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Improvement in field synergy principle: More rigorous application, better results

机译:改进现场协同原理:更严格的应用,更好的结果

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摘要

Basing on the original derivation of field synergy principle, we propose two rigorous rules for its applications with respect to incompressible flow in conventional-scale duct: (1) the synergy angle should be evaluated in the thermal boundary layer for laminar flow; (2) the FSP analysis must be refined to the viscous sublayer for turbulent flow in the strict sense. These two rules are verified by two specific computational fluid dynamics cases of forced convection in two-parallel plates with irregular boundary condition in laminar and turbulent flow regimes, respectively. By making elaborate post-processing, the local synergy angles in the very near-wall region are clearly visualized. It is found that the patterns of synergy angle distribution in laminar boundary layer/turbulent viscous sublayer are able to accurately reflect the local heat transfer ability, which provides an opportunity to directly visualize the local variation of convective heat transfer coefficient. Quantitative analysis also shows that the local Nusselt number variations are in perfect agreement with the local synergy angle variations according to the rules we proposed. This work also can be regarded as a verification for field synergy principle from a new aspect.
机译:基于场协同原理的原始推导,我们针对常规规模管道中不可压缩流的应用提出了两个严格的规则:(1)应当在层流的热边界层中评估协同角; (2)从严格意义上讲,必须将FSP分析细化为粘性子层以进行湍流。这两个规则通过分别在层流和湍流状态下具有不规则边界条件的两个平行板中强迫对流的两种特殊的计算流体动力学案例得到了验证。通过进行精细的后处理,可以清晰地看到非常靠近墙壁区域的局部协同作用角度。研究发现,层流边界层/湍流粘性子层中的协同角分布模式能够准确反映局部传热能力,为直接可视化对流传热系数的局部变化提供了机会。定量分析还表明,根据我们提出的规则,局部Nusselt数变化与局部协同角变化完全一致。这项工作也可以从新的角度被视为对场协同原理的验证。

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