radius of dimple, air velocity, flow region and heat input. It was observed that the cooling time of 13 minutes can be achieved during laminar flow, 5 mm of dimple diameter, 60° angle of dimple orientation, 18 m/s of air velocity, 20 °C of room temperature.
机译:凹痕轮廓在增强各种工程应用的冷却过程中起着至关重要的作用。本文介绍了铝块上球形凹窝对流传热的实验研究。在这项研究中,进行了一项实验研究,以观察在流动条件,酒窝方向,酒窝直径,室温,风速,热能输入和风洞条件等几种条件下的冷却效果。采用正交阵列L_(8)(2〜(3))形式的实验技术设计,田口2-Level方法。共研究了四种凹坑表面。方差分析结果表明,室温是导致快速冷却过程的主要因素,其次是风洞条件,酒窝半径,空气速度,流动区域和热量输入。观察到,在层流,5mm的凹坑直径,60°的凹坑取向角,18 m / s的空气速度,20°C的室温下,冷却时间可达到13分钟。

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