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Structure of the temperature field in a flow over heated waves

机译:加热波流中温度场的结构

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Liquid crystal thermometry (LCT) was used to quantify temperature fields in a flow over resistively, heated waves and assess the effect of the large-scale longitudinal structures that were previously obtained in the velocity field for an isothermal flow (A. Gunther and P. Rudolf von Rohr, submitted article, 2002). The wavelength A was 10 times larger than the amplitude, and the considered Reynolds numbers were 725 and 3300, defined with the bulk velocity and the half-channel height. A constant heat flux was imposed at the wavy bottom wall. For the first time, LCT was used to determine the fluid temperature in a wall-bounded flow with heat transfer. The dominant spanwise scale obtained from a proper orthogonal decomposition (POD) of the fluid temperature field above an uphill location of the wavy wall was 1.5A. It agrees well with the one previously obtained for a decomposition of the streamwise velocity. [References: 30]
机译:液晶测温法(LCT)用于量化电阻加热波流中的温度场,并评估先前在等温流速度场中获得的大规模纵向结构的影响(A.Gunther和P. Rudolf von Rohr,提交的文章,2002年。波长A比振幅大10倍,考虑的雷诺数为725和3300,由体速度和半通道高度定义。在波浪形的底壁处施加恒定的热通量。 LCT首次用于通过热传递来确定边界流动中的流体温度。从波浪壁上坡位置上方的流体温度场的适当正交分解(POD)获得的主导跨度尺度为1.5A。它与先前获得的用于分解流向速度的方法非常吻合。 [参考:30]

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