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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Transient hydrodynamics of in-line valves in viscoelastic pressurized pipes: Long-period analysis
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Transient hydrodynamics of in-line valves in viscoelastic pressurized pipes: Long-period analysis

机译:粘弹性压力管道中的直通阀的瞬态流体动力学:长期分析

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摘要

The literature contains few reports devoted to the analysis of the effects of a partially closed in-line valve on the characteristics of transients in viscoelastic pressurized pipes. In this paper a contribution to the analysis of the long-period behavior of pressure is offered from both the experimental and numerical modeling point of view. In the first part, laboratory tests and the related results-noticeably extensive with respect to the existing literature-are examined. More precisely, the dependance of the damping of the dimensionless pressure maximum values on the initial conditions and in-line valve local head loss coefficient is shown. In the second part, a 1-D numerical model is developed by determining its parameters within a physically based procedure. Model parameters are obtained by considering transients in a constant-diameter pipe (single pipe) and then exported to the case of pipes with a partially closed in-line valve (in-line valve pipe). Moreover, particular attention is devoted to the modalities of specifying boundary conditions. In particular, the quasi-steady-state approach is followed for determining the transient local head loss due to the partially closed in-line valve and the actual supply conditions and characteristics of the maneuver are taken into account. Finally, the effect of unsteady friction and viscoelasticity is examined in both single and in-line valve pipes.
机译:文献中很少有报告专门分析部分关闭的直通阀对粘弹性增压管瞬态特性的影响。本文从实验和数值建模的角度为压力的长期行为分析做出了贡献。在第一部分中,对实验室测试和相关结果(相对于现有文献而言非常广泛)进行了检查。更精确地,示出了无量纲压力最大值的阻尼对初始条件和在线阀局部压头损失系数的依赖性。在第二部分中,通过在基于物理的过程中确定其参数来开发一维数值模型。通过考虑恒定直径管道(单管)中的瞬变来获得模型参数,然后将其导出到具有部分关闭的直通阀的管道(直通阀管道)的情况。此外,特别注意指定边界条件的方式。特别地,采用准稳态方法来确定由于部分关闭的直通阀而引起的瞬时局部水头损失,并考虑了实际的供应条件和操纵特性。最后,在单向阀管和直管阀管中都研究了不稳定摩擦和粘弹性的影响。

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