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    Half-Round Circular Crested Weir: On Hysteresis, Instabilities, and Head–Discharge Relationship

    Source: Journal of Irrigation and Drainage Engineering:;2020:;Volume ( 146 ):;issue: 006
    Author:
    Hubert Chanson
    DOI: 10.1061/(ASCE)IR.1943-4774.0001473
    Publisher: ASCE
    Abstract: Waters flowing over rounded weirs experience a rapidly accelerated flow region near the crest. The head-discharge relationship of a half-round crested weir was tested physically under carefully controlled flow conditions for a weir design with a small radius of curvature. The experiments were undertaken for a wide range of discharges, over two orders of magnitude, and the results were compared to the literature on circular weirs. The nappe was not aerated. With increasing discharges, the nappe was initially attached to the weir’s downstream wall, until some nappe detachment occurred. With a further increase in flow rate, the detached nappe reattached at large flow rates. The transitions, i.e., both nappe detachment and reattachment, were characterized by large instabilities, change in flow properties, and sometimes loud noise, and the processes were subject to some hysteresis. The finding demonstrated the complicated features of an unaerated round-crested weir overflow. The importance of careful experimental procedure is discussed.
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      Half-Round Circular Crested Weir: On Hysteresis, Instabilities, and Head–Discharge Relationship

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4265934
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    contributor authorHubert Chanson
    date accessioned2022-01-30T19:45:50Z
    date available2022-01-30T19:45:50Z
    date issued2020
    identifier other%28ASCE%29IR.1943-4774.0001473.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4265934
    description abstractWaters flowing over rounded weirs experience a rapidly accelerated flow region near the crest. The head-discharge relationship of a half-round crested weir was tested physically under carefully controlled flow conditions for a weir design with a small radius of curvature. The experiments were undertaken for a wide range of discharges, over two orders of magnitude, and the results were compared to the literature on circular weirs. The nappe was not aerated. With increasing discharges, the nappe was initially attached to the weir’s downstream wall, until some nappe detachment occurred. With a further increase in flow rate, the detached nappe reattached at large flow rates. The transitions, i.e., both nappe detachment and reattachment, were characterized by large instabilities, change in flow properties, and sometimes loud noise, and the processes were subject to some hysteresis. The finding demonstrated the complicated features of an unaerated round-crested weir overflow. The importance of careful experimental procedure is discussed.
    publisherASCE
    titleHalf-Round Circular Crested Weir: On Hysteresis, Instabilities, and Head–Discharge Relationship
    typeJournal Paper
    journal volume146
    journal issue6
    journal titleJournal of Irrigation and Drainage Engineering
    identifier doi10.1061/(ASCE)IR.1943-4774.0001473
    page04020008
    treeJournal of Irrigation and Drainage Engineering:;2020:;Volume ( 146 ):;issue: 006
    contenttypeFulltext
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