Vortex-induced motions of marine risers : straked force database extraction & transient response analysis

Thesis (S.M. in Mechanical Engineering and Naval Architecture and Marine Engineering)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2009. === Includes bibliographical references (p. 55-58). === In part I of the thesis, we extend a methodology to extract a VIV hydrodynamic...

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Main Author: Chasparis, Filippos
Other Authors: Michael S. Triantafyllou.
Format: Others
Language:English
Published: Massachusetts Institute of Technology 2010
Subjects:
Online Access:http://hdl.handle.net/1721.1/50570
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spelling ndltd-MIT-oai-dspace.mit.edu-1721.1-505702019-05-02T16:28:22Z Vortex-induced motions of marine risers : straked force database extraction & transient response analysis Straked force database extraction & transient response analysis Chasparis, Filippos Michael S. Triantafyllou. Massachusetts Institute of Technology. Dept. of Mechanical Engineering. Massachusetts Institute of Technology. Dept. of Mechanical Engineering. Mechanical Engineering. Thesis (S.M. in Mechanical Engineering and Naval Architecture and Marine Engineering)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2009. Includes bibliographical references (p. 55-58). In part I of the thesis, we extend a methodology to extract a VIV hydrodynamic database from field data to accommodate partially straked cylinders. There are two databases, each consisting of the lift and added mass coefficients as functions of reduced velocity and amplitude of response; the first for the bare part of the riser, and the second for the straked part. First, the program VIVA together with nominal force databases obtained from laboratory hydrodynamic experiments is used in order to get an initial prediction of the riser response under a particular flow profile. The nominal databases are then altered in a systematic way until the new VIVA predicted response best matches the measured field response, thus resulting in optimal databases. In part II of the thesis, we show using experimental data on a model riser that lock-in of long flexible risers placed in sheared or uniform cross-flows is a much richer phenomenon than lock-in of flexibly-mounted rigid cylinders under similar conditions. In particular, we find that the frequency content of the riser response may be either narrow-banded around a single dominant frequency (Type I response) or distributed along a relatively broad range of frequencies (Type II response). Distinct transition from Type I to Type II response, and vice versa, can occur several times within a single experimental record. Type I responses reveal features of a quasi-periodic oscillation, often accompanied by large 3rd harmonic components in the acceleration and strain signals, increased correlation length, stable riser trajectories, and monochromatic traveling or standing waves. (cont.) Type II responses, on the other hand, are characterized by features of chaotic oscillation with small or non-existent 3rd harmonic components in the acceleration and strain signals, reduced correlation length, and a continuous spectrum. by Filippos Chasparis. S.M.in Mechanical Engineering and Naval Architecture and Marine Engineering 2010-01-07T20:54:42Z 2010-01-07T20:54:42Z 2009 2009 Thesis http://hdl.handle.net/1721.1/50570 464224397 eng M.I.T. theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. See provided URL for inquiries about permission. http://dspace.mit.edu/handle/1721.1/7582 79 p. application/pdf Massachusetts Institute of Technology
collection NDLTD
language English
format Others
sources NDLTD
topic Mechanical Engineering.
spellingShingle Mechanical Engineering.
Chasparis, Filippos
Vortex-induced motions of marine risers : straked force database extraction & transient response analysis
description Thesis (S.M. in Mechanical Engineering and Naval Architecture and Marine Engineering)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2009. === Includes bibliographical references (p. 55-58). === In part I of the thesis, we extend a methodology to extract a VIV hydrodynamic database from field data to accommodate partially straked cylinders. There are two databases, each consisting of the lift and added mass coefficients as functions of reduced velocity and amplitude of response; the first for the bare part of the riser, and the second for the straked part. First, the program VIVA together with nominal force databases obtained from laboratory hydrodynamic experiments is used in order to get an initial prediction of the riser response under a particular flow profile. The nominal databases are then altered in a systematic way until the new VIVA predicted response best matches the measured field response, thus resulting in optimal databases. In part II of the thesis, we show using experimental data on a model riser that lock-in of long flexible risers placed in sheared or uniform cross-flows is a much richer phenomenon than lock-in of flexibly-mounted rigid cylinders under similar conditions. In particular, we find that the frequency content of the riser response may be either narrow-banded around a single dominant frequency (Type I response) or distributed along a relatively broad range of frequencies (Type II response). Distinct transition from Type I to Type II response, and vice versa, can occur several times within a single experimental record. Type I responses reveal features of a quasi-periodic oscillation, often accompanied by large 3rd harmonic components in the acceleration and strain signals, increased correlation length, stable riser trajectories, and monochromatic traveling or standing waves. === (cont.) Type II responses, on the other hand, are characterized by features of chaotic oscillation with small or non-existent 3rd harmonic components in the acceleration and strain signals, reduced correlation length, and a continuous spectrum. === by Filippos Chasparis. === S.M.in Mechanical Engineering and Naval Architecture and Marine Engineering
author2 Michael S. Triantafyllou.
author_facet Michael S. Triantafyllou.
Chasparis, Filippos
author Chasparis, Filippos
author_sort Chasparis, Filippos
title Vortex-induced motions of marine risers : straked force database extraction & transient response analysis
title_short Vortex-induced motions of marine risers : straked force database extraction & transient response analysis
title_full Vortex-induced motions of marine risers : straked force database extraction & transient response analysis
title_fullStr Vortex-induced motions of marine risers : straked force database extraction & transient response analysis
title_full_unstemmed Vortex-induced motions of marine risers : straked force database extraction & transient response analysis
title_sort vortex-induced motions of marine risers : straked force database extraction & transient response analysis
publisher Massachusetts Institute of Technology
publishDate 2010
url http://hdl.handle.net/1721.1/50570
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