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Dual control technique for mitigating water-hammer phenomenon in pressurized steel-piping systems

机译:加压钢管系统中防水现象的双控制技术

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This paper examined a dual technique -based branching strategy to sustain the conventional technique skills in terms of limitation of wave oscillation period spreading. This technique consists in splitting the single plastic short-penstock used in the conventional one into dual plastic sub-short penstocks placed upstream each of the connections of the original steel piping system to other hydraulic parts. 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 robustness of the transient solver was evaluated by comparing the obtained numerical results with pertinent experimental results. Moreover, the efficiency of the dual technique was explored for a series of operating condition tests including up- and- down surge- initiated water hammer events. Additionally, two plastic material types were utilized for sub- short-penstock pipe-walls, including (HDPE) or (LDPE) plastic materials. Results demonstrated that dual technique is a useful tool to soften both first hydraulic head peak and crest. Moreover, examination of wave oscillation periods confirmed that the dual technique could markedly improve the efficiency of the conventional one, providing acceptable trade-off between hydraulic-head peaks or crests attenuation, and wave oscillation period spreading limitation. Furthermore, results demonstrated that the amortization of pressure head-rise and-drop was sensitive to the plastic sub- short-penstocks dimensions.
机译:本文检测了基于双技术的分支策略,以维持在波浪振荡周期扩散的限制方面的传统技术技能。该技术包括将传统的单个塑料短路分配到将原始钢管系统的每个连接的双塑料副钢管分成双塑料子短路,该塑料副钢板到其他液压部件。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。通过将获得的数值结果与相关实验结果进行比较来评估瞬态求解器的鲁棒性。此外,探讨了双重技术的效率,用于一系列操作条件测试,包括上下浪涌的浪涌活动。另外,用于子短路管壁,包括(HDPE)或(LDPE)塑料材料的两个塑料材料类型。结果表明,双技术是软化第一液压头峰和嵴的有用工具。此外,波浪振荡周期的检查证实,双技术可以显着提高常规方法的效率,提供液压头峰值峰值峰值或波峰之间的可接受的折衷,以及波浪振荡周期扩散限制。此外,结果表明,压头上升和下降的摊销对塑料子短路尺寸敏感。

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