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首页> 外文期刊>International Journal of Heat and Mass Transfer >An experimental study of spatiotemporally resolved heat transfer in thin liquid-film flows falling over an inclined heated foil
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An experimental study of spatiotemporally resolved heat transfer in thin liquid-film flows falling over an inclined heated foil

机译:在倾斜的加热箔上落下的薄液膜流中时空分解传热的实验研究

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摘要

This paper describes the development of an experimental technique that combines simultaneous planar laser-induced fluorescence (PLIF) and infrared (IR) thermography imaging, and its application to the measurement of unsteady and conjugate heat-transfer in harmonically forced, thin liquid-film flows falling under the action of gravity over an inclined electrically heated-foil substrate. Quantitative, spatiotemporally resolved and simultaneously conducted measurements are reported of the film thickness, film free-surface temperature, solid-liquid substrate interface temperature, and local/instantaneous heat flux exchanged with the heated substrate. Based on this information, local and instantaneous heat-transfer coefficients (HTCs) are recovered. Results concerning the local and instantaneous HTC and how this is correlated with the local and instantaneous film thickness suggest considerable heat-transfer enhancement relative to steady-flow predictions in the thinner film regions. This behaviour is attributed to a number of unsteady/mixing transport processes within the wavy films that are not captured by laminar, steady-flow analysis. The Nusselt number Nu increases with the Reynolds number Re; at low Re values the mean Nu number corresponds to 2.5, in agreement with the steady-flow theory, while at higher Re, both the Nu number and the HTC exhibit significantly enhanced values. Evidence that the HTC becomes decoupled from the film thickness for the upper range of observed film thicknesses is also presented. Finally, smaller film thickness fluctuation intensities were associated with higher HTC fluctuation intensities, while the amplitude of the wall temperature fluctuations was almost proportional to the amplitude of the HTC fluctuations.
机译:本文介绍了结合平面激光诱导荧光(PLIF)和红外(IR)热像成像技术的实验技术的发展及其在谐波强迫薄液膜流中不稳定和共轭传热的测量中的应用在重力作用下落在倾斜的电热箔基材上。报告了膜厚度,膜自由表面温度,固-液基质界面温度以及与加热的基质交换的局部/瞬时热通量的定量,时空分辨和同时进行的测量结果。根据此信息,可以恢复局部和瞬时传热系数(HTC)。有关局部和瞬时HTC以及与局部和瞬时膜厚度如何相关的结果表明,相对于较薄的膜区域中的稳定流预测,传热能力有了显着提高。此行为归因于波浪形薄膜内的许多不稳定/混合传输过程,这些过程没有被层流,稳定流分析捕获。努塞尔数Nu随着雷诺数Re增加;在低Re值下,平均Nu值对应于2.5,与稳态流理论一致,而在Re较高时,Nu值和HTC均显示出明显增强的值。还提供了在观察到的薄膜厚度上限范围内HTC与薄膜厚度脱钩的证据。最后,较小的膜厚波动强度与较高的HTC波动强度相关,而壁温波动的幅度几乎与HTC波动的幅度成比例。

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