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Measurement and correlation of hydraulic resistance of flow through woven metal screens

机译:流经金属丝网的水力阻力的测量和相关性

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In this study, an experimental setup was established to measure the pressure drop of flow through woven metal screens. Four woven metal screens with different porosities of the plain-square type were tested in this study. The Reynolds number based on the equivalent spherical diameter of the metal screen ranged from low Re (Re = 85) to high Re (Re = 12000). The range of porosity was 0.834-0.919. Based on the measured pressure drops of the four woven metal screens, this study developed an empirical equation of friction characteristic of plain-square-type woven metal screens. All experimental data for the plain-square-type screens lie within ±30% of the empirical equation. Based on the fact that the measured pressure drops of single-layer and multiple-layer woven metal screens can all be fit into a single equation, it is noted that the velocity developing region is very short for woven metal screens. In order to obtain good agreement between the fitted empirical equation and measured data, this study noted that an empirical equation should be developed for each type of the woven metal screen. This study developed five empirical equations respectively for the five types of metal screens, (plain square, plain dutch, fourdrinier, full twill, and twilled dutch types) of which experimental data were available in open literature and the present study.
机译:在这项研究中,建立了一个实验装置来测量流经编织金属筛网的压降。在这项研究中,测试了四个具有不同孔隙率的普通方形编织金属丝网。基于金属筛的等效球直径的雷诺数范围从低Re(Re = 85)到高Re(Re = 12000)。孔隙率范围为0.834-0.919。基于所测量的四个编织金属筛网的压降,本研究建立了一个平方形编织金属筛网的摩擦特性经验方程。普通正方形屏幕的所有实验数据均在经验公式的±30%之内。基于单层和多层机织金属筛网的测得压降都可以拟合为一个方程式这一事实,注意到对于机织金属筛网,速度产生区域非常短。为了在拟合的经验公式和测量数据之间取得良好的一致性,本研究指出,应针对每种类型的机织金属筛网开发经验公式。本研究分别针对五种类型的金属筛网(普通方形,普通荷兰式,长绒,全斜纹和斜纹荷兰式)开发了五个经验方程式,其实验数据可从公开文献和本研究中获得。

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