首页> 外文期刊>Journal of Thermophysics and Heat Transfer >Local Heat/Mass Transfer Phenomena in Rotating Passage, Part 2: Angled Ribbed Passage
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Local Heat/Mass Transfer Phenomena in Rotating Passage, Part 2: Angled Ribbed Passage

机译:旋转通道中的局部传热/传质现象,第2部分:带角度的带肋通道

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Mass transfer experiments and numerical computations are conducted to investigate the heat/mass transfer and flow characteristics in a rotating passage with a 180-deg turn. In the present study, rectangular 70-deg rib turbulators are attached in cross and parallel arrangements on the leading and trailing surfaces of the passage. The cross-sectional area of the passage is 20 x 40 mm~2, and the pitch-to-rib height ratio (p/e) is 7.5. The rotation number ranges from 0.0 to 0.20, whereas the Reynolds number is constant at 10,000. The results reveal that the angled rib turbulators enhance significantly heat/mass transfer in the rotating two-pass duct by generating a secondary flow. For the cross-ribbed passage, a heat/mass transfer discrepancy is observed in the second pass even for the stationary case because one asymmetric cell of secondary flow is induced in the first pass and turning region. For the parallel-ribbed passage, the flow and heat/mass transfer characteristics are less subject to the rotation number than those of the former case due to the different flow structure. At the highest tested rotation number (Ro = 0.20), the turn-induced single vortex cell becomes identical regardless of the rib configuration so that the local heat/mass transfer distributions are similar in the turning region for all of the test sections.
机译:进行了传质实验和数值计算,以研究旋转180度的旋转通道中的传热/传质和流动特性。在本研究中,矩形的70度肋状湍流器以交叉和平行的方式连接在通道的前表面和后表面上。通道的横截面积为20 x 40 mm〜2,螺距与肋高之比(p / e)为7.5。旋转数范围为0.0到0.20,而雷诺数恒定为10,000。结果表明,成角度的肋湍流器通过产生二次流,显着增强了旋转两通管道中的热量/质量传递。对于横肋通道,即使在静止情况下,在第二遍中也观察到热/质量传递差异,因为在第一遍和转向区域中会感应到一个不对称的二次流动单元。对于平行肋通道,由于流动结构的不同,与前一种情况相比,流动和热/质量传递特性受转数的影响较小。在最高测试转数(Ro = 0.20)下,无论肋的配置如何,转弯诱发的单个涡流单元都变得相同,因此对于所有测试部分,转弯区域的局部热量/质量传递分布都相似。

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