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首页> 外文期刊>Journal of Thermal Science and Technology >Effect of spatial development on convective heat transfer enhancement in a pipe with transverse vibration
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Effect of spatial development on convective heat transfer enhancement in a pipe with transverse vibration

机译:空间发育对横向振动管道对流热传递增强的影响

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The present study models the flow configuration in a tube downstream of multi-branching in a catalytic converter. Convective heat transfer in a thin circular straight pipe is analyzed by direct numerical simulation (DNS). Forced transverse vibration is applied to the pipe itself to enhance the heat transfer. The main computational domain is sufficiently long to capture the spatial development of the vibration effect with the inflow-outflow boundary condition. The representative Reynolds number is set to be less than that in a driver domain which generates the turbulent inflow of the main domain. Profiles of the Nusselt number exhibit that the positive effect of the vibration on the heat transfer becomes apparent at certain downstream locations. The distance to its location is short with the high vibration frequency keeping the amplitude constant. In the region where the heat transfer is enhanced, the main flow with high temperature is shifted to one side and the other side of the pipe wall in the vibration direction alternatingly with the appearance of the organized streamwise vortices. The flow structure in the present spatially developing configuration is governed mainly by the vibration frequency although the terminal heat transfer performance is approximately a function of the velocity amplitude of the vibration.
机译:本研究模拟了催化转化器中多分枝下游管中的流动配置。通过直接数值模拟(DNS)分析薄圆形直管中的对流传热。强制横向振动施加到管道本身上以增强传热。主要计算领域足够长,以利用流入流出边界条件捕获振动效应的空间发展。代表性的reynolds编号设置为小于驱动器域中的驾驶员域中的驾驶员域。营养号的概况表明,在某些下游位置处,振动对传热的正效应变得显而易见。与其位置的距离短,振动频率保持幅度常数。在增强热传递的区域中,具有高温的主流在有组织的流动涡流的外观中换档到管壁的一侧和另一侧。当前空间显影配置中的流动结构主要由振动频率控制,尽管终端传热性能大约是振动速度幅度的函数。

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