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Instrumentation for Measuring Scour at Bridge Piers and Abutments

Instrumentation for Measuring Scour at Bridge Piers and Abutments
Author: Peter Frederick Lagasse
Publisher: Transportation Research Board
Total Pages: 120
Release: 1997
Genre: Bridges
ISBN: 9780309060691

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"This report contains the findings of a study undertaken to develop, test, and evaluate fixed devices for measuring maximum scour depth. Companion manuals provide specific fabrication, installation, and operation guidance for two such devices. This report and the companion manuals will be of immediate interest to hydraulics engineers, bridge management engineers, and bridge maintenance engineers"--Foreward.


Local Scour Around Differently Shaped Bridge Piers. An Experimental Investigation

Local Scour Around Differently Shaped Bridge Piers. An Experimental Investigation
Author: Kaleem Afzal
Publisher: GRIN Verlag
Total Pages: 55
Release: 2020-02-06
Genre: Science
ISBN: 3346109496

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Bachelor Thesis from the year 2019 in the subject Physics - Mechanics, University of Engineering & Technology Peshawar, language: English, abstract: The objective of the study is to conduct laboratory model testing to investigate and compare scour hole depth of the diamond, square and elliptical scaled model of bridge piers in a cohesion less bedding material under clear water and to propose the most efficient cross section of the bridge pier, having less Local scour around piers under steady clear-water condition was studied experimentally for a variety of configuration, including different sizes and shapes of piers. Total number of forty experiments were performed in the flume using diamond, square and elliptical shape. The scouring around the square shape was found maximum and at elliptical shape was the least. The main reason was obstruction in flow area that was more in case of the square and less in case of the elliptical shape. However, the diamond shaped has the intermediate scouring under same condition. Local scour is a complex phenomenon involving three-dimensional flow, typically developed around piers founded in movable bed rivers. Local scour can lead to partial failure or to collapse of bridge piers because of the high flood velocity. The cost of large bridges, with common and special complex piers, justifies carrying out an accurate prediction of scour depth, for both economic and safety reasons, which in turn leads to the interest of hydraulic engineers in predicting the equilibrium scour depth.


Evaluation of Bridge-scour Data at Selected Sites in Ohio

Evaluation of Bridge-scour Data at Selected Sites in Ohio
Author: K. S. Jackson
Publisher:
Total Pages: 98
Release: 1996
Genre: Scour at bridges
ISBN:

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Scour data collected during 1989-1994 were evaluated to determine whether pier scour and contraction scour occurred at 22 bridge sites in Ohio. Pier-scour depths computed from selected pier-scour prediction equations were compared with measured pier-scour depths, and the accuracy of the prediction equations were evaluated. Observed pier-scour relations were compared to similar relations developed through laboratory research. Mean streambed elevations were evaluated to determine the depth of contraction scour. Channel stability was assessed by use of mean streambed elevations at the approach section. Ground-penetrating radar was used at all sites to investigate the presence of historical scour.


Evaluation of Pier-scour Equations for Coarse-bed Streams

Evaluation of Pier-scour Equations for Coarse-bed Streams
Author: Katherine J. Chase
Publisher:
Total Pages: 36
Release: 2004
Genre: Bridges
ISBN:

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Streambed scour at bridge piers is among the leading causes of bridge failure in the United States. Several pier-scour equations have been developed to calculate potential scour depths at existing and proposed bridges. Because many pier-scour equations are based on data from laboratory flumes and from cohesionless silt- and sand-bottomed streams, they tend to overestimate scour for piers in coarse-bed materials. Several equations have been developed to incorporate the mitigating effects of large particle sizes on pier scour, but further investigations are needed to evaluate how accurately pier-scour depths calculated by these equations match measured field data. This report, prepared in cooperation with the Montana Department of Transportation, describes the evaluation of five pier-scour equations for coarse-bed streams. Pier-scour and associated bridge-geometry, bed-material, and streamflow measurement data at bridges over coarse-bed streams in Montana, Alaska, Maryland, Ohio, and Virginia were selected from the Bridge Scour Data Management System. Pier scour calculated using the Simplified Chinese equation, the Froehlich equation, the Froehlich design equation, the HEC-18/Jones equation and the HEC-18/Mueller equation for flood events with approximate recurrence intervals of less than 2 to 100 years were compared to 42 pier-scour measurements. Comparison of results showed that pier-scour depths calculated with the HEC-18/Mueller equation were seldom smaller than measured pier-scour depths. In addition, pier-scour depths calculated using the HEC-18/Mueller equation were closer to measured scour than for the other equations that did not underestimate pier scour. However, more data are needed from coarse-bed streams and from less frequent flood events to further evaluate pier-scour equations.


Localized Scour at Bridge Piers on Graded Particle Streambeds

Localized Scour at Bridge Piers on Graded Particle Streambeds
Author: Howard D. Copp
Publisher:
Total Pages: 50
Release: 1991
Genre: Bridges
ISBN:

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This document reports on results of research to develop a method for estimating depth of local scour at bridge piers that would provide an improved estimate from current methodology, i.e., one (or more) based on sand bed streams.


Scour Around Bridge Piers

Scour Around Bridge Piers
Author: Gordon Ray Hopkins
Publisher:
Total Pages: 148
Release: 1980
Genre: Bridges
ISBN:

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Available theories and prediction formulas on scour at bridge waterways are reviewed. Formulas that offer potential for prediction of scour around bridge piers are compared by reducing each formula to a non-dimensional form that includes Froude Number, the ratio of scour depth to pier width, and the ratio of stage to pier width. A field study to gather data on scour and related variables is described. The study is aimed at collecting field data in order to furnish a basis on which to compare scour prediction formulas.


Bridge Scour

Bridge Scour
Author: Bruce W. Melville
Publisher: Water Resources Publication
Total Pages: 586
Release: 2000
Genre: Technology & Engineering
ISBN: 9781887201186

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"A comprehensive state-of-the-art treatment of scour and bridge foundations - both a handy reference text and a manual for the practicing bridge designer."--Publisher.


Experimental Study of Local Scour Around Side-by-Side Bridge Piers Under Ice-Covered Flow Conditions

Experimental Study of Local Scour Around Side-by-Side Bridge Piers Under Ice-Covered Flow Conditions
Author: Jueyi Sui
Publisher:
Total Pages: 0
Release: 2019
Genre: Electronic books
ISBN:

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A precise prediction of maximum scour depth (MSD) around piers under ice-covered conditions is crucial for the safe design of the bridge foundation. Due to the lack of information for local scour under ice-covered flow condition, it is extremely hard to give proper estimation of MSD. In the current study, a set of flume experiments were completed to investigate local scour around four pairs of circular bridge piers with nonuniform bed materials under open channel, smooth and rough ice cover conditions. Three different bed materials with median particle size of 0.47, 0.50, and 0.58 mm were used to simulate natural river conditions. Regardless of pier size, the maximum scour depths were observed in front of the piers under all flow conditions. Additionally, a smaller pier size and a larger space between piers yield a smaller scour depth. Results showed that the maximum scour depth decreases with increase in the grain size of armor layer. The distribution of vertical velocity shows that the strength of downfall velocity is the greatest under rough ice cover. Empirical equations were developed to estimate the maximum scour depth around side-by-side bridge piers under both open-channel and ice-covered flow conditions.