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MEASUREMENT OF LOCAL MASS TRANSFER DISTRIBUTION IN A LARGE DIAMETER S-BEND AT HIGH REYNOLDS NUMBER

机译:高雷诺数大直径S型弯中局部传质分布的测量

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The local mass transfer in a 203mm diameter back to back bend arranged in a S-configuration was measured at a Reynolds number of 300,000. A dissolving wall method using gypsum dissolution to water at 40°C was used, with a Schmidt number of 660. The experiment was performed in a flow loop by flowing water through the test section. The topography of the unworn and the worn inner surface was quantified using nondestructive X-ray Computed Tomography (CT) scans. The two scanned surfaces were aligned to a common coordinate system using commercial software and in-house routines. The local mass transfer rate was obtained from the local change in radius over the flow time. Two regions of high mass transfer were present: (ⅰ) along the intrados of the first bend near the inlet and (ⅱ) at the exit of the extrados of the first bend that extends to the intrados of the second bend. The latter was the region of highest mass transfer in the S-bend.
机译:在雷诺数为300,000的情况下,测量了直径为203mm的S形背对背弯曲的局部传质。使用在40°C时使用石膏溶解于水中的溶解壁方法,施密特数为660。通过使水流过测试部分,在流路中进行实验。使用无损X射线计算机断层扫描(CT)扫描对未磨损和磨损的内表面的形貌进行量化。使用商业软件和内部例程,将两个扫描表面对齐到一个公共坐标系。从整个流动时间内半径的局部变化获得局部传质速率。存在两个高质量传递区域:(ⅰ)沿第一个弯头的入口附近的入口,和(ⅱ)在第一个弯头的延伸至第二个弯头的出口的出口处。后者是S型弯头中传质最高的区域。

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