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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Effects of Curvature and Convective Heat Transfer in Curved Square Duct Flows
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Effects of Curvature and Convective Heat Transfer in Curved Square Duct Flows

机译:曲率和对流换热在弯管流动中的影响

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摘要

Non-isothermal flows with convective heat transfer through a curved duct of square cross section are numerically studied by using a spectral method, and covering a wide range of curvature, 0<δ≤0.5 and the Dean number, Dn, 0≤Dn≤6000. A temperature difference is applied across the vertical sidewalls for the Grashof number Gr=100, where the outer wall is heated and the inner one cooled. Steady solutions are obtained by the Newton-Raphson iteration method and their linear stability is investigated. It is found that the stability characteristics drastically change due to an increase of curvature from δ= 0.23 to 0.24. When there is no stable steady solution, time evolution calculations as well as their spectral analyses show that the steady flow turns into chaos through periodic or multi-periodic flows if Dn is increased no matter what δ is. The transition to a periodic or chaotic state is retarded with an increase of δ. Nusselt numbers are calculated as an index of horizontal heat transfer and it is found that the convection due to the secondary flow, enhanced by the centrifugal force, increases heat transfer significantly from the heated wall to the fluid. If the flow becomes periodic and then chaotic, as Dn increases, the rate of heat transfer increases remarkably.
机译:通过光谱方法对通过正方形横截面的弯曲管道进行对流传热的非等温流动进行了数值研究,并涵盖了曲率范围0 <δ≤0.5和迪恩数Dn,0≤Dn≤6000 。对于格拉索夫数Gr = 100,在垂直侧壁之间施加温差,其中外壁被加热而内壁被冷却。通过Newton-Raphson迭代方法获得了稳定解,并研究了它们的线性稳定性。已经发现,由于曲率从δ= 0.23增加到0.24,稳定性特性急剧变化。当没有稳定的稳定解时,时间演化计算及其频谱分析表明,无论δ是多少,如果Dn增加,稳定流就会通过周期性或多周期流变成混沌。随着δ的增加,过渡到周期性或混沌状态的过程被延迟。将努塞尔数计算为水平传热的指标,并且发现由于二次流而产生的对流在离心力的作用下得到增强,从而大大增加了从加热壁到流体的传热。如果流动变成周期性的然后是混乱的,则随着Dn的增加,传热速率会显着增加。

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