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Citation:
 S. Binumol,Subba Rao,Arkal Vittal Hegde.Multiple Nonlinear Regression Analysis for the Stability of Non-overtopping Perforated Quarter Circle Breakwater[J].Journal of Marine Science and Application,2020,(2):293-300.[doi:10.1007/s11804-020-00145-3]
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Multiple Nonlinear Regression Analysis for the Stability of Non-overtopping Perforated Quarter Circle Breakwater

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Title:
Multiple Nonlinear Regression Analysis for the Stability of Non-overtopping Perforated Quarter Circle Breakwater
Author(s):
S. Binumol1 Subba Rao2 Arkal Vittal Hegde2
Affilations:
Author(s):
S. Binumol1 Subba Rao2 Arkal Vittal Hegde2
1 Department of Civil Engineering, Shinas College of Technology, Sultanate of Oman & formerly Research Scholar, Department of Applied Mechanics & Hydraulics, National Institute of Technology Karnataka, Surathkal, Mangalore, India;
2 Department of Applied Mechanics & Hydraulics, National Institute of Technology Karnataka, Surathkal, Mangalore, India
Keywords:
BreakwaterPerforationsRegression analysisStabilityWave steepnessWater depth
分类号:
-
DOI:
10.1007/s11804-020-00145-3
Abstract:
Breakwaters have been built throughout the centuries for the coastal protection and the port development, but changes occurred in their layout and criteria used for the design. Quarter circle breakwater (QBW) is a new type evolved having advantages of both caisson type and perforated type breakwaters. The present study extracts the effect of change in the percentage of perforations on the stable conditions of seaside perforated QBW by using various physical models. The results were graphically analyzed using dimensionless parameters and it was concluded that there is a reduction in dimensionless stability parameter with an increase in steepness of the wave and change in water depth to the height of breakwater structure. Multiple non–linear regression analysis was done and the equation for the best fit curve with a higher regression coefficient was obtained by using Excel statistical software—XLSTAT.

References:

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Memo

Memo:
Received date:2018-12-25;Accepted date:2019-08-23。
Corresponding author:S. Binumol,Binumol.Shahulhameed@shct.edu.om
Last Update: 2020-11-07