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44201

Effect of water density on the response of Square Tension Leg Platform

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Last updated: 22 Jan 2023

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Abstract

Abstract— tension-leg platform (TLP) or extended tension leg platform (ETLP) is a vertically moored floating structure normally used for the offshore production of oil or gas, and is particularly suited for water depths greater than 300 metres and less than 1500 metres . The platform is permanently moored by means of tethers or tendons grouped at each of the structure's corners. A group of tethers is called a tension leg. A feature of the design of the tethers is that they have relatively high axial stiffness (low elasticity), such that virtually all vertical motion of the platform is eliminated. This allows the platform to have the production wellheads on deck (connected directly to the subsea wells by rigid risers), instead of on the seafloor. This allows a simpler well completion and gives better control over the production from the oil or gas reservoir, and easier access for down hole intervention operations. In this paper a numerical study for a square TLP using modified Morison equation was carried out in the time domain with water particle kinematics using Airy's linear wave theory to investigate the effect of changing water density on the mass matrix of TLP's and the dynamic behavior of TLP's. The effect was investigated for different parameters of the hydrodynamic forces such as wave periods, and wave heights. The numerical study takes into consideration the effect of coupling between various degrees of freedom. The stiffness of the TLP was derived from a combination of hydrostatic restoring forces and restoring forces due to cables. Nonlinear equation was solved using Newmark's beta integration method. Only uni-directional waves in the surge direction was considered in the analysis.

DOI

10.21608/iccae.2014.44201

Keywords

density, square tension leg platforms, hydrodynamic wave forces, wave characteristic

Authors

First Name

Amr

Last Name

El-gamal

MiddleName

R.

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Orcid

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First Name

Hala

Last Name

Refat

MiddleName

M.

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Volume

10

Article Issue

10th International Conference on Civil and Architecture Engineering

Related Issue

6836

Issue Date

2014-05-01

Receive Date

2019-08-07

Publish Date

2014-05-01

Page Start

1

Page End

8

Print ISSN

2636-4379

Online ISSN

2636-4387

Link

https://iccae.journals.ekb.eg/article_44201.html

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https://iccae.journals.ekb.eg/service?article_code=44201

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35

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Original Article

Type Code

834

Publication Type

Journal

Publication Title

The International Conference on Civil and Architecture Engineering

Publication Link

https://iccae.journals.ekb.eg/

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Article

Created At

22 Jan 2023