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首页> 外文期刊>Theoretical foundations of chemical engineering >Analysis of Reverse Currents Parameters and Gas Content in Liquid behind the Roughness Ridge
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Analysis of Reverse Currents Parameters and Gas Content in Liquid behind the Roughness Ridge

机译:糙率脊后面的液体中的反向电流参数和气体含量分析

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Based on experimental studies, the effect of gas content in the liquid behind the ridges of artificial helical roughness on film thickness and the value of the heat transfer coefficient is shown. The numerical results for the reverse currents velocity distribution and pressure difference along the ridge height and the cavity length, as well as experimental values of gas content in the liquid separation zone, arising from the flow over a regular roughness, are presented. The scale of reverse currents, their location behind the roughness ridge, and gas content depend on the height and shape of the ridge, the irrigation density, and the physical properties of the liquid. It was concluded that the gas bubbles in the liquid form in reverse current zones in the cavities of the artificial roughness due to reduced pressure compared to gas pressure at the interface and, therefore, gas suction from the interface zone. The dependence for calculating gas content via the thickness of the liquid layer in the roughness cavity is proposed.
机译:根据实验研究,显示了人工螺旋粗糙度脊后面的液体中的气体含量对薄膜厚度和传热系数值的影响。给出了沿脊高和腔长的反向电流速度分布和压差的数值结果,以及在规则的粗糙度下流动引起的液体分离区中气体含量的实验值。反向电流的大小,它们在粗糙脊后面的位置以及气体含量取决于脊的高度和形状,灌溉密度和液体的物理性质。可以得出结论,由于与界面处的气体压力相比压力降低,因此,在人工粗糙度的腔体中的反向电流区域中,液体中的气泡形式形成了气泡,因此,从界面区域中吸出了气体。提出了通过粗糙度腔中液体层的厚度来计算气体含量的依赖性。

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