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首页> 外文期刊>Acta Mechanica >Dual-technique-based inline design strategy for water-hammer control in pressurized pipe flow
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Dual-technique-based inline design strategy for water-hammer control in pressurized pipe flow

机译:基于双技术的加压管流动控制的内联设计策略

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摘要

A dual-technique-based inline strategy was investigated in this study as a sustainment to conventional-technique skills in terms of limitation of wave oscillation period spread-out. Instead of the single polymeric short section employed by the latter technique, the former is based on replacing an up- and downstream short section of the primitive piping system using another couple made of polymeric pipe-wall material. Numerical computations used the method of characteristics for the discretization of unconventional water-hammer model based on the Vitkovsky and the Kelvin-Voigt formulations. The efficiency of the dual technique was considered for two operating conditions associated with up- and downsurge frames. Moreover, two pipe-wall material types were utilized for short-section pipe wall, namely the HDPE or LDPE materials. Additionally, the conventional technique was also addressed in this study, for comparison purposes. First, analyses of pressure-head, circumferential-stress and radial-strain wave patterns, along with wave oscillation periods examination, confirmed that the dual technique could improve the efficiency of the conventional one, providing acceptable trade-off between the attenuation of pressure-head and circumferential-stress peaks (or crests), and limitation of period spreading and radial-strain amplification. Second, a parametric study of the sensitivity of the wave damping to the employed short-section dimensions was performed in terms of short-section length and diameter. This parametric study helped estimate the near-optimal values of the short-section dimensions.
机译:在本研究中调查了基于双技术的内联战略,作为对波浪振荡周期的限制的常规技术技能的可持续性。代替后一种技术采用的单个聚合物短截面,前者基于使用由聚合物管壁材料制成的另一种夫妇更换原始管道系统的上游短截面。数值计算利用基于Vitkovsky和Kelvin-Voigt制剂的非传统水锤模型离散化的特征方法。考虑了双技术的效率,用于两个与上防水框架相关的两个操作条件。此外,两个管壁材料类型用于短段管壁,即HDPE或LDPE材料。另外,为了比较目的,还在本研究中解决了常规技术。首先,分析压力头,圆周应力和径向 - 应变波图案,以及波浪振荡周期检查证实了双技术可以提高传统的效率,在压力的衰减之间提供可接受的权衡。头部和周向应力峰(或冠状),以及周期扩散和径向菌株扩增的限制。其次,在短截面长度和直径方面执行对采用的短截面尺寸的波浪阻尼的灵敏度的参数研究。该参数化研究有助于估计短截面尺寸的近乎最佳值。

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