流态对螺旋进口涡降轴水力特性的影响。

IF 2.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Amin Hajiahmadi, Gaetano Crispino, Mahnaz Ghaeini-Hessaroeyeh, Corrado Gisonni
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引用次数: 2

摘要

如果要验证现有的涡降轴的运行,那么必须了解这些特殊结构在亚临界和超临界流型下的水力性能。本研究的目的是为亚临界和超临界涡降轴的水力设计和验证提供实用的指导和建议。对物理模型研究的各种实验结果的检验表明,进口通道和螺旋进口的表现不同,取决于能量接近流含量。然而,主要的不同之处在于竖井和消散室的功能。在接近超临界流时,下降流沿垂直轴的旋转更为明显。在超临界流态下,耗散室内可观察到与水深和底压有关的恶劣流动条件。与亚临界流区相比,这种特殊部件的设计必须谨慎进行,因为在接近超临界流区时,可能会发生诸如腔室沉没和轴出口下方底表面崩溃等故障事件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of the flow regime on the hydraulic features governing the operation of vortex drop shafts with spiral inlets.

If the operation of existing vortex drop shafts should be verified, then it is essential to know the hydraulic performance of these special structures under both subcritical and supercritical flow regimes. The purpose of the present research consisted of providing practical guidelines and recommendations for managing the hydraulic design and verification of subcritical and supercritical vortex drop shafts. The examination of various experimental results from physical model investigations allowed to show that the inlet channel and the spiral inlet behaved differently depending on the energy approach flow content. The main dissimilarity lay, however, in the functioning of the vertical shaft and the dissipation chamber. The rotation of the falling flow along the vertical shaft was more evident for approaching supercritical flows. Severe flow conditions in terms of water depths and bottom pressures could be observed in the dissipation chamber under a supercritical flow regime. The design of this special component must be carried with prudence compared with the subcritical flow regime because failure events as the chamber submergence and the crash of the bottom surface just under the shaft outlet may occur for approaching supercritical flows.

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来源期刊
Water Science and Technology
Water Science and Technology 环境科学-工程:环境
CiteScore
4.90
自引率
3.70%
发文量
366
审稿时长
4.4 months
期刊介绍: Water Science and Technology publishes peer-reviewed papers on all aspects of the science and technology of water and wastewater. Papers are selected by a rigorous peer review procedure with the aim of rapid and wide dissemination of research results, development and application of new techniques, and related managerial and policy issues. Scientists, engineers, consultants, managers and policy-makers will find this journal essential as a permanent record of progress of research activities and their practical applications.
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