Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking Waves

Many of the coastal and offshore structures consist of slender cylindrical member as the fundamental component. Since the structural damages and failures are catastrophic under wave impact, it is essential to understand the influence of breaking wave impact on the structural members. Past literature...

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Main Authors: R. Manjula, S.A. Sannasiraj, K. Palanichamy
Format: Article
Language:English
Published: SAGE Publishing 2014-09-01
Series:International Journal of Ocean and Climate Systems
Online Access:https://doi.org/10.1260/1759-3131.5.3.117
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spelling doaj-d38bfb1101834363a157aa27b57b3e1c2020-11-25T03:27:50ZengSAGE PublishingInternational Journal of Ocean and Climate Systems1759-31311759-314X2014-09-01510.1260/1759-3131.5.3.11710.1260_1759-3131.5.3.117Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking WavesR. Manjula0S.A. Sannasiraj1K. Palanichamy2 Assistant Pofessor, Department of Civil Engineering, National Institute of Technology, Tiruchirappalli - 620 015, India Professor, Department of Ocean Engineering, Indian Institute of Technology Madras, Chennai - 600 036, India Professor, Department of Civil Engineering, National Institute of Technology, Tiruchirappalli - 620 015, IndiaMany of the coastal and offshore structures consist of slender cylindrical member as the fundamental component. Since the structural damages and failures are catastrophic under wave impact, it is essential to understand the influence of breaking wave impact on the structural members. Past literature dictates that the magnitude of impact pressures is of the order of ten times more than the non breaking wave induced pressure. The standard codal provisions for the structural design of those members under breaking wave impact are scarce. In the present study, an experimental investigation has been carried out to measure the response of the slender vertical cylinder under breaking waves. Acceleration measurements were made under the incidence of breaking waves of different intensities varying from Plunging to Spilling. Deflections are found out from the measured acceleration. The maximum acceleration observed under severe plunging event is 0.5 times that of moderate plunging event, the deflection induced by the moderate plunging is two order higher than that of severe plunging. Acceleration is maximum not only above still water level (SWL) but also lies in the impact zone. Hence moderate plunging events with higher impulse and larger pressure rise time is crucial in the design of offshore and coastal structural member under breaking wave impact load.https://doi.org/10.1260/1759-3131.5.3.117
collection DOAJ
language English
format Article
sources DOAJ
author R. Manjula
S.A. Sannasiraj
K. Palanichamy
spellingShingle R. Manjula
S.A. Sannasiraj
K. Palanichamy
Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking Waves
International Journal of Ocean and Climate Systems
author_facet R. Manjula
S.A. Sannasiraj
K. Palanichamy
author_sort R. Manjula
title Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking Waves
title_short Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking Waves
title_full Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking Waves
title_fullStr Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking Waves
title_full_unstemmed Experimental Investigations of Acceleration on Slender Cylindrical Member under Breaking Waves
title_sort experimental investigations of acceleration on slender cylindrical member under breaking waves
publisher SAGE Publishing
series International Journal of Ocean and Climate Systems
issn 1759-3131
1759-314X
publishDate 2014-09-01
description Many of the coastal and offshore structures consist of slender cylindrical member as the fundamental component. Since the structural damages and failures are catastrophic under wave impact, it is essential to understand the influence of breaking wave impact on the structural members. Past literature dictates that the magnitude of impact pressures is of the order of ten times more than the non breaking wave induced pressure. The standard codal provisions for the structural design of those members under breaking wave impact are scarce. In the present study, an experimental investigation has been carried out to measure the response of the slender vertical cylinder under breaking waves. Acceleration measurements were made under the incidence of breaking waves of different intensities varying from Plunging to Spilling. Deflections are found out from the measured acceleration. The maximum acceleration observed under severe plunging event is 0.5 times that of moderate plunging event, the deflection induced by the moderate plunging is two order higher than that of severe plunging. Acceleration is maximum not only above still water level (SWL) but also lies in the impact zone. Hence moderate plunging events with higher impulse and larger pressure rise time is crucial in the design of offshore and coastal structural member under breaking wave impact load.
url https://doi.org/10.1260/1759-3131.5.3.117
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