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首页> 外文期刊>Annals of the New York Academy of Sciences >Flow Rate Limitation in Open Capillary Channel Flows
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Flow Rate Limitation in Open Capillary Channel Flows

机译:开放毛细管通道流量中的流速限制

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摘要

This paper reports the experimental and theoretical investigations of forced liquid flows through open capillary channels under reduced gravity conditions. An open capillary channel is a structure that establishes a liquid flow path at low Bond numbers, when the capillary pressure caused by the surface tension force dominates in comparison to the hydrostatic pressure induced by gravitational or residual accelerations. In case of steady flow through the channel, the capillary pressure of the free surface balances the pressure difference between the liquid and the surrounding constant-pressure gas phase. Because of convective and viscous momentum transport, the pressure along the flow path decreases and causes the free surface to bend inward. The maximum flow rate is achieved when the free surface collapses and gas ingestion occurs at the outlet. This critical flow rate depends on the geometry of the channel and the properties of the liquid. In this paper we present a comparison of the theoretical and experimental critical flow rates and surface profiles for convective dominated flows. For the prediction of the critical flow rate a one-dimensional theoretical model taking into account the entrance pressure loss and the frictional pressure loss in the channel is developed.
机译:本文报道了在重力降低的情况下强迫液体流过开放毛细管通道的实验和理论研究。当由表面张力引起的毛细管压力相对于由重力或残余加速度引起的静水压力占优势时,开放的毛细管通道是一种以低键数建立液体流动路径的结构。在稳定地流过通道的情况下,自由表面的毛细压力会平衡液体与周围恒压气相之间的压差。由于对流和粘性动量传输,沿流路的压力降低,并使自由表面向内弯曲。当自由表面塌陷并且在出口处发生气体吸入时,可实现最大流速。该临界流速取决于通道的几何形状和液体的性质。在本文中,我们比较了对流主导流的理论和实验临界流速以及表面轮廓。为了预测临界流速,建立了考虑入口压力损失和通道中摩擦压力损失的一维理论模型。

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