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HEAT TRANSFER ENHANCEMENT WITH INCLINED BAFFLES AND RIBS COMBINED

机译:倾斜的挡板和肋骨相结合的传热增强

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摘要

Common heat transfer enhancement techniques are found in many of today's processes. Devices such as inclined baffles, rib turbulators, jet impingement, etc are all used in order to augment the thermal transfer of a process. Inclined baffles have been studied along with the combination of jet impingement techniques. Inclined baffles enhance heat transfer by enhancing large-scale fluid bulk motion and through tripped boundary layer flow separation. Impinging jets, created by perforating the baffle, create additional heat transfer through flow impingement on the heated surface. Rib turbulators create heat transfer augmentation by disturbing the thermal boundary layer, unlike baffles; ribs enhance heat transfer in areas near the heat transfer surface leaving the core flow largely undisturbed. This investigation investigates experimental heat transfer of turbulent flow in a rectangular channel with inclined solid and perforated baffles combined with rib turbulators for isoflux beating at the top surface of the channel. Combining ribs with baffles yielded an increase in average Nusselt Number, albeit, with a pressure drop penalty. In situations where rate of heat transfer is critical to the performance of a device combining ribs with baffle is a viable solution.
机译:在当今的许多过程中都发现了常用的传热增强技术。诸如倾斜挡板,肋状湍流器,射流冲击等装置都被使用以增加过程的热传递。已经研究了倾斜的挡板以及喷射冲击技术的结合。倾斜的挡板通过增强大规模的流体体积运动以及通过跳脱的边界层流分离来增强热传递。通过在挡板上打孔产生的冲击射流通过在加热表面上的流冲击而产生了额外的热传递。与挡板不同,肋湍流器通过扰动热边界层来增加传热。肋加强了热传递表面附近区域的热传递,使芯流基本不受干扰。这项研究调查了在具有倾斜固体和穿孔挡板的矩形通道中结合肋肋湍流器进行湍流传热的实验性传热,以在通道的顶部表面进行等通量跳动。肋骨与挡板的结合产生平均努塞尔特数的增加,尽管有压降损失。在传热速率对设备性能至关重要的情况下,将肋与挡板结合使用是可行的解决方案。

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