Carquinez Strait, California, Salinity Barrier Calibration Study. Hydraulic Model Investigation.

Abstract

The primary objective of this study was to develop three distorted-scale salinity barriers for use in a comprehensive model of the San Francisco Bay-Delta. Tests were also conducted to define the influence of the structures on velocities and flow distribution as they may affect navigation or cause erosion and as the model distortion may affect velocity distribution. Tests were conducted in a 1:100 undistorted-scale model that reproduced about 2 miles of Carquinez Strait and a 1:100 vertical and 1:1000 horizontal distorted-scale model that reproduced about 4 miles of Carquinez Strait. The distorted-scale model included an artificial bend that exists in the San Francisco Bay-Delta model. All tests were conducted with steady-state flow in both ebb and flood directions. The head losses for each salinity barrier were defined for a range of discharges in both ebb and flood directions in the undistorted-scale model. Tests were then conducted in the distorted-scale model with various crest widths and side slopes of the salinity barriers until head losses were duplicated. Velocities were measured at 23 locations in the undistorted-scale model at 500,000 cfs with and without the salinity barrier to define changes in velocity distribution. Velocities were also measured in the distorted-scale structure to define the influence of model distortion or flow distribution. Surface current patterns were defined for the salinity barrier that resulted in the highest probability of adverse erosion.

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Document Details

Document Type
Technical Report
Publication Date
Nov 01, 1979
Accession Number
ADA078651

Entities

People

  • M. J. Trawle
  • Rutherford C. Berger Jr.

Tags

Communities of Interest

  • Ground and Sea Platforms

DTIC Thesaurus Topics

  • Bays
  • Calibration
  • California
  • Distortion
  • Engineers
  • Geometry
  • Hydraulic Models
  • Hydraulics
  • Measurement
  • Model Tests
  • Models
  • San Francisco Bay
  • Scale Models
  • Security
  • Steady State
  • United States
  • Waterways

Readers

  • Environmental Engineering
  • Hydraulic Engineering.
  • Nuclear and Radiation Engineering.