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Investigation of flow drag and forced convective heat transfer in perforated coolant channels

机译:穿孔冷却液通道中流动阻力和强制对流传热的研究

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The present paper is to investigate the flow drag and forced convective heat transfer inside perforated coolant channels. The single blow, maximum-slope transient technique was applied for determining the heat transfer performance of perforated channel. A plate-type heater and a RTD thermosensor were introduced for improving the heat input and temperature measurement of the single blow technique. The test core consisted of a number of Aluminum plates separated by Plexiglas spacers to form several parallel flow channels. Various flow angles of hole arrangement were considered for various aspect ratios (b/w), inlet flow temperatures and Reynolds numbers in laminar, transitional and turbulent flow regimes. The measured fanning friction factor and Colburn heat transfer factor are presented. The present single blow technique covered the parameter ranges of Reynolds number 3.x 10~4 approx 5.5 x 10~5, heat input Q=85Wapprox7273W, plate porosity sigma = 0.126, and Pr=0.71.
机译:本文研究了穿孔冷却剂通道内的流动阻力和强制对流传热。 施加单次吹,最大斜坡瞬态技术用于确定穿孔通道的传热性能。 引入了板式加热器和RTD热传感器,用于改善单吹技术的热输入和温度测量。 测试芯由多个由有机玻璃间隔物分离的铝板组成,以形成几个平行的流动通道。 考虑各种孔布置的各种流动角度,用于各种纵横比(B / W),入口流动温度和层流,过渡和湍流流动制度中的reynolds数。 呈现了测量的扇动摩擦因子和COLBurn传热因子。 目前的单击技术覆盖了雷诺数的参数范围3.x 10〜4约5.5×10〜5,热输入Q = 85Wappox7273W,板孔隙度Sigma = 0.126,PR = 0.71。

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