Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas

Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas PDF Author: John L. Grace
Publisher:
ISBN:
Category : Arkansas River
Languages : en
Pages : 172

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Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas

Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas PDF Author: John L. Grace
Publisher:
ISBN:
Category : Arkansas River
Languages : en
Pages : 172

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Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas

Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas PDF Author: Reid S. Cummins
Publisher:
ISBN:
Category : Colonel Charles D. Maynard Lock and Dam (Ark.)
Languages : en
Pages : 8

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Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas

Spillway for Typical Low-head Navigation Dam, Arkansas River, Arkansas PDF Author: Reid S. Cummins
Publisher:
ISBN:
Category : Colonel Charles D. Maynard Lock and Dam (Ark.)
Languages : en
Pages : 92

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Spillway for Typical Low-Head Navigation Dam Arkansas River, Arkansas. Hydraulic Model Investigation. Appendix A. Gate Sills and Stilling Basins for Locks and Dams Nos. 5 and 7

Spillway for Typical Low-Head Navigation Dam Arkansas River, Arkansas. Hydraulic Model Investigation. Appendix A. Gate Sills and Stilling Basins for Locks and Dams Nos. 5 and 7 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 162

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Investigations were conducted using 1:25-, 1:40-, and 1:50-scale section models to determine optimum gate sill and pier nose shapes, spillway capacity with full and partial gate openings for both free and submerged flows, stilling basin performance, and riprap requirements for a typical low-head navigation dam such as planned for construction on the Arkansas River. (Author).

Spillway for Typical Low-Head Navigation Dam Arkansas River, Arkansas. Hydraulic Model Investigation. Appendix A. Gate Sills and Stilling Basins for Locks and Dams Nos. 5 and 7

Spillway for Typical Low-Head Navigation Dam Arkansas River, Arkansas. Hydraulic Model Investigation. Appendix A. Gate Sills and Stilling Basins for Locks and Dams Nos. 5 and 7 PDF Author: R. S Cummins (Jr)
Publisher:
ISBN:
Category :
Languages : en
Pages : 79

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Tests were conducted to investigate (a) flow conditions and maximum bottom velocities downstream of a trapezoidal gate still without stilling basin; (b) the relative merits of a parabolic gate sill with a roller bucket energy dissipator and a parabolic gate sill with a stilling basin consisting of a horizontal apron terminated by a sloping end sill; and (c) the stability of a horizontal protective stone blanket downstream of the most practical energy dissipator. The trapezoidal gate sill permitted separation of the nappe from the gate sill and an undesirable flow condition termed an undulating jet which created high bottom velocities and objectionable surface waves in the exit channel. Therefore, the use of such a sill and the possibility of eliminating stilling basins at certain low-head dams on the Arkansas River were eliminated from further consideration. (Author).

Spillway for Typical Low-head Navigation Dam, Arkansas Rive, Arkansas

Spillway for Typical Low-head Navigation Dam, Arkansas Rive, Arkansas PDF Author: United States. Corps of Engineers
Publisher:
ISBN:
Category :
Languages : en
Pages : 23

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Spillway Vibration, Pressure and Velocity Measurements, Ozark Lock and Dam, Arkansas River, Arkansas

Spillway Vibration, Pressure and Velocity Measurements, Ozark Lock and Dam, Arkansas River, Arkansas PDF Author: C. A. Pugh
Publisher:
ISBN:
Category : Arkansas River Watershed
Languages : en
Pages : 60

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Report

Report PDF Author: United States. National Bureau of Standards
Publisher:
ISBN:
Category : Hydraulic engineering
Languages : en
Pages : 260

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Final Report to Congress

Final Report to Congress PDF Author:
Publisher:
ISBN:
Category : Bank erosion
Languages : en
Pages : 446

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Final Report to Congress

Final Report to Congress PDF Author: United States. Army. Corps of Engineers
Publisher:
ISBN:
Category : Rivers
Languages : en
Pages : 450

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