首页> 外文期刊>International Journal of Microscale and Nanoscale Thermal and Fluid Transport Phenomena >THREE DIMENSIONAL EFFECTS IN COMPRESSIBLE, RAREFIED GAS FLOW IN BENT MICROCHANNELS
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THREE DIMENSIONAL EFFECTS IN COMPRESSIBLE, RAREFIED GAS FLOW IN BENT MICROCHANNELS

机译:弯曲微通道中可压缩稀薄气流的三维效应

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Numerical investigation of pressure-driven gas flow in three-dimensional (3D) bent microchannel is carried out by the Navier - Stokes equations coupled with first order slip boundary condition. Several facets of the problem are investigated, including the influence of geometrical details such as channel aspect ratio and bend radius of curvature, as well as the impact of rarefaction and compressibility. Pressure nonlinearity, Mach number distribution, slip velocity profiles and mass flow rate are computed and commented. The results show that the additional losses induced by the bend, with respect to the straight channel, are almost negligible at high rarefaction levels. Actually, for higher values of Kn the mass flux through the bent microchannel can even be slightly larger than that through a straight microchannel of the same length and subjected to the same pressure gradient. Moreover, this increase in mass flow rate for 3D case is larger than for 2D one. Smoothed bend further reduce the effect of the bend, with respect to sharp corner geometries. Rarefaction effect on mass flow is smaller at smaller radius, nevertheless compressibility effect compensates the rarefaction resulting in a lower increase in mass flow at higher pressure ratio. Compressibility effect increases pressure losses, thus partially compensating the increase in the mass flow due to the rarefaction, at least for higher pressure ratio. For large aspect ratios flow distributions, as expected, get closer to some 2D limit lines.
机译:三维(3D)弯曲微通道中压力驱动气流的数值研究是通过结合Navier-Stokes方程和一阶滑移边界条件进行的。研究了该问题的多个方面,包括几何细节的影响,例如通道纵横比和弯曲曲率半径,以及稀疏性和可压缩性的影响。计算并注释压力非线性,马赫数分布,滑移速度曲线和质量流率。结果表明,在较高的稀疏度水平下,由弯曲引起的相对于直通道的额外损失几乎可以忽略不计。实际上,对于较高的Kn值,通过弯曲微通道的质量通量甚至可能比通过相同长度和承受相同压力梯度的直线微通道的质量通量稍大。此外,这种3D情况下的质量流量增加要大于2D情况下的增加。相对于尖锐的拐角几何形状,平滑的弯曲进一步减小了弯曲的影响。在较小的半径处,对质量流的增强反射效应较小,但是可压缩性效应补偿了稀疏性,从而导致在较高的压力比下质量流的增加较小。压缩效应增加了压力损失,因此至少对于较高的压力比,部分地补偿了由于稀疏作用引起的质量流量的增加。对于大的长宽比,流量分布如预期的那样,接近一些2D极限线。

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