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A general structural design methodology for multi-hole orifices and its experimental application

机译:多孔孔的通用结构设计方法及其实验应用

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摘要

Compared to single-hole orifices (SOs), multi-hole orifices (MOs) have smaller orifice sizes and various patterns of orifice distribution. The geometric description of MOs is more complex, increasing the difficulty of MO structural design. Therefore, it is worthwhile to investigate the key factors affecting MO throttle or flow control characteristics and to develop a general MO design method. This work presents a practical geometric design methodology for MOs and applies this procedure in throttle experiments. To describe the MO geometry in detail, the methodology first introduces a comprehensive set of geometric architectures involving orifice arrangement criteria and geometric parameters such as the total orifice number, n; the orifice distribution density, Dd; and the equivalent diameter ratio, EDR. Then, a series of throttle tests in water flow are conducted to investigate the effect of various geometric features on the pressure loss characteristics of MOs. Finally, a simple model to calculate the pressure loss coefficient of MOs is presented.
机译:与单孔小孔(SO)相比,多孔小孔(MO)具有较小的孔尺寸和各种孔分布模式。 MO的几何描述更为复杂,增加了MO结构设计的难度。因此,有必要研究影响MO节流阀或流量控制特性的关键因素,并开发一种通用的MO设计方法。这项工作为MOs提供了一种实用的几何设计方法,并将此过程应用于节流阀实验。为了详细描述MO几何,该方法首先介绍了一套完整的几何结构,涉及孔口布置标准和几何参数,例如总孔数n;孔口分布密度Dd;等效直径比EDR然后,在水流中进行了一系列节流试验,以研究各种几何特征对MOs压力损失特性的影响。最后,提出了一个简单的模型来计算MOs的压力损失系数。

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