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    Erosion Stability of Wide-Graded Quarry-Stone Material under Unidirectional Current

    Source: Journal of Waterway, Port, Coastal, and Ocean Engineering:;2016:;Volume ( 142 ):;issue: 003
    Author:
    A. Schendel
    ,
    N. Goseberg
    ,
    T. Schlurmann
    DOI: 10.1061/(ASCE)WW.1943-5460.0000321
    Publisher: American Society of Civil Engineers
    Abstract: Scour protection around hydraulic structures in fluvial, estuarine, and coastal waters is an essential component of a meaningful and durable design. The continuous optimization of scour protection systems and design approaches leads to faster and more cost-effective construction processes. Although scour protection now often consists of a two-layer design, approaches that incorporate only one layer depict a major step forward. Therefore, this research focuses on the stability of a wide-graded quarry-stone mixture consisting of crushed granodiorite (Jelsa quarry, Norway) with fractions ranging from 0.063 to 200 mm. The material was exposed to an incrementally increased unidirectional current in a closed-circuit flume. The induced flow field and leading parameters were measured at various positions horizontally and vertically, whereas the erosion rates were determined behind the test bed specimen. With increasing flow velocity the development of a static armor layer was observed at the bed surface. Bed-shear stresses were determined to be strongly variable across the rough test bed. Fractional critical shear stresses indicate highly selective mobility of individual fractions. Least-square fitting of the determined critical shear stresses based on the dimensionless reference grain size di/dσ (with dσ  as the product of the geometric mean size dg  and the geometric standard deviation σg) is suitable for describing the stability behavior of the investigated material.
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      Erosion Stability of Wide-Graded Quarry-Stone Material under Unidirectional Current

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4240830
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    • Journal of Waterway, Port, Coastal, and Ocean Engineering

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    contributor authorA. Schendel
    contributor authorN. Goseberg
    contributor authorT. Schlurmann
    date accessioned2017-12-16T09:16:33Z
    date available2017-12-16T09:16:33Z
    date issued2016
    identifier other%28ASCE%29WW.1943-5460.0000321.pdf
    identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4240830
    description abstractScour protection around hydraulic structures in fluvial, estuarine, and coastal waters is an essential component of a meaningful and durable design. The continuous optimization of scour protection systems and design approaches leads to faster and more cost-effective construction processes. Although scour protection now often consists of a two-layer design, approaches that incorporate only one layer depict a major step forward. Therefore, this research focuses on the stability of a wide-graded quarry-stone mixture consisting of crushed granodiorite (Jelsa quarry, Norway) with fractions ranging from 0.063 to 200 mm. The material was exposed to an incrementally increased unidirectional current in a closed-circuit flume. The induced flow field and leading parameters were measured at various positions horizontally and vertically, whereas the erosion rates were determined behind the test bed specimen. With increasing flow velocity the development of a static armor layer was observed at the bed surface. Bed-shear stresses were determined to be strongly variable across the rough test bed. Fractional critical shear stresses indicate highly selective mobility of individual fractions. Least-square fitting of the determined critical shear stresses based on the dimensionless reference grain size di/dσ (with dσ  as the product of the geometric mean size dg  and the geometric standard deviation σg) is suitable for describing the stability behavior of the investigated material.
    publisherAmerican Society of Civil Engineers
    titleErosion Stability of Wide-Graded Quarry-Stone Material under Unidirectional Current
    typeJournal Paper
    journal volume142
    journal issue3
    journal titleJournal of Waterway, Port, Coastal, and Ocean Engineering
    identifier doi10.1061/(ASCE)WW.1943-5460.0000321
    treeJournal of Waterway, Port, Coastal, and Ocean Engineering:;2016:;Volume ( 142 ):;issue: 003
    contenttypeFulltext
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